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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
61

Transcriptional regulation of effector CD8+ T cell differentiation and molecular dysfunction during HIV-1 infection

Noto, Alessandra 10 1900 (has links)
Les cellules T CD8+ jouent un rôle primordial dans le contrôle des infections virales en limitant la dissémination des cellules infectées. Lors de l’infection chronique par le virus HIV, les cellules T CD8+ HIV-spécifiques ne se différencient pas en cellules effectrices fonctionnelles capables de tuer les cellules infectées par le virus ; ces cellules ne sont plus capables de proliférer ou de produire l’ IL-2. Ces cellules expriment PD-1 et l’engagement de PD-1, par son ligand, aboutit a plusieurs de ces déficits fonctionnels des cellules T . Le rôle de PD-1 dans la régulation d'évènements transcriptionnels contrôlant la différentiation et l'obtention des fonction effectrices des cellules T CD8+ reste à démontrer. Id2 joue un rôle central dans la différenciation des cellules T CD8+ effectrices. Nous avons émis l’hypothèse que le défaut de maturation observé chez les cellules T CD8+ PD-1 high HIV-spécifiques (CD8+PD-1hi) au cours de l’infection chronique par le virus HIV pouvait être lié à la diminution d’expression du régulateur Id2. Nous avons ainsi démontré que l'engagement de PD-1 contribuait à une diminution d'expression de Id2 et de ses cibles transcriptionnelles. La surexpression de Id2 de ces cellules a permis de restaurer l'expression de marqueurs tels que Granzyme B et Bcl-2 et diminuir l’expression du marqueur de maturation de CD27. La famille des cytokines à chaine gamma joue un rôle clef dans la survie et l’homéostasie des cellules T. Dans ce travail, nous avons démontré que l’IL-15 était unique grâce à ses capacités de stimulation de l’expression d’Id2 et ses propriétés favorisant la survie ainsi que la différenciation des cellules T CD8+ effectrices. l’IL-15 induit la prolifération de toutes les populations de cellules T mémoires provenant de donneurs sains. L’addition de cette cytokine aux sous-populations cellulaires Ttm et Tem a permis leur différenciation en cellules effectrices capables de produire Granzyme B alors que la stimulation par l’IL-15 des cellules Tcm ne favorise pas leur différenciation. Un test de cytotoxicitié par cytométrie en flux nous a permis de confirmer que la stimulation de cellules T CD8+ HIV spécifiques par l’IL-15 favorisait l’expression de Id2 et restaurait les fonctions cytotoxiques des cellules T CD8+ HIV spécifiques. En conclusion, nous avons pour la première fois dans cette thèse défini les mécanismes moléculaires impliqués dans la modulation de l’expression du régulateur transcriptionnel Id2 par l’IL-15. Nous avons également révélé comment l’engagement de PD-1 conduisait a une altération de l’expression et de la fonction d’Id2 et favorisait la diminution des fonctions effectrices des cellules T CD8-HIV spécifiques. Une perspective de traitement avec des agents tels que l’IL-15 ou le bloquage de PD-1, en combinaison avec les traitements conventionnels, pourrait contribuer à une meilleure stimulation des réponses immunes favorisant ainsi la réactivation des cellules T CD8+ et permettant la destruction de cellules T CD4+ infectées de manière latente. / CD8+ T cells play a fundamental role in controlling viral replication and dissemination by killing virus-infected cells. However during chronic HIV infection HIV-specific CD8+ T cells fail to differentiate to functional cytotoxic effector cells and develop functional defects such as loss of IL-2 secretion, decreased proliferation and express high levels of PD-1. Persistent expression of PD-1 and triggering by its ligand results in immune dysfunction; it is not known how PD-1 signaling influences transcriptional events involved in T cell differentiation and effector function. We found that the transcriptional regulator Id2 was downregulated in PD-1hi HIV-specific CD8+ T cells when compared to PD-1low CMV-specific CD8+ T cells from the same HIV-infected donors. Since Id2 has been shown to play a central role during differentiation of effector CD8+T cells, we hypothesized that skewed maturation of the PD-1hi HIV-specific CD8+ T during chronic HIV infection could result from decreased levels of Id2. We found that signals transduction pathways downstream of PD-1 ligation inhibited the expression of Id2; transfection of PD-1hi effector cells from HIV infected individuals with a Tat-Id2 construct could reverse an apoptotic fate associated with the exhausted phenotype. Finally, overexpression of Id2 restored expression of Granzyme-B and Bcl-2 and led to a decreased expression of the T cell maturation marker CD27. Although the extrinsic signals and costimulation needed to activate cell proliferation and effector function are well known, signal-transduction pathways that regulate differentiation of memory cells to effector cells are beginning to be understood. Thechain family of cytokines is essential for the survival and homeostasis of T cells; they have pleiotropic effects on the differentiation of effector and memory virus-specific CD8+ T cells. IL-15 was unique among gamma-chain cytokines in upregulating the expression of Id2 and promoting the survival and differentiation of effector memory CD8+ T cells. IL-15 induced proliferation of all memory subsets from healthy subjects but only induced differentiation, Granzyme-B production, and cytotoxic effector function in CD8+ Ttm and Tem cells. Stimulation of Tcm with IL-15 failed to induce their differentiation; this was associated with their decreased ex vivo levels of IL-15R when compared to Tem and Ttm subsets. Finally, we developed a single cell flow-cytometry cytotoxicity assay, and found that stimulation of CD8+T cells from HIV chronically infected subjects with peptide plus IL-15 induced the differentiation of tetramer+ CD8+ Ttm cells and restored Id2 expression and their cytotoxic activity . Overall, we illustrate in this thesis, for the first time, the molecular mechanisms of effector T cell differentiation mediated by IL-15 and its downstream transcriptional regulator Id2; we reveal how PD-1 engagement leads to alteration of the Id2 pathway leading to decreased effector function of the HIV-specific CD8+ T cells. Immunotherapy with agents such as IL-15 or PD-1 blocking antibody that increase levels of Id2 expression , in combination with HAART, should trigger the functional re-activation of HIV-specific CD8+ T cells and the killing of latently HIV-infected CD4+ T cells.
62

Le CpG et le poly(I:C) agissent en synergie avec le trastuzumab contre le cancer du sein HER2+

Charlebois, Roxanne 12 1900 (has links)
Chez la souris, la thérapie anti-HER2 est dépendante de la présence de cellules T CD8+IFN-γ+ et des réponses IFN de type I. Ces IFN sont induits par les TLRs suite à la reconnaissance de signaux de danger, appelés PAMPs et DAMPs. Les TLR-3 et TLR-9 sont tous deux de bons inducteurs d’IFN de type I et sont également capable d’agir en synergie afin d’augmenter les niveaux d’IFN-γ, de TNF-α et d’IL-12. Notre hypothèse fut que la stimulation de ces deux TLRs mènerait à l’amélioration de l’activité anti-tumorale du trastuzumab via le recrutement et l’activation des cellules immunitaires. Nos buts furent de confirmer le potentiel thérapeutique de la combinaison de l’anticorps anti-HER2, de l’agoniste de TLR-3, le poly(I:C), et de l’agoniste de TLR-9, le CpG ODN. Des études in vivo et in vitro nous ont permis de découvrir une synergie entre ces agents qui résulte en une cytotoxicité ciblée plus efficace. De plus, cette thérapie s’avéra efficace chez des modèles CD8-dépendants et CD8-indépendents. Les souris purent rejeter leur tumeur et demeurer sains plusieurs semaines après l’arrêt des injections. Ces souris étaient également protégées lors d’un challenge, soulignant ainsi la présence d’une immunité mémoire. Nous avons aussi découvert que l’administration combine de trastuzumab des deux agonistes de TLRs mène à des réponses systémiques. Des études de déplétion confirmèrent que les cellules T CD8+ sont cruciales pour la protection à long terme des animaux, mais que les pDC sont moins impliquées que ce que l’on pourrait croire. Leur absence n’a que modestement affecté les effets de notre thérapie. À l’opposé, les cellules NK sont d’importants médiateurs des effets thérapeutiques. Des expériences d’ADCC ont révélé que le CpG ODN et poly(I:C) ont tous deux la capacité d’améliorer les fonctions des cellules NK, mais que la stimulation simultanée des TLR-3 et TLR-9 permet de maximiser les effets bénéfiques du trastuzumab. De la même manière, l’addition de CpG ODN et de poly(I:C) aux anticorps anti-HER2 a permis d’augmenter les réponses pro-inflammatoires, plus spécifiquement l’IFN-γ, le TNF-α, l’IP-10 et l’IL-12. / In murine models, anti-HER2 therapy has been shown to be dependent on IFN-γ-producing CD8+ T cells and type I IFN responses. These IFN are induced by TLRs following the recognition of danger signals, called PAMPs or DAMPs. Both TLR-3 and TLR-9 are well known inducers of type I IFN and were also shown to act synergistically to enhance the levels of IFN-γ, TNF-α, and IL-12. Our hypothesis thus was that the stimulation of those two TLRs would lead to an enhancement of the activity of trastuzumab against tumor cells by the recruitment and activation of immune cells. Our goals were to assess the potential therapeutic effects of a combination of anti-HER2 mAbs, TLR-3 agonist poly(I:C) and TLR-9 agonist CpG ODN. In vivo and in vitro studies enabled us to discover a synergy between all agents resulting in a more efficient targeted cytotoxicity. Moreover, this therapy was fully effective in a CD8-dependant cell line as well as a CD8-independent one. Mice were able to completely reject their tumor and remain tumor-free weeks after the injections. Those mice were also protected against a rechallenge, thus underlining the presence of an immune memory. We also discovered that the combined administration of trastuzumab and the TLR agonists leads to systemic responses. Depleting studies confirmed that T CD8+ cells are crucial for the animal to remain tumor-free on the long term, but that pDC are far less involved than what we could have thought. Their absence only modestly affected the outcome of our therapy. On the counterpart, NK cells were important mediators of the therapeutic effect. ADCC assays revealed that both CpG ODN and poly(I:C) are able to enhance the functions of NK cells, but that simultaneous stimulation of the TLR-3 and TLR-9 allows to maximize the beneficial effects of trastuzumab. The same way, the addition of both CpG ODN and poly(I:C) to the anti-HER2 mAbs further enhanced pro-inflammatory responses, more specifically IFN-γ, TNF-α, IP-10 and IL-12.
63

Un retrovirus endogène défectif code un antigène reconnu par des lymphocytes T cytolytiques sur une leucémie murine spontanée

de Brouchoven de Bergeyck, Vinciane 12 October 1994 (has links)
Les tumeurs spontanées de souris ne sont pas immunogéniques. Néanmoins la mutagenèse de la leucémie spontanée LEC a permis d'isoler des variants immunogéniques qui confèrent une protection contre la tumeur parentale. Des clones de lymphocytes T cytolytiques (CTL) reconnaissant les cellules LEC ont été isolés à partir des lymphocytes de souris immunes. Au cours de ce travail, nous avons isolé et caractérisé la séquence codant l'antigène LEC A reconnu par le clone CTL-LEC1:5 à la surface des cellules LEC. Pour cloner ce gène, nous avons suivi une démarche similaire à celle ayant permis l'isolement de plusieurs gènes codant des antigènes reconnus par des clones CTL à la surface du mastocytome murin P815. Cette approche est basée sur la transfection de bibliothèques de cosmides construites avec l'ADN des cellules exprimant les antigènes à analyser et sur la détection des transfectants exprimant ces antigènes grâce à leur capacité de stimuler la prolifération du clone CTL adéquat. Une bibliothèque de cosmides a été construite avec l'ADN des cellules LEC et a été transfectée dans les cellules P1.HTR.KkDk. Plusieurs transfectants stimulant la prolifération des CTL LEC1:5 ont été identifiés. Un cosmide capable de transférer l'expression de l'antigène LEC A a été obtenu en encapsidant l'ADN génomique d'un transfectant dans des têtes de phage lambda. Un fragment de 4,38 kb codant l'antigène LEC A a été isolé à partir de ce cosmide. La séquence nucléotidique de ce fragment a été comparée aux séquences répertoriées dans les banques de données. Cette séquence présente de fortes homologies avec les rétrovirus endogènes défectifs appartenant à la famille IAP (intracisternal A particle, ou particule intraciternale de type A). La séquence codant l'antigène LEC A a été appelée LEC A IAP. Les CTL LEC1:5 reconnaissent un peptide antigénique dérivant de la région gag de l'élément LEC A IAP en association avec la molécule H 2 Dk. Pour comprendre le mécanisme responsable de l'expression de l'antigène LEC A par les cellules LEC, nous avons comparé les ADN génomiques des cellules LEC, de deux tumeurs syngéniques non reconnues par les CTL-LEC1:5 et de cellules normales provenant de souris syngéniques. Un Southern blot et des réactions de polymérisation en chaîne (PCR) ont permis d'établir que l'élément LEC A IAP s'est transposé dans la tumeur LEC. L'analyse de l'ADN génomique de variants des cellules LEC n'exprimant plus l'antigène LEC A ont établi que la transposition de l'élément LEC A IAP était responsable de l'expression de cet antigène. Il paraît probable que la transposition a pour conséquence d'activer la transcription de cet élément IAP, ce qui entraîne la production de l'antigène. / Cytolytic T lymphocyte (CTL) clones directed against spontaneous mouse leukemia LEC have been obtained. By transfecting a cosmid library into cells which were then tested for their ability to stimulate the CTL, we identified the gene coding for the antigen recognized by one of these CTL clones. It is the gag gene of an endogenous defective retrovirus that belongs to the intracisternal A particle (IAP) family. A gag-encoded nonapeptide presented by the H-2 Dk molecule caused recognition by the anti-LEC CTL clone. Southern blot and polymerase chain reaction analyses indicated that the expression of the antigen by the LEC tumor cell line resulted from the transposition of an IAP sequence into a new genomic location.
64

Functional genomics of plant chitinase-like genes

Johnston, David Morris 11 1900 (has links)
The Arabidopsis chitinase-like1 (Atctl1) mutant, pom1 is compromised in primary cell wall development, resulting in short roots when grown on high sucrose and shortened hypocotyls when grown in darkness. To better understand this phenotype and the evolution of AtCTL1 and its homologue, AtCTL2, we obtained a large number of CTL sequences and determined the phylogenetic relationships among them. Since microarray analysis had suggested a change in auxin response or homeostasis in pom1, I used the auxin reporter DR5::GUS in the pom1 background to assess changes in distribution. To assess whether the biochemical functions of AtCTL1 homologues in Arabidopsis and other plants are conserved, I transformed pom1 with AtCTL2 and CTLs from poplar (Populus trichocarpa x Populus deltoides clone H-11) and from Picea glauca (spruce) and assessed rescue of the pom1 phenotype. To further understand CTL expression and function, Arabidopsis and poplar CTL promoter::GUS fusions were also expressed in Arabidopsis, PopCTL1 overexpressed in Arabidopsis, and CTL expression down regulated in poplar by RNAi. Our results indicate that CTL genes represent an ancient family encoding proteins of conserved biochemical function. In dicots, represented by Arabidopsis and poplar) duplicated CTL genes are differentially expressed in conjunction with primary and secondary cell wall development, respectively. Mutation of these genes results in improperly formed primary walls in certain cell types in the case of AtCTL1, and an impairment in the differentiation of vascular bundles for AtCTL2. Overexpression of PopCTL1 in Arabidopsis seems to over stimulate the differentiation of vascular bundles, and our studies show that auxin distribution is altered in the Atctl1 mutant. Down regulation of PopCTL1 and PopCTL2 in poplar appears to phenocopy aspects of these mutations, resulting in secondary cell walls that appear to have less deposition of lignin and an accelerated production of secondary xylem respectively. While specific biochemical function(s) of CTL genes were not studied, potential functions are discussed.
65

Functional genomics of plant chitinase-like genes

Johnston, David Morris 11 1900 (has links)
The Arabidopsis chitinase-like1 (Atctl1) mutant, pom1 is compromised in primary cell wall development, resulting in short roots when grown on high sucrose and shortened hypocotyls when grown in darkness. To better understand this phenotype and the evolution of AtCTL1 and its homologue, AtCTL2, we obtained a large number of CTL sequences and determined the phylogenetic relationships among them. Since microarray analysis had suggested a change in auxin response or homeostasis in pom1, I used the auxin reporter DR5::GUS in the pom1 background to assess changes in distribution. To assess whether the biochemical functions of AtCTL1 homologues in Arabidopsis and other plants are conserved, I transformed pom1 with AtCTL2 and CTLs from poplar (Populus trichocarpa x Populus deltoides clone H-11) and from Picea glauca (spruce) and assessed rescue of the pom1 phenotype. To further understand CTL expression and function, Arabidopsis and poplar CTL promoter::GUS fusions were also expressed in Arabidopsis, PopCTL1 overexpressed in Arabidopsis, and CTL expression down regulated in poplar by RNAi. Our results indicate that CTL genes represent an ancient family encoding proteins of conserved biochemical function. In dicots, represented by Arabidopsis and poplar) duplicated CTL genes are differentially expressed in conjunction with primary and secondary cell wall development, respectively. Mutation of these genes results in improperly formed primary walls in certain cell types in the case of AtCTL1, and an impairment in the differentiation of vascular bundles for AtCTL2. Overexpression of PopCTL1 in Arabidopsis seems to over stimulate the differentiation of vascular bundles, and our studies show that auxin distribution is altered in the Atctl1 mutant. Down regulation of PopCTL1 and PopCTL2 in poplar appears to phenocopy aspects of these mutations, resulting in secondary cell walls that appear to have less deposition of lignin and an accelerated production of secondary xylem respectively. While specific biochemical function(s) of CTL genes were not studied, potential functions are discussed.
66

Human Papillomavirus 16 E7 Inhibits the ability of IFN-γ in Enhancement of MHC Class I Antigen Presentation and CTL Lysis by Affecting IRF-1 Expression in Keratinocytes

Fang Zhou Unknown Date (has links)
The results of experiments aimed at determining whether cytotoxic T lymphocytes (CTLs) can kill keratinocytes (KCs) expressing endogenously loaded antigen indicated that antigen specific cytotoxic T lymphocytes could recognize and kill keratinocytes expressing ovalbumin (OVA) or SIINFEKL peptide. Exposure of the KCs to interferon-gamma (IFN-γ) enhanced this CTL-mediated KC lysis and increased CTL epitope presentation on the surface of target cells. Expression of HPV 16 E7 protein in KCs affected CTL-mediated lysis. Expression of HPV 16 E7 inhibited IFN-γ-mediated up-regulation of SIINFEKL/H-2Kb complexes on keratinocytes, and also inhibited IFN-γ-mediated up-regulation of IRF-1 expression, and consequent up-regulation of TAP1 transcription. Further, overexpression of IRF-1 partially corrected the HPV 16 E7-mediated inhibition of enhanced susceptibility of KC lysis induced by IFN-γ. Thus, the effects of HPV 16 E7 on CTL-mediated lysis of IFN-γ exposed KCs are likely mediated by inhibition of MHC class I antigen presentation by IFN-γ. These findings may help explain why HPV-infected epithelial cells can escape from immune surveillance mediated by CTLs in vivo and in vitro.
67

Geração de objetivos de teste de sistemas reativos baseada na Técnica de Verificação de Modelos CTL. / Generation of test objectives of reactive systems based on CTL Verification Technique.

SILVA, Daniel Aguiar da. 23 August 2018 (has links)
Submitted by Johnny Rodrigues (johnnyrodrigues@ufcg.edu.br) on 2018-08-23T13:23:08Z No. of bitstreams: 1 DANIEL AGUIAR DA SILVA - DISS PPGCC 2006..pdf: 730843 bytes, checksum: e5d7ebe87ab82d200f68fb0b5b0df784 (MD5) / Made available in DSpace on 2018-08-23T13:23:08Z (GMT). No. of bitstreams: 1 DANIEL AGUIAR DA SILVA - DISS PPGCC 2006..pdf: 730843 bytes, checksum: e5d7ebe87ab82d200f68fb0b5b0df784 (MD5) Previous issue date: 2006-05-26 / Técnicas e ferramentas de testes formais baseados em modelos têm sido desenvolvidas para tornar mais rigoroso e eficiente o processo de teste de sistemas reativos com características de distribuição e concorrência. O não-determinismo inerente a estes sistemas torna os difíceis de serem testados, devido à alta complexidade de obtenção das configurações necessárias para execução dos casos de teste. As propriedades especificadas para estes sistemas são a base para a geração dos casos de teste de conformidade, que devem avaliar a correspondência entre modelo e código. Estas propriedades, denominadas objetivos de teste, devem ser especificadas de maneira a guiar a geração dos casos de teste. Entretanto, a especificação dos objetivos de teste a partir de modelos complexos como os destes sistemas ainda carece de técnicas e ferramentas apropriadas, tornando esta atividade propensa a erros. Os casos de teste podem assim, ter efetividade afetada em caso de erros na especificação dos objetivosdeteste. Comoobjetivodecontribuirparaasoluçãodesteproblema,estetrabalho apresenta técnica de geração de objetivos de teste para sistemas reativos, baseando-se na técnica de verificação de modelos CTL. A técnica proposta visa usufruir da eficiência dos algoritmos da verificação de modelos, por meio de sua adaptação para a análise destes, para a geração dos objetivos de teste. / Techniques and tools for model based testing have been developed to make the process of testing distributed concurrent reactive systems more efficient and rigorous. The inherent nondeterminism of these systems can make it difficult to test them due to the complex process of obtaining test cases configurations from models. To better guide the testing process, properties specified to these systems are used as basis for the test case generation. Such properties, called test purposes, shall be exhibitedby the implementation under test through test case execution. However, specifying test purposes from the common complex and large models of these systems suffers from the lack of appropriated tools and techniques, making it error-prone and inadequate. Thus, test cases based on such test purposes may be affected, getting no desirable soundness. Aiming at solving this problem, we present a technique for test purpose generation for reactive systems based on the CTL model checking technique. We aim at taking benefit from the efficiency of model checking algorithms to better analyze the models to generate the test purposes.
68

Effect of Heat Exposure On Allogeneic Cytotoxic T Lymphocyte Responses in Mice

Sukumaran, M K January 1996 (has links) (PDF)
No description available.
69

Effect of HIV antiretroviral drugs on antigen processing and epitope presentation by MHC-I to cytotoxic T cells / Effet des antirétroviraux sur la voie d’apprêtement des antigènes et la présentation directe ainsi que croisée des épitopes par les CMH-I

Kourjian, Georgio 30 June 2015 (has links)
L’apprêtement antigénique par les protéases intracellulaires et la présentation des épitopes sont essentiels pour la reconnaissance des cellules infectées par les lymphocytes CD8+. Ici nous avons montré que certains inhibiteurs de la protéase de la VIH (IPs) modulent l’activité de la protéasome et aminopeptidase impliqué dans l’apprêtement antigénique endogène et l’activité cathepsins importante dans l’apprêtement croisée. Deux IPs agissent directement sur les cathepsins et leurs régulateurs en inhibant les activités kinase, NOX2 et en régulant le pH phagolysosomal. Les IPs ont changé la dégradation des protéines viral et la production des épitopes de façon séquence- et cellule-spécifique, ont altéré la présentation direct et croisée des épitopes, et ont partiellement changé l’auto-peptidome des cellules primaires. La modulation par les drogues de l’apprêtement et la présentation des épitopes peut fournir une approche thérapeutique alternative pour moduler la reconnaissance immunitaire. / Antigen processing by intracellular proteases and peptidases and epitope presentation are critical for recognition of pathogen-infected cells by CD8+ T lymphocytes. Here we show that several HIV protease inhibitors (PIs) prescribed to HIV-infected persons variably modulate proteasome and aminopeptidase activities involved in endogenous antigen presentation and cathepsin activities involved in antigen cross-presentation. Two HIV PIs acted directly on cathepsins and on their regulators by inhibiting kinases, NOX2 and the regulation of phagolysosomal pH, subsequently enhancing cathepsin activities. HIV PIs modified HIV protein degradation and epitope production in a sequence- and cell-dependent manner, altered direct- and cross-presentation and T cell-mediated killing, and partly changed the self-peptidome of primary cells. Drug-induced modulation of antigen processing and peptidome may provide an alternate therapeutic approach to modulate immune recognition.
70

Glycodelin-A As The Regulator Of CD8+ T-Lymphocyte Activity : Implications In Primate Pregnancy

Soni, Chetna 07 1900 (has links) (PDF)
The ability of our immune system to mount a response against non-self-antigens legitimates the semi-allogenic fetus as a target for maternal immune attack. Yet, in a normal pregnancy the fetus stays well protected due to the concerted action of several diverse mechanisms which either suppress the fetal allogenicity or spatio-temporally inhibit maternal immune cells’ growth and functions. One such factor which aids in the establishment, progression and maintenance of pregnancy is the 28 kDa dimeric sialylated glycoprotein Glycodelin-A (GdA). Synthesized by the endometrium and decidua, this protein has myriad functions, the most important being that of immunosuppression. GdA is inhibitory to all hematopoietic cells and also induces programmed cell death in activated T cells and monocytes via the intrinsic mitochondrial pathway. In the Introductory chapter of this thesis, details about GdA and the other isoforms of the glycodelin family of proteins have been presented which highlight the involvement of glycodelins in primate pregnancy, with emphasis on GdA and its pleiotropic functions associated with reproduction in females. Activated T-lymphocytes against paternal antigens are found in the uterine compartment and in the maternal circulation throughout pregnancy. Activated CD8+ T-lymphocytes have been reported to pre-dominate the uterine T-lymphocyte population during pregnancy and unlike the CD4+ T cells, are retained until term. Studies show that activated CD8+ T-lymphocytes are necessary for the establishment and progression of early pregnancy. However, how these lymphocytes harbouring cytotoxic activity are regulated at the later stages of pregnancy is poorly defined. We attempted to uncover a possible mechanism of regulation of CTL (cytotoxic T lymphocyte) activity (if any) during primate pregnancy by GdA. In the absence of established human CD8+ T cell lines, we first standardized the generation of CTLs in-vitro from hPBMCs (human peripheral blood mononuclear cells) by alloactivating them with an ovarian carcinoma cell line OVCAR-3 utilized as a mimic of an allograft. The details of the rationale behind using this method for generating CTLs and the alloactivation methodology have been put together in the Chapter 1 of this thesis. The activation of hPBMCs was confirmed by the surface expression of an early activation marker CD69 and tritiated thymidine incorporation. Differentiation of CD8+ T cells into effector cells was confirmed by the upregulation of perforin and granzyme transcripts by real time RT-PCR analysis. Target-cell specific cytolytic activity of the CTLs was assessed by using a cytotoxicity measurement assay- JAM test, details of which also form a part of chapter 1. Having generated effective CTLs in vitro, we tested the effect of GdA on CTL activity. Our findings, on the effect of GdA on CTLs have also been discussed in the Chapter 1. We observed that the cytolytic activity of CTLs was significantly reduced by GdA treatment albeit at a dose three to four times higher than that required for inhibiting CD8+ T cell proliferation, implying that a mechanism of temporal regulation of CTL activity operated at the feto-maternal interface, thereby contributing to the establishment and progression of pregnancy. Interestingly, in our quest to uncover the mechanism of inhibition of CTL activity by GdA, we found that the inhibition of proliferation was comparable in both CD4+ and CD8+ T-lymphocytes at all dosages of GdA, but unlike CD4 + T cells CD8 + T cells were resistant to GdA-induced apoptosis even at high dosage of GdA. Hence we could rule out that the loss of CTL activity upon GdA treatment was due to CD8+ T cell death. Further, we assessed the functional competence of alloactivated CTLs by quantitating the mRNA transcripts of key cytolytic molecules; perforin and granzyme B, in GdA treated alloactivated hPBMCs and found that there was a significant reduction in the mRNA of these cytolytic molecules. Additionally, we also found that GdA treated CD8+ T cells exhibited impaired release of the cytolytic molecules by the process of degranulation, measured by the surface exposure of LAMPs (Lysosome associated membrane proteins) on the surface of cells by flow cytometry and as seen by the retention of perforin protein in them assessed by intracellular staining and flow cytometry. Intrigued by the observations, we probed for the regulators of perforin and granzymes in CTLs. EOMES (Eomesodermin) and T- Bet are well known transcription factors which control the differentiation of CD8+ T cells into effector and memory cell CD8+ T cell type. Interestingly we found that the expression of EOMES was significantly reduced in activated GdA treated hPBMCs, both at the transcriptional and translational level, however T-Bet did not show any variation in expression upon GdA treatment. All the above findings have been compiled in Chapter 2 along with our studies on the possibility of GdA to induce a tolerogenic phenotype in T cells. We found there was no difference in the mRNA level and surface expression of CD103 and CD28 in alloactivated PBMCs, while FOXP3 mRNA did not show any variation upon GdA treatment, indicating that GdA does not induce a tolerogenic phenotype in T-lymphocytes, further confirming our data that the decreased cytolytic activity of CTLs upon GdA treatment was not due to tolerance but due to impaired function Interestingly, IL-2/IL-2R signaling is known to directly regulate perforin and granzyme expression as well as it plays a role in the expression of T-Bet and EOMES. Therefore, as a read out of IL-2 signaling we checked for the surface expression of the high affinity IL-2R subunit, CD25. As expected, CD25 expression was more pronounced in CD4+ T cells and consistent with published reports in literature that GdA suppresses IL-2 synthesis, we also observed a significant reduction in the CD25bright population in both the T cell subsets (CD4+ and CD8+) upon GdA treatment (addressed in Chapter 3). This finding supports a mechanism of action of GdA, wherein the cytolytic activity of CTLs is compromised by the downregulation of EOMES, triggered by the low IL-2 levels. This translates to aberrant synthesis of key cytolytic molecules perforin and granzyme B, leading to low efficiency CTLs, which are further disabled by defective degranulation machinery induced by GdA. We did not look into the mechanistic aspects of how GdA suppresses degranulation, which can be addressed later as a part of another study. Building up on our observations, and taking cues from existing literature, that IL-2 regulates the expression of pro and anti-apoptotic protein levels within activated cells, we looked at the expression profile of Bcl-2 (anti-apoptotic) and Bax (pro-apoptotic) in activated PBMCs upon GdA treatment. There was a significant reduction in the total mRNA and protein level of Bcl-2, while a very significant increase in Bax mRNA and protein was observed. Chapter 3 of the thesis also presents this data and explains a plausible mechanism of the inhibitory effect of GdA on T-lymphocytes. In Chapter 2, we have also addressed the probable reasons for the differences in the responses of CD4+ and CD8+ T-lymphocytes to GdA. Interestingly, surface glycan profile of CD4+ and CD8+ T-lymphocytes upon activation and the surface expression of the most probable receptor for GdA i.e. CD7 was comparable in both the T cell subsets, indicating that possibly the downstream signaling events leading to GdA-induced apoptosis and not the surface binding of GdA may vary in CD4+ and CD8+ T-lymphocytes, due to which we observed a difference in the extent of apoptosis induced in these cell types by GdA although the inhibition of proliferation in both the subsets was comparable. In summary, this study is the first to provide evidence for a possible mechanism of temporal regulation of CTL activity at the feto-maternal interface, where activated CD8+ T cells are abundantly present. We can say with much confidence that binding of GdA to T-lymphocytes causes sub-optimal IL-2 signaling which translates into reduced expression of EOMES and hence downregulation of perforin and granzyme B, leading to impaired CTL activity in CD8+ T-lymphocytes, which is further weakened by the impaired release of the cytolytic molecules from them. Insufficient IL-2 signaling in the presence of GdA can also be a cause of inhibition of proliferation in T-lymphocytes, while the resulting decrease in anti-apoptotic protein Bcl-2 and increase in pro-apoptotic protein Bax seem to contribute to the induction of apoptosis in CD4+ T cell. It will be interesting to explore the mediators involved in the IL-2 signaling pathway that are differentially regulated in CD4+ and CD8+ T cells which confer resistance in CD8+ T cells to GdA-induced apoptosis and also the mechanism by which GdA regulates the degranulation of cytolytic vesicles in CTLs needs to be worked out.

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