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Articles 1 - 4 of 4
Full-Text Articles in Physiological Processes
Regulation Of Diabetic Cardiomyopathy Through Mitochondrial Import Of Long Non-Coding Rnas, Andrew Dodge Taylor
Regulation Of Diabetic Cardiomyopathy Through Mitochondrial Import Of Long Non-Coding Rnas, Andrew Dodge Taylor
Graduate Theses, Dissertations, and Problem Reports (ETD)
Introduction: The leading cause of mortality in patients with diabetes mellitus is heart failure. When mitochondrial health and function is disrupted, cardiac contractile function is compromised. Therefore, understanding mitochondrial regulation may benefit predicting and countering diabetic cardiomyopathy. MicroRNAs (miRNAs) play a crucial role in diabetic cardiac mitochondrial protein expression. Long noncoding RNAs (lncRNAs) have been shown to regulate miRNAs, but not in the mitochondrion. Additionally, it has yet to be confirmed if lncRNAs utilize the same mechanisms for mitochondrial import that miRNAs use, or if lncRNA presence in the mitochondrion fluctuates in diabetic mitochondria like miRNA presence does. The …
Beneficial Impacts Of Nod-Like Receptor X1(Nlrx1) Agonism In Lipopolysaccharide-Induced Inflammation, Mena Mansy
Beneficial Impacts Of Nod-Like Receptor X1(Nlrx1) Agonism In Lipopolysaccharide-Induced Inflammation, Mena Mansy
Graduate Theses, Dissertations, and Problem Reports (ETD)
Introduction: The regulation of inflammation at the cellular and molecular level is a crucial aspect of homeostasis that is often overlooked, and most treatment options are limited to antibiotics and symptom management drugs. The development of novel molecular-targeted therapy options downstream of pathogen recognition receptors will fulfill the unmet need for therapy to effectively regulate excessive inflammation. NLRX1 is a unique NOD-like receptor that is anti-inflammatory in nature; it has been shown to negatively regulate the NF-kB pathway and has been involved in the pathology of a plethora of inflammatory disorders. This makes NLRX1 an emerging therapeutic molecular target for …
A Role For Regulator Of G Protein Signaling-12 (Rgs12) In The Balance Between Myoblast Proliferation And Differentiation, Adam B. Schroer, Junaith S. Mohamed, Melinda D. Wilard, Vincent Setola, Emily Oesteich, David P. Siderovski
A Role For Regulator Of G Protein Signaling-12 (Rgs12) In The Balance Between Myoblast Proliferation And Differentiation, Adam B. Schroer, Junaith S. Mohamed, Melinda D. Wilard, Vincent Setola, Emily Oesteich, David P. Siderovski
Faculty & Staff Scholarship
- Regulators of G Protein Signaling (RGS proteins) inhibit G protein-coupled receptor (GPCR) signaling by accelerating the GTP hydrolysis rate of activated Gα subunits. Some RGS proteins exert additional signal modulatory functions, and RGS12 is one such protein, with five additional, functional domains: a PDZ domain, a phosphotyrosine-binding domain, two Ras-binding domains, and a Gα·GDP-binding GoLoco motif. RGS12 expression is temporospatially regulated in developing mouse embryos, with notable expression in somites and developing skeletal muscle. We therefore examined whether RGS12 is involved in the skeletal muscle myogenic program. In the adult mouse, RGS12 is expressed in the tibialis anterior (TA) muscle, …
H2o2‐Induced Microvessel Barrier Dysfunction: The Interplay Between Reactive Oxygen Species, Nitric Oxide, And Peroxynitrite, Xueping Zhou, Yan Qian, Dong Yuan, Qilong Feng, Pingnian He
H2o2‐Induced Microvessel Barrier Dysfunction: The Interplay Between Reactive Oxygen Species, Nitric Oxide, And Peroxynitrite, Xueping Zhou, Yan Qian, Dong Yuan, Qilong Feng, Pingnian He
Faculty & Staff Scholarship
Elevated H2O2 is implicated in many cardiovascular diseases. We previously demonstrated that H2O2-induced endothelial nitric oxide synthase (eNOS) activation and excessive NO production contribute to vascular cell injury and increases in microvessel permeability. However, the mechanisms of excessive NO-mediated vascular injury and hyperpermeability remain unknown. This study aims to examine the functional role of NO-derived peroxynitrite (ONOO) in H2O2-induced vascular barrier dysfunction by elucidating the interrelationships between H2O2-induced NO, superoxide, ONOO, and changes in endothelial [Ca2+ ]i and microvessel permeability. Experiments were conducted on intact rat mesenteric venules. Microvessel permeability was determined by measuring hydraulic conductivity (Lp). Endothelial [Ca2+ ]i, …