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Articles 61 - 63 of 63
Full-Text Articles in Medicinal Chemistry and Pharmaceutics
Novel Inhibitors Of Lysine Specific Demethylase 1 As Epigenetic Modulators, Michael Crowley
Novel Inhibitors Of Lysine Specific Demethylase 1 As Epigenetic Modulators, Michael Crowley
Wayne State University Theses
The recently discovered enzyme lysine-specific demethylase 1 (LSD1) plays an important role in the epigenetic control of gene expression, and aberrant gene silencing secondary to LSD1 over expression is thought to contribute to the development of cancer. We recently reported a series of (bis)guanidines and (bis)biguanides that are potent inhibitors of LSD1, and induce the re-expression of aberrantly silenced tumor suppressor genes in tumor cells in vitro. We now report a new series of isosteres that are also potent inhibitors of LSD1. These compounds induce increases in methylation at the histone 3 lysine 4 (H3K4) chromatin mark, a specific target …
Small Gtp-Binding Proteins In Insulin Secretion, Bhavaani Jayaram
Small Gtp-Binding Proteins In Insulin Secretion, Bhavaani Jayaram
Wayne State University Dissertations
Type 2 diabetes mellitus is marked by a substantial beta-cell failure which is characterized by defective insulin secretion and resistance to insulin. Understanding the molecular events leading to Glucose-stimulated insulin secretion [GSIS] might serve as therapeutic potential towards diabetes. GSIS involves interplay between small G-proteins and their regulatory factors. Herein, I tested the hypothesis that Arf nucleotide binding site opener [ARNO], a guanine nucleotide exchange factor [GEF] for the small G-protein Arf6, mediates the activation of Arf6, and that ARNO/Arf6 signaling axis, in turn, controls the activation of downstream effectors. Salient features of my study are: [i] ARNO/Arf6 is expressed …
Mechanisms Of Regulation Of Islet Function By Nadph Oxidase, Ismail Syed
Mechanisms Of Regulation Of Islet Function By Nadph Oxidase, Ismail Syed
Wayne State University Dissertations
Glucose stimulated insulin secretion (GSIS) involves a series of metabolic and cationic events, leading to translocation of insulin-laden secretory granules from a distal site toward the plasma membrane for fusion and release of insulin into circulation. Vesicular transport and fusion events are tightly regulated by signals which coordinate between vesicle- and membrane-associated docking proteins. It is now being accepted that reactive oxygen species [ROS] plays a second messenger role in islet â-cell function. Further, evidence from multiple laboratories suggests a tonic increase in ROS generation is necessary for GSIS and fatty acid-induced insulin secretion. On the other hand, excessive ROS …