Hormone Signaling, Gene Expression, And Mitochondrial Hormone Receptor Expression In Avian Muscle (Cells),
2019
University of Arkansas, Fayetteville
Hormone Signaling, Gene Expression, And Mitochondrial Hormone Receptor Expression In Avian Muscle (Cells), Kentu Rushadd Lassiter
Graduate Theses and Dissertations
Mitochondria are vital to the proper growth and function of muscle cells since they’re responsible for the majority of ATP production used for cellular energy. Previous studies have investigated how differences in mitochondrial function affects feed efficiency (FE) in broilers phenotyped for High and Low FE. Low FE broilers have been shown to have increased levels of reactive oxygen species (ROS), thus contributing to higher levels of oxidative stress and damage seen in these birds. Global gene and protein expression studies conducted on breast muscle of the High FE and Low FE phenotypes have suggested that differences in mitochondrial function …
Disruption Of Valosin-Containing Protein Activity Causes Cardiomyopathy And Reveals Pleiotropic Functions In Cardiac Homeostasis,
2019
University of Cincinnati
Disruption Of Valosin-Containing Protein Activity Causes Cardiomyopathy And Reveals Pleiotropic Functions In Cardiac Homeostasis, Matthew J. Brody, Davy Vanhoutte, Chinmay V. Bakshi, Ruijie Liu, Robert N. Correll, Michelle A. Sargent, Jeffery D. Molkentin
Peer Reviewed Articles
Valosin-containing protein (VCP), also known as p97, is an ATPase with diverse cellular functions, although the most highly characterized is targeting of misfolded or aggregated proteins to degradation pathways, including the endoplasmic reticulum–associated degradation (ERAD) pathway. However, how VCP functions in the heart has not been carefully examined despite the fact that human mutations in VCP cause Paget disease of bone and frontotemporal dementia, an autosomal dominant multisystem proteinopathy that includes disease in the heart, skeletal muscle, brain, and bone. Here we generated heart-specific transgenic mice overexpressing WT VCP or a VCPK524A mutant with deficient ATPase activity. Transgenic mice …
Glycine Receptor Expression Across Identified Retinal Ganglion Cell Types.,
2019
University of Louisville
Glycine Receptor Expression Across Identified Retinal Ganglion Cell Types., Ian Scot Pyle
Electronic Theses and Dissertations
Retinal ganglion cells (RGCs) represent the culmination of all retinal signaling and their output forms the substrate for vision throughout the rest of the brain. About 40 different RGC types have been defined by differences in their visually evoked responses, morphology, and genetic makeup. These responses arise from interactions between inhibition and excitation throughout the retinal circuit (Franke et al., 2017; Masland, 2012; Sanes & Masland, 2015; Werblin, 2011). Unlike most other areas of the central nervous system (CNS), the retina utilizes both GABA and glycine inhibitory neurotransmitters to refine glutamatergic excitatory signals (Franke & Baden, 2017; Werblin, 2011; C. …
The Q Rule In Bacteriodetes And The Identification And Characterization Of Porphyromonas Gingivalis Glutaminyl Cyclase.,
2019
University of Louisville
The Q Rule In Bacteriodetes And The Identification And Characterization Of Porphyromonas Gingivalis Glutaminyl Cyclase., John Andrew Houston
Electronic Theses and Dissertations
Background: Porphyromonas gingivalis, a major pathogen associated with chronic periodontitis, secretes variety of proteins, majority of which begins with glutamine. Several of these proteins were found with pyroglutamate (pGlu) at N-terminus suggesting the presence of this posttranslational modification pathway in P.gingivalis. The observation that N-terminal glutamine is over-represented as the first amino acid after signal peptide cleavage, and subsequent confirmation of pGlu formation on the nascent protein via mass spectrometry, led us to conclude that an enzyme must be present as the executor of this reaction. Hypothesis: PG2157 is a glutaminyl cyclase and is responsible for the cyclization of …
Development Of A Lectin-Fc Fusion Protein With Antiviral And Anti-Cancer Activity.,
2019
University of Louisville
Development Of A Lectin-Fc Fusion Protein With Antiviral And Anti-Cancer Activity., Matthew William Dent
Electronic Theses and Dissertations
This thesis describes the development of a novel lectin-Fc fusion protein and its antiviral and anti-cancer activity. The molecule, Avaren-Fc (AvFc), is a fusion of a variant of the actinomycete lectin actinohivin (Avaren) and the Fc region of human IgG1, and is selective for the terminal α1,2-mannose residues found at the ends of high-mannose-type glycans that can be found on the surface of certain heavily glycosylated viruses and cancer cells. Here, AvFc was found to be able to neutralize simian immunodeficiency virus as well as Hepatitis C virus with nanomolar IC50 values. Furthermore, AvFc recognizes a number of cell …
Paraoxonase 2 Is Critical For Non-Small Cell Lung Carcinoma Proliferation.,
2019
University of Louisville
Paraoxonase 2 Is Critical For Non-Small Cell Lung Carcinoma Proliferation., Aaron Whitt
Electronic Theses and Dissertations
Non-small cell lung carcinoma (NSCLC) comprises 85% of lung cancer diagnoses and is plagued by drug resistance. Thus, elucidating the underlying mechanisms of NSCLC is paramount to expand future treatment options. Paraoxonase 2 (PON2), an intracellular enzyme with arylesterase and lactonase functions, has well-established anti-atherosclerotic activity. Recent studies show PON2 is overexpressed in a variety of tumors and confers drug resistance, although these interactions have not been thoroughly examined in NSCLC. Thus, we sought to investigate the role of PON2 in cellular proliferation using PON2-knockout mice, primary mouse cells, and NSCLC cell lines. Using these approaches, we demonstrate that PON2 …
An Oxanthroquinone Derivative Disrupts Ras Plasma Membrane Localization And Function By Inhibition Of Acylpeptide Hydrolase And Perturbation Of Sphingomyelin Metabolism,
2019
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
An Oxanthroquinone Derivative Disrupts Ras Plasma Membrane Localization And Function By Inhibition Of Acylpeptide Hydrolase And Perturbation Of Sphingomyelin Metabolism, Lingxiao Tan
Dissertations and Theses (Open Access)
Oncogenic RAS proteins are commonly expressed in human cancer. To be functional, RAS proteins must undergo post-translational modification and localize to the plasma membrane (PM). Therefore, compounds that prevent RAS PM targeting have potential as putative RAS inhibitors. Here we examined the mechanism of action of oxanthroquinone G01 (G01), a recently described inhibitor of KRAS PM localization. We show that G01 mislocalized HRAS and KRAS from the PM with similar potency and disrupted the spatial organization of RAS proteins remaining on the PM. G01 also inhibited recycling of epidermal growth factor receptor and transferrin receptor, but did not impair internalization …
Reactive Glutamines And A Binding Site Region Contribute To Fxiii Substrate Specificity For Fibrinogen Αc,
2019
University of Louisville
Reactive Glutamines And A Binding Site Region Contribute To Fxiii Substrate Specificity For Fibrinogen Αc, Mohammed Hindi
College of Arts & Sciences Senior Theses
The reaction between transglutaminase factor XIII (FXIII) and fibrin is a key process in the final stages of blood coagulation. The αC region of fibrin contains three reactive glutamines (Q237, Q328, and Q366) which are crosslinked by FXIII, as well as a FXIII anchoring site (E396). Previous work has helped elucidate the FXIII-αC interaction, but much is still unknown about the key residues in the αC region.
Four crosslinking assays were carried out to characterize the contribution of the αC anchoring site and reactive glutamines in crosslinking by FXIII. The effects of individual E396A, Q366N, and Q328P (Fibrinogen Seoul II …
Autofluorescence To Study The Effects Of Acid Concentration On Cellular Metabolism In Vitro,
2019
University of Arkansas, Fayetteville
Autofluorescence To Study The Effects Of Acid Concentration On Cellular Metabolism In Vitro, Robin L. Raley
Chemistry & Biochemistry Undergraduate Honors Theses
Ultraviolet (UV) radiation-induced sunburns and their accompanying afflictions are a growing public health concern in the United States. There is a need for techniques that can accurately and non-invasively characterize the physiology of sunburned skin tissue directly after UV-damage and applying a topical skin treatment to relieve pain and promote healing. Two-photon excited fluorescence (TPEF) microscopy and fluorescence lifetime imaging (FLIM) can be used to investigate metabolic processes in live cells through endogenous fluorescence of the cofactors, NADH and FAD. These methods employ the optical redox ratio of FAD/(NADH+FAD), mean NADH lifetime, and the separation of the free and bound …
Protein Engineering For Biomedical Applications,
2019
Syracuse University
Protein Engineering For Biomedical Applications, Claudia Heritage
Renée Crown University Honors Thesis Projects - All
The Korendovych lab recently demonstrated for the first time that short peptides can selfassemble in the presence of metal ions to produce efficient catalysts in a variety of chemical reactions ranging from ester hydrolysis to oxygen activation. Original catalysts were produced by solid phase peptide synthesis. Solid phase synthesis can become the limiting factor for an experiment because it takes over two days to make and purify one peptide. Depending on characteristics of a peptide, the purification process can become a challenge involving a tedious process of protocol optimization. Screening of several peptides is time-consuming as it involves analysis of …
Delineation Of Events In Centripetal Migration During Drosophila Oogenesis,
2019
University of Nevada, Las Vegas
Delineation Of Events In Centripetal Migration During Drosophila Oogenesis, Travis Tait Parsons
UNLV Theses, Dissertations, Professional Papers, and Capstones
All multicellular organisms initially start out as a single cell. This cell must use the genetic information encoded in its DNA to multiply in number and build itself into a complex multicellular organism. How this process occurs is the focus of developmental biology, a field that seeks to understand how a combination of genetic information and environmental conditions shape a cell from its beginnings as a zygote all the way to maturity. A fundamental part of this process is the ability of cells to work together in order to build complex tissues and organs. Cells achieve this coordination by using …
Signaling Pathways In Skeletal Development And Metabolism,
2019
Loma Linda University
Signaling Pathways In Skeletal Development And Metabolism, Richard Charles Lindsey
Loma Linda University Electronic Theses, Dissertations & Projects
Osteoporosis, a disease characterized by low bone mass and microarchitectural deterioration, causes nine million debilitating fractures annually. An increase in bone resorption not adequately compensated by a corresponding increase in bone formation is the major cause of osteoporosis. Since current therapies have failed to effectively eliminate osteoporosis, there is an urgent need to discover novel mechanisms regulating bone resorption and formation and develop new therapeutic approaches to treat this disease. To that end, we have explored novel, non-canonical signaling mechanisms of two well-established regulators of bone: thyroid hormone (TH) and vitamin C (ascorbic acid, AA). Since previous studies have shown …
Characterization Of Extracellular Vesicles From Human Diabetic Retinopathy Retinal Tissue In Vitro And From Urine Of Human Patients With Diabetic Retinopathy,
2019
CUNY Graduate Center
Characterization Of Extracellular Vesicles From Human Diabetic Retinopathy Retinal Tissue In Vitro And From Urine Of Human Patients With Diabetic Retinopathy, Jason Mighty
Dissertations, Theses, and Capstone Projects
Diabetic Retinopathy (DR) is a neurovascular complication associated with diabetes mellitus that affects approximately 120 million people worldwide and its prevalence is expected to reach 190 million by 2030. DR diagnosis is accomplished with fundus ophthalmoscopy often when retinal damage and vision loss have already occurred. A group of biomarker being explored for early detection of diseases are extracellular vesicles (EVs), which are nanometer diameter lipid enclosed vesicles, released from all cell types and containing genetic cargo reflective of releasing cell state. EV biomarkers are currently being explored to help monitor disease predisposition, pathogenesis and response to treatment. While an …
Pre-Administration Of Medium Chain Triglycerides In Vivo Can Attenuate Or Block The Effects Of Recurrent Hypoglycemia,
2019
University at Albany, State University of New York
Pre-Administration Of Medium Chain Triglycerides In Vivo Can Attenuate Or Block The Effects Of Recurrent Hypoglycemia, Dhanisha Nandigama
Biological Sciences
Hypoglycemia is a state of abnormally low blood glucose. Many patients who use insulin, primarily for the treatment of diabetes, experience multiple bouts of hypoglycemia, termed recurrent hypoglycemia (RH). Because RH impairs cognitive function and ability to appropriately respond to a subsequent episode of hypoglycemia, it is critical to develop treatments. One approach, which we have taken here, is to attempt to preserve neuronal fuel supply during a hypoglycemic episode. Medium-chain triglycerides are medium-chain fatty acid (MCT) esters of glycerol that can provide an alternative fuel source to the brain via ketones; the hippocampus is known to express transporters for …
Spatial Reorganization Of Histone-Like Nucleoid Structuring Proteins Caused By Silver Nanoparticles,
2019
University of Arkansas, Fayetteville
Spatial Reorganization Of Histone-Like Nucleoid Structuring Proteins Caused By Silver Nanoparticles, Meaad Alqahtany
Graduate Theses and Dissertations
Silver nanoparticles (AgNPs) and ions (Ag+) can be the new generation of antibiotics due to their antimicrobial effects against bacteria and other microbes. Many studies have shown that AgNPs and suppress the growth of bacteria and damage the cell walls of the microbes; therefore, treating bacterial cells with AgNPs may be a promising method to terminate multi-resistant bacteria. In this work, the effect of AgNPs with two different surface coatings on the spatial reorganization of histone-like nucleoid structuring (H-NS) proteins in Escherichia coli bacteria was investigated using quantitative super-resolution fluorescence microscopy to understand the toxicity and antimicrobial mechanism of AgNPs. …
An Investigation Into Clinically Relevant Determinants Of Azole Resistance In Candida Albicans,
2019
University of Tennessee Health Science Center
An Investigation Into Clinically Relevant Determinants Of Azole Resistance In Candida Albicans, Andrew T. Nishimoto
Theses and Dissertations (ETD)
"Candida albicans is a commensal organism commonly colonizing the human gut and skin. As an opportunistic pathogen, it can cause persistent and serious infections in individuals with compromised immune systems, including the very young and elderly. Moreover, C. albicans can cause a wide spectrum of diseases ranging from superficial mucosal infections to life-threatening invasions of the organs and bloodstream. Candida species are the most common cause of invasive fungal disease, which is associated with high mortality and imposes a heavy toll on the healthcare system. Over the last 30 years, the azole antifungals have been a mainstay of antifungal therapy, …
Thiol-Based Misfolding: Linking Redox Balance To Cytosolic Proteostasis,
2019
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
Thiol-Based Misfolding: Linking Redox Balance To Cytosolic Proteostasis, Ford Amy
Dissertations and Theses (Open Access)
The eukaryotic cytosolic proteome is vulnerable to changes in proteostatic and redox balance caused by temperature, pH, oxidants and xenobiotics. Cysteine-containing proteins are especially at risk as the thiol side chain is subject to oxidation, adduction and chelation by thiol-reactive compounds. All of these thiol-modifiers have been demonstrated to induce the heat shock response and recruit protein chaperones to sites of presumed protein aggregation in the budding yeast Saccharomyces cerevisiae. However, endogenous targets of thiol stress toxicity responsible for these outcomes are largely unknown. Furthermore, I hypothesize proteins identified as redox-active are prone to misfolding and aggregation by thiol-specific …
Hsp70-Mediated Regulation Of Hsf1 Transcriptional Activity In Saccharomyces Cerevisiae,
2019
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
Hsp70-Mediated Regulation Of Hsf1 Transcriptional Activity In Saccharomyces Cerevisiae, Sara Peffer
Dissertations and Theses (Open Access)
In eukaryotic cells, protein homeostasis and cellular fitness is promoted by the transcription factor heat shock factor 1 (HSF1) during exposure to proteotoxic stress. HSF1 controls the basal and stress-induced expression of molecular chaperones and other protective targets. Dynamic regulation of HSF1 involves the major heat shock proteins Hsp70 and Hsp90. Recent advances in the understanding of this regulatory circuit in Saccharomyces cerevisiae have shown that the Hsp70 Ssa1 acts as a sensor for some proteotoxic stresses and is capable of a direct interaction with Hsf1. This work continues to explore the complex regulatory interaction between Hsf1 and Ssa1. I …
The Role Of Gene Expression Noise In Mammalian Cell Survival,
2019
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
The Role Of Gene Expression Noise In Mammalian Cell Survival, Kevin Farquhar
Dissertations and Theses (Open Access)
Drug resistance and metastasis remain obstacles to effective cancer treatment. A major challenge contributing to this problem is cellular heterogeneity. Even in the same environment, cells with identical genomes can display cell-to-cell differences in gene expression, also known as gene expression noise. Gene expression noise can vary in magnitude in a population or in fluctuation time scales, which is influenced by gene regulatory networks.
Currently, it is unclear how gene expression noise from gene regulatory networks contributes to drug survival outcomes in mammalian cells. An isogenic cell line with a noise-modulating genetic system tuned to the same mean is required. …
Development Of A High-Throughput System For Screening Of Anti-Prion Molecules,
2019
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
Development Of A High-Throughput System For Screening Of Anti-Prion Molecules, Katherine Do
Dissertations and Theses (Open Access)
The misfolded prion protein causes and transmits disease in both humans and animals. As other infectious agents, prions display strain variation, which can generate different pathological outcomes in affected individuals. Unfortunately, there are no known therapies for these diseases, which at present are invariably fatal. In this work, the Protein Misfolding Cyclic Amplification technology (PMCA, an in vitro test that replicates minimum quantities of infectious prions) has been modified to screen for small molecules inhibiting prion protein misfolding in a strain-specific manner. In order to approach a high-throughput PMCA system, technical aspects in PMCA has been optimized for application of …
