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An Integrated Analysis of mRNA and lncRNA Expression Profile in Response to an Endocannabinoid in Physcomitrella patensHaq, Imdadul, Kilaru, Aruna 01 January 2020 (has links)
No description available.
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An Integrated Analysis of mRNA and lncRNA Expression Profile in Response to an Endocannabinoid in Physcomitrella patensHaq, Imdadul, Kilaru, Aruna 01 January 2020 (has links)
No description available.
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Post-transcriptional Regulation of RsmA In Pseudomonas aeruginosaMiller, Ian 01 August 2018 (has links) (PDF)
Pseudomonas aeruginosa is a Gram-negative bacillus found in numerous environments. Gene regulatory mechanisms such as; Two-Component Systems, transcriptional and post-transcriptional regulators, and small non-coding RNAs control the expression of virulence factors that allow P. aeruginosa to initiate acute infections and persist as a chronic infection. A significant post-transcriptional regulator involved in these regulatory networks is the Regulator of Secondary Metabolites (RsmA). In this study, we investigated the contribution of a putative stem-loop on expression of RsmA. We constructed rsmA leader fusions to measure translation with and without the stem-loop present. Secondly, we introduced point mutations to disrupt the formation of the stem-loop. Finally, we performed Site-Directed Mutagenesis on the rsmA leader to examine protein levels in vivo by western blot analysis using an HA-tagged rsmA. Our data suggests that the segment of RNA that contains the putative stem-loop structure serves some function in post-transcriptional regulation of RsmA.
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The Effect of a Senolytic Drug on Messenger RNA and Micro RNA Expression in Perigonadal Adipose Tissue of Young and Old MiceHernandez, Catalina 01 January 2020 (has links) (PDF)
As we face an expanding elderly population and increased age-related chronic diseases, we must seek solutions that address interconnected problems. Dasatinib plus quercetin (D+Q), a novel combination drug, is a proposed solution to improve the health and longevity of aged individuals with minimal side effects, exceptional efficacy, and maximum convenience. In this experiment, intermittent D+Q treatment was completed on young and old mice. RNA was extracted from perigonadal adipose tissue and cDNA libraries of mRNA and miRNA were made. Real-time quantitative polymerase chain reaction was used to assess relative gene expression for mRNA and miRNA pertaining to cell senescence, inflammation, and insulin resistance. miR-146a was found to have a significant difference (p < 0.05) in relative expression based on the interaction between age and treatment, while other genes showed no difference in relative expression. Furthermore, miR-149 was found to show near significance in interaction (p=0.0552) and had significant difference between old control and old D+Q treated mice. The miR-149 presents an avenue for future research in senescence markers and shows potential as a novel senolytic target.
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Expression Of Nicotinic Acetylcholine Receptor mRNA As a Function Of Age In Whole Hippocampus Preparations From Wistar RatsWelch, Kasey C. 21 April 2008 (has links) (PDF)
Whole hippocampus preparations, isolated bilaterally, from untreated Wistar rats at various ages (10-90 days old) were analyzed for the mRNA expression of the alpha 2, alpha 3, alpha 4, alpha 5, alpha 7, beta 2, beta 3, and beta 4 neuronal nicotinic acetylcholine receptor subunits. To do so, RNA was isolated from acutely isolated hippocampal samples, converted to cDNA by means of a reverse transcription reaction, then analyzed with quantitative real-time PCR to determine the relative levels of the mRNAs the cells were expressing at the age when the samples were obtained. The relative expression of the levels of RNA were then compared across age groups by subunits and across subunits by ages. The results suggest that all eight subunits are expressed throughout the life of the rat and that the subunit expression for the Hippocampus varies only slightly as a rat develops.
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Translational reprogramming promotes survival to hypertonic stressJobava, Raul 21 June 2021 (has links)
No description available.
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Harnessing innovative methods in antibody design and delivery for development of a novel nonhormonal contraceptiveNador, Ellena 25 January 2024 (has links)
The development of safer and more accessible contraceptive options is necessary to reduce the high number of unintended pregnancies worldwide. As monoclonal antibody engineering continues to revolutionize drug development, a variety of strategies are being harnessed to establish antibody-based contraceptives. Human Contraception Antibody (HCA), an immunoglobulin G1 (IgG1) monoclonal antibody that potently agglutinates human sperm, is a promising candidate for nonhormonal immunocontraception in women. Our group recently established the safety and efficacy of a topical IgG1 HCA-formulated dissolvable vaginal film. Though successful, we are currently working to further optimize and improve the HCA product. In this study, we characterized engineered variants of HCA. Bioactivities, specifically agglutination and effector functions, of multimeric and fragment crystallizable (Fc)-mutated variants were compared and inform further engineering of an optimal clinical profile. We then established an atomized mRNA mechanism for delivery of HCA to the female reproductive tract (FRT). The use of mRNA could provide several advantages including: efficiency, reversibility, safety, durability, and cost-effectiveness. mRNA-encoded HCAs were expressed in several models of the FRT and were functional, sperm-specific, and safe. We also analyzed Fc N-glycans at the conserved glycosylation site on IgGs that regulate effector functions and compared the site-specific glycosylation on antibodies generated by two HCA expression platforms of interest, namely Nicotiana benthamiana and mRNA-transfected vaginal cells. Disparities in glycan site occupancy and glycoform populations between the two platforms were observed. Platform-specific HCA glycans resulted in differing levels of sperm phagocytosis, an Fc function. In summary, these studies provide a clearer understanding of engineered variants and delivery platforms to further advance the development of HCA as a novel, antibody-based female contraceptive.
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Spatial Dispersion of the Fungus Aspergillus Flavus in Corn Ears: A Spatial Analysis of Ubiquitin MrnaMylroie, Leif Saxon 08 August 2009 (has links)
Aflatoxin is a carcinogen produced by the fungus Aspergillus flavus that causes millions of dollars in agriculture losses in the southeastern US. This thesis examines the dispersal of A. flavus on two corn inbred lines, resistant (Mp313E) and susceptible (B73), which differ in total aflatoxin accumulation after infection with A. flavus. After inoculating corn kernels with the fungus an RNA analysis was used to determine the location (number of kernels away from inoculation site) and abundance of A. flavus at weekly intervals. A. flavus started its spread at 7 days after inoculation (DAI) on both corn lines. The B73 corn line showed a constant spread of 3.4mm per day until the entire ear was infected at 21 DAI. The spread on Mp313E did not proceed beyond 3 kernels away from the inoculation site following 7 DAI. The results are significant because they show a faster rate of spread than previously reported and they help quantify the ability of Mp313E to mitigate infection.
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In Vivo Three-Dimensional Characterization of mRNA Nuclear ExportLiu, Zhen 03 December 2012 (has links)
No description available.
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Alternative splicing of bovine growth hormone pre-mRNA in vitroSun, Qiang January 1995 (has links)
No description available.
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