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RNA-binding proteins in yeast mitochondria / RNA-bindende Proteine in HefemitochondrienDeumer, Claudia D. 06 December 2002 (has links) (PDF)
This work focused on the further characterisation of Idhp and of the Krebs cycle enzymes citrate synthase 1 (Cit1p) and malate dehydrogenase 1 (Mdh1p) both of which have been identified as RNA-binding proteins without known RNA recognition motifs. Besides analysing their effects on mitochondrial translation and their organisation in protein complexes the work focused on the characterisation of the RNA-binding properties of recombinant Cit1p and Mdh1p: · Cit1p and Mdh1p play no essential role in mitochondrial protein synthesis. · Idhp is in a complex of molecular weight larger than the cytochrome c oxidase (250 kDa). · Cit1p and Mdh1p are in mitochondrial complexes smaller than 250 kDa. · 1000-fold molar excess of tRNA referring to COX2 leader RNA did not inhibit the RNA-binding of Cit1p and Mdh1p. · Cit1p and Mdh1p bind mitochondrial mRNAs (sense and antisense). The influence of cofactors and substrates on RNA-binding was analysed in order to reveal a possible link between the enzymatic function and the property of RNA-binding: · Acetyl-CoA and ATP inhibited the RNA-binding of Cit1p and Mdh1p at a concentration of 5 mM.
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RNA-binding proteins in yeast mitochondriaDeumer, Claudia D. 09 October 2002 (has links)
This work focused on the further characterisation of Idhp and of the Krebs cycle enzymes citrate synthase 1 (Cit1p) and malate dehydrogenase 1 (Mdh1p) both of which have been identified as RNA-binding proteins without known RNA recognition motifs. Besides analysing their effects on mitochondrial translation and their organisation in protein complexes the work focused on the characterisation of the RNA-binding properties of recombinant Cit1p and Mdh1p: · Cit1p and Mdh1p play no essential role in mitochondrial protein synthesis. · Idhp is in a complex of molecular weight larger than the cytochrome c oxidase (250 kDa). · Cit1p and Mdh1p are in mitochondrial complexes smaller than 250 kDa. · 1000-fold molar excess of tRNA referring to COX2 leader RNA did not inhibit the RNA-binding of Cit1p and Mdh1p. · Cit1p and Mdh1p bind mitochondrial mRNAs (sense and antisense). The influence of cofactors and substrates on RNA-binding was analysed in order to reveal a possible link between the enzymatic function and the property of RNA-binding: · Acetyl-CoA and ATP inhibited the RNA-binding of Cit1p and Mdh1p at a concentration of 5 mM.
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Charakterisierung der chloroplastidären RNA-Bindeproteine CP33A und CP33B in Arabidopsis thalianaTeubner, Marlene 29 January 2019 (has links)
Plastiden enthalten ihr eigenes Genom, das u.a. für Untereinheiten des photosynthetischen Apparates kodiert. Die Expression dieses Apparates wird hauptsächlich posttranskriptionell reguliert. Dafür notwendige Faktoren sind vor allem RNA-Bindeproteine, welche fast ausschließlich kernkodiert und posttranslational in die Plastiden importiert werden. Dazu gehören auch die äußerst abundanten chloroplastidären Ribonukleoproteine (cpRNPs). Die bisher näher untersuchten Mitglieder der cpRNP-Familie aus Arabidopsis thaliana sind an der Prozessierung und Stabilisierung von plastidären Transkripten beteiligt und phylogenetisch eng miteinander verwandt. In dieser Studie wurden zwei noch unbekannte Mitglieder der cpRNP Familie, CP33A und CP33B, näher untersucht.
CP33A ist ein essentielles Protein der Chloroplastenbiogenese. Mutanten von CP33A keimen nur in der Gegenwart einer externen Kohlenstoffquelle. Die Blätter sind albinotisch, in ihrer Struktur anomal und das gesamte Wachstum ist stark eingeschränkt. Untersuchungen der RNA-Interaktionspartner von CP33A durch RIP-Chip-Analysen (RNA-Immunopräzipitation und Chip-Hybridisierung) zeigen, dass CP33A mit allen mRNAs assoziiert. Des Weiteren führt der Verlust von CP33A zu einer starken Reduktion vieler Transkripte, vor allem RNAs, die durch die plastidär kodierte RNA Polymerase (PEP) transkribiert werden und unprozessierte Vorläufer-Transkripte.
CP33B interagiert ebenfalls mit multiplen plastidären RNAs. Dabei zeigt CP33B eine Präferenz für psbA. Feinkartierung der CP33B-Bindung innerhalb des psbA Leserahmens verdeutlichten, dass CP33B vor allem mit dem 3´Ende des Transkriptes interagiert. Phänotypische und genetische Untersuchungen der cp33b-Nullmutante ließen keinen vom Wildtyp abweichenden Phänotyp identifizieren und zeigten dass CP33B keinen essentiellen Einfluss auf die Proteinakkumulation photosynthetischer Untereinheiten, die Expression plastidärer Transkripte, das Spleißen und die Edierung seiner Ziel-RNAs hat. / Plastids harbour their own genome, which encodes for essential subunits of the photosynthetic apparatus. The expression of these subunits is mainly regulated on the posttranscriptional level. The important factors for posttranscriptional processing are RNA-binding proteins (RBPs), which are almost exclusively nuclear-encoded and imported posttranslational into the plastids. Among them are the chloroplast ribonucleoproteins (cpRNPs). The cpRNPs are a family of highly abundant RNA-binding proteins found in the chloroplast of land plants. Members of the Arabidopsis thaliana cpRNP family, that have been investigated in more detail, are involved in processing and stabilization of plastid transcripts and are phylogenetically closely related. In this study two unknown members of the cpRNPs, CP33A and CP33B, which cluster outside of this phylogenetic group, are investigated.
CP33A is essential for chloroplast biogenesis. Null alleles of CP33A only germinate in the presence of an external carbon source. cp33a seedlings are albino, show strong growth inhibition and an abnormal leaf structure. Investigating RNA-ligands of CP33A using RIP-Chip (coimmunoprecipitation coupled to microarray analysis) shows an association with all chloroplast mRNAs. The loss of CP33A leads to a reduction of almost all transcripts, predominantly affecting RNAs transcribed by the plastid-encoded RNA polymerase (PEP) and unspliced and unprocessed precursor mRNAs.
CP33B also interacts with multiple plastid RNAs. The main target is the mRNA of psbA. More than 90% of the stromal psbA mRNA is associated with CP33B. Fine mapping efforts suggest that CP33B preferentially interacts with the 3’-end of the psbA reading frame. Phenotypic and genetic analyses of cp33b-null mutants do not show any differences compared to wild-type plants. CP33B has no essential impact on: Protein accumulation of photosynthetic subunits, expression of plastid transcripts, RNA-splicing or RNA-editing of its target RNAs.
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Stage-specific germ cell marker genes function in establishment and germ cell lineage commitment of pluripotent stem cells / Stadien-spezifische Keimzellmarker-Gene wirken in der Etablierung von pluripotenten Stammzellen und leisten einen Beitrag zu deren HerkunftXu, Xingbo 19 October 2012 (has links)
No description available.
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