Profiling Transcription And Retrotransposition Of Mouse L1 Subfamilies,
2020
South Dakota State University
Profiling Transcription And Retrotransposition Of Mouse L1 Subfamilies, Lingqi Kong
Electronic Theses and Dissertations
Transposable elements, also called jumping genes, comprise almost 45% of the human genome. In contrast, only 1% of the human genome is protein-coding sequences. The function and advantages of maintaining such massive copies of transposable elements in the human genome are still unclear. Long interspersed element 1 (L1), the most substantial group and the only active autonomous transposable element in the human genome, has revealed its unique roles in many diseases. The insertional mutagenesis induced by L1 retrotransposition events could threaten human genomic stability and generate unexpected mutations. L1 overexpression has been documented in both somatic and germline cells and, …
Characterization Of The Influences Of Human Cytomegalovirus Glycoprotein O (Go) Expression On Gh/Gl Complexes Assembly And Its Polymorphisms On Cell-Free And Cell-To-Cell Spread, And Antibody Neutralization.,
2020
University of Montana
Characterization Of The Influences Of Human Cytomegalovirus Glycoprotein O (Go) Expression On Gh/Gl Complexes Assembly And Its Polymorphisms On Cell-Free And Cell-To-Cell Spread, And Antibody Neutralization., Le Z. Day
Graduate Student Theses, Dissertations, & Professional Papers
Human cytomegalovirus (HCMV) is widely spread throughout the world and immunocompromised individuals can suffer severe diseases from HCMV infection. Once the infection is established, HCMV can spread through the body and infect many major somatic cell types. The glycoproteins H and L (gH/gL) on HCMV envelope can be bound by either gO or the UL128-131 proteins to form complexes gH/gL/gO and gH/gL/UL128-131 that are critical for viral entry and spread, and these two complexes are important targets of neutralizing antibodies. Strains of HCMV vary considerably in the levels of gH/gL/gO and gH/gL/UL128-131. gO is one of the most diverse loci …
The Role Of Manganese In Streptococcus Sanguinis,
2020
Virginia Commonwealth University
The Role Of Manganese In Streptococcus Sanguinis, Tanya M. Puccio
Theses and Dissertations
Streptococcus sanguinis is primarily associated with oral health as a commensal bacterium. As an opportunistic pathogen, S. sanguinis is capable of colonizing heart valve vegetations, leading to the disease infective endocarditis. Previous studies from our lab have identified the high-affinity manganese transporter SsaACB as important for endocarditis virulence. The impact that manganese depletion has on S. sanguinis had never been evaluated and a secondary manganese transporter has not been identified. Thus, we employed the use of a fermentor to control large-scale growth over time and depleted manganese in an ΔssaACB mutant using a metal chelator, EDTA. The changes in …
Anti-Tumor Functions Of Sphingosine Kinase 1 And Sphingosine Kinase 2 In Breast Cancer Development,
2020
VCU
Anti-Tumor Functions Of Sphingosine Kinase 1 And Sphingosine Kinase 2 In Breast Cancer Development, Melissa A. Maczis
Theses and Dissertations
Bioactive sphingolipid metabolite sphingosine-1‐phosphate (S1P) circulating levels have been implicated in breast cancer (BC) progression. BCs usually respond to 17β-Estradiol (E2) through canonical receptor ERα66 for genomic effects, however, E2 also triggers rapid, non-genomic responses. E2 has been shown to activate sphingosine kinase 1 (SphK1), increasing S1P for S1P receptors signaling important for BC. The E2 receptor activating SphK1 has not been identified. We demonstrate triple negative BC cells, expressing only novel ERα splice variant ERα36, E2-induced SphK1 activation for S1P secretion. Tamoxifen, first-line BC endocrine therapy, an ERα66 antagonist but ERα36 agonist, activates SphK1 and increases S1P secretion in …
“C1orf150”: A Novel Regulator Of Jak2 Kinase, And Candidate Tumor Suppressor In Human Blood Cell Progenitors,
2020
University of New Hampshire, Durham
“C1orf150”: A Novel Regulator Of Jak2 Kinase, And Candidate Tumor Suppressor In Human Blood Cell Progenitors, Tyler M. Wade
Honors Theses and Capstones
Erythropoietin (EPO) is an essential growth factor for red blood cell (RBC) production. In response to anemia, hypoxia-sensing cells in the kidney express and release EPO. EPO then acts in bone marrow to drive RBC formation from erythroid progenitors. Upon binding to its cell surface receptor, EPO triggers a JAK2 kinase signaling cascade for progenitor cell growth. Our lab has discovered a novel regulator of JAK2, “C1ORF150” (“150”). “150” is conserved in H sapiens and primates and is a new orthologue of the B-cell receptor adaptor protein and tumor marker, HGAL. Using a shRNA knockdown approach, I investigated the actions …
Adaptation Of Vibrio Cholerae O1 To Protective, Lipopolysaccharide-Specific Antibodies In The Intestinal Lumen,
2020
University at Albany, State University of New York
Adaptation Of Vibrio Cholerae O1 To Protective, Lipopolysaccharide-Specific Antibodies In The Intestinal Lumen, Danielle Elizabeth Baranova
Legacy Theses & Dissertations (2009 - 2024)
The outer membrane (OM) of Gram-negative enteric pathogens like Vibrio cholerae is a barrier against host defense factors, as well as a sensor of physical and chemical stimuli that the bacteria encounter in the gastrointestinal tract. The OM is also the primary target of the mucosal immune response, which consists of secretory antibodies primarily directed against lipopolysaccharide (LPS). ZAC-3 is a monoclonal antibody (MAb) that targets the conserved core/lipid A region of LPS of the pandemic V. cholerae O1 serotype. In a neonatal mouse model, passively administered ZAC-3 IgG has been shown to reduce the ability of V. cholerae to …
The Stromal Response In Salivary Gland Injury,
2020
University at Albany, State University of New York
The Stromal Response In Salivary Gland Injury, Kevin O'Keefe
Legacy Theses & Dissertations (2009 - 2024)
Abstract
Launching The Next Generation : Transcriptional Regulation During Oogenesis,
2020
University at Albany, State University of New York
Launching The Next Generation : Transcriptional Regulation During Oogenesis, Alicia K. Mccarthy
Legacy Theses & Dissertations (2009 - 2024)
Germ cells give rise to gametes and link generations by passing genetic information from parent to offspring. Gametes arise from, in many sexually reproducing organisms, germline stem cells (GSCs) which are set aside early during development. GSCs have an amazing capacity to undergo self-renewal to give rise to a pool of undifferentiated cells, while also differentiating to generate specialized germ cells such as haploid gametes. Upon female GSC differentiation, mitotically dividing germ cells can initiate meiosis, and mature within a follicle. During maturation, the specified oocyte is provided with a trust fund of RNAs and proteins for the next generation …
Targeting The Rage Signaling Pathway To Ameliorate The Complications Of Diabetes,
2020
University at Albany, State University of New York
Targeting The Rage Signaling Pathway To Ameliorate The Complications Of Diabetes, Stephen James Dansereau
Legacy Theses & Dissertations (2009 - 2024)
Diabetes is a global health epidemic that can be devastating to those afflicted,
The Guardian Of The Genome : Regulation Of The Enhancer Networks Governing The P53-Mediated Stress Response,
2020
University at Albany, State University of New York
The Guardian Of The Genome : Regulation Of The Enhancer Networks Governing The P53-Mediated Stress Response, Allison Catizone
Legacy Theses & Dissertations (2009 - 2024)
After fertilization in vertebrates, cells work to build organs, tissues and begin to rapidly differentiate and proliferate. This process is the orchestration of finely tuned signals and perfectly timed gene expression patterns. The first step in gene expression, transcription, is governed by proteins known as transcription factors (TF). TFs are responsible for binding to DNA, altering chromatin structure, and driving activation of other genes based on the organism’s needs. Once the process of development is complete, organisms shift their resources to maintaining homeostasis. Humans regularly encounter outside stressors such as UV radiation, pollution, allergens, and drugs. Cells also accumulate mutations …
Regulation Of Gene Expression Through Ribosome-Associated Proteins,
2020
University at Albany, State University of New York
Regulation Of Gene Expression Through Ribosome-Associated Proteins, Clare Margaret Miller
Legacy Theses & Dissertations (2009 - 2024)
Translation is a crucial mechanism for generating proteins to carry out cellular processes and for ensuring proper cell functions. Ribosomes are at the center of translation and are complex pieces of machinery. They consist of at least 80 core eukaryotic ribosomal proteins, which are conserved from prokaryotes, and four ribosomal RNAs (rRNAs): 18S, 28S, 5,8A 5S. In addition, numerous translation factors aid the ribosome in protein production. While ribosomes are typically described by these core features, they are known to exist in a heterogenous pool with variations in protein composition, modifications of rRNA, and an assortment of non-ribosomal proteins that …
Role Of Microrna-483 In Pancreatic Β-Cells,
2020
Michigan Technological University
Role Of Microrna-483 In Pancreatic Β-Cells, Jackson Waugh
Dissertations, Master's Theses and Master's Reports
Insulin is an essential hormone produced by β-cells in the pancreas. The release of insulin is tightly regulated in healthy people in order to control blood sugar level in our body. However, people with Type 2 Diabetes have insufficient insulin secretion from pancreatic β-cells, leaving to high blood sugar (hyperglycemia) and β-cell failure. microRNAs (miRNAs or miR) are newly discovered small regulatory molecules and have emerged as important regulator of cell growth, differentiation, and organ function. Altered miRNA function has been implicated in the pathogenesis of a variety of human disease, including diabetes. In this report, we focus on dissecting …
Molecular Facet Of Host-Pathogen Interactions In Fusarium Head Blight In Wheat ( Triticum Aestivum L.),
2020
South Dakota State University
Molecular Facet Of Host-Pathogen Interactions In Fusarium Head Blight In Wheat ( Triticum Aestivum L.), Bimal Paudel
Electronic Theses and Dissertations
Fusarium head blight (FHB) is a severe disease of wheat (Triticum aestivum L.). It not only reduces the quantity of the harvested grains but also decreases the grain quality due to mycotoxins contamination, especially Deoxynivalenol (DON). Qfhb1 (or simply called Fhb1) is the most important quantitative trait locus (QTL) for FHB resistance. Our lab has previously identified wheat gene WFhb1-1 (aka. Wfhb1_c1) as a candidate for FHB resistance gene. Here we report that WFhb1-1 has been cloned. The gene (GenBank # KU304333.1) consists of a single exon, encoding a putative membrane protein of 127 amino acids. WFhb1-1 protein produced in …
Genetic Study Of Alkane Production And Oxic Nitrogen Fixation In Anabaena Sp. Pcc 7120,
2020
South Dakota State University
Genetic Study Of Alkane Production And Oxic Nitrogen Fixation In Anabaena Sp. Pcc 7120, Jaimie L. Gibbons
Electronic Theses and Dissertations
Anabaena sp. PCC 7120 is a filamentous, nitrogen-fixing cyanobacterium that uses spatial separation to perform photosynthesis and nitrogen fixation simultaneously. Under fixed nitrogen limiting conditions, Anabaena 7120 forms specialized cells, called heterocysts, to fix nitrogen. In this research, I sought to add to the knowledge surrounding the process of heterocystous nitrogen fixation in Anabaena 7120. Cyanobacteria universally produce alkanes, which have been suggested to play a role in helping the organism adapt to abiotic stress, such as diazotrophic conditions. In my first study, I sought to identify the genes required for production of the hydrocarbon heptadecane (C17H36). Through using a …
Synthesis And The Genetic Encoding Of Novel Lysine Post-Translational Modifications,
2020
Virginia Commonwealth University
Synthesis And The Genetic Encoding Of Novel Lysine Post-Translational Modifications, Sahan A. Galbada Liyanage
Theses and Dissertations
Post-translational modifications (PTMs) play a significant role in regulating cell signaling and regulating the inner cellular environment. The study of PTMs and their primary biological functions is critical for the development of new medicines targeting the pathways and biomolecules responsible for the PTMs.
Previous studies revealed the direct coupling of the β -hydroxybutyryl lysine (KBHB) modification with the gene expression. KBHB in histone proteins links metabolism to epigenetics and gene expression and enables to study in-depth, how cell metabolism controls the gene expression and vice versa. Similar novel histone modification, KLac, attracts a special interest …
Hormonal Regulation Of Glycine Decarboxylase And Its Metabolic Outcomes,
2020
Wayne State University
Hormonal Regulation Of Glycine Decarboxylase And Its Metabolic Outcomes, Ruta Milind Jog
Wayne State University Dissertations
The amino acid glycine is involved in generation of multiple critical metabolites including glutathione, heme, and creatinine. Interestingly, in both humans and rodents, circulating glycine levels are significantly reduced in obesity, glucose intolerance, type II diabetes and non-alcoholic fatty liver disease. The glycine cleavage system is the predominant glycine degradation pathway in humans. The rate-limiting enzyme of glycine cleavage system is glycine decarboxylase (GLDC), and loss-of-function mutations of GLDC cause hyperglycinemia. Here, we show that GLDC gene expression is upregulated in livers of mouse models of diabetes and diet-induced obesity as well as in the fasted state in normal animals. …
Epigenetic Regulation Of Hormone Action In The Red Flour Beetle, Tribolium Castaneum (Herbst),
2020
University of Kentucky
Epigenetic Regulation Of Hormone Action In The Red Flour Beetle, Tribolium Castaneum (Herbst), Smitha George
Theses and Dissertations--Entomology
Hormones are the chemical communication signaling molecules released into the body fluid to stimulate target cells of multicellular organisms. Two major hormones, ecdysteroids (20-hydroxyecdysone, 20E) and juvenile hormones (JH), regulate a wide variety of physiological and developmental processes in insects. Therefore, hormones have been extensively studied and are attractive targets for the development of target-specific insect control methods. Recent studies suggest that epigenetics adds another layer of regulation to explain multiple functions of the same circulating hormone in different tissues and at various time points. In my dissertation, I focused on a major post-translational modification, ‘acetylation,’ to elucidate the epigenetic …
Optimisation Of Estrogen Receptor Subtype-Selectivity Of A 4-Aryl-4h-Chromene Scaffold Previously Identified By Virtual Screening,
2020
Trinity College Dublin, Ireland
Optimisation Of Estrogen Receptor Subtype-Selectivity Of A 4-Aryl-4h-Chromene Scaffold Previously Identified By Virtual Screening, Miriam Carr, Andrew Knox, Daniel Nevin, Niamh O'Boyle, Shu Wang, Billy Egan, Thomas Mccabe, Brendan Twamley, Daniela Zisterer, David Lloyd, Mary Meegan
Articles
4-Aryl-4H-Chromene derivatives have been previously shown to exhibit anti-proliferative, apoptotic and anti-angiogenic activity in a variety of tumor models in vitro and in vivo generally via activation of caspases through inhibition of tubulin polymerisation. We have previously identified by Virtual Screening (VS) a 4-aryl-4H-chromene scaffold, of which two examples were shown to bind Estrogen Receptor α and β with low nanomolar affinity and <20-fold selectivity for α over β and low micromolar anti-proliferative activity in the MCF-7 cell line. Thus, using the 4-aryl-4H-chromene scaffold as a starting point, a series of compounds with a range of basic arylethers at C-4 and modifications at the C3-ester substituent of the benzopyran ring were synthesised, producing some potent ER antagonists in the MCF-7 cell line which were highly selective for ERα (compound 35; 350-fold selectivity) or ERβ (compound 42; 170-fold selectivity).
Characterization And Enzyme Engineering Of Laccases Towards Lignin Valorization In Aqueous Ionic Liquids,
2020
University of Kentucky
Characterization And Enzyme Engineering Of Laccases Towards Lignin Valorization In Aqueous Ionic Liquids, Joseph Stevens
Theses and Dissertations--Biosystems and Agricultural Engineering
Lignin is one of the most abundant polymers found in nature, making up 15 – 40% of the weight of terrestrial biomass. Due to the structural and monomeric heterogeneity of lignin, it is recalcitrant thermochemical and biological valorization methods. Converting lignin to value-added products via sustainable and cost-effective pathways will reduce waste and add value to future cellulosic biorefineries. Biological methods for lignin valorization (e.g. lignin degrading enzymes or microbes) is limited by low lignin solubility in biocompatible solvents, resulting in low product yield. Recent reports on biocatalysts for lignin valorization have focused on the lignolytic multicopper oxidase laccase, …
Investigation Of The Phenotypic Effect Of Mutating A Highly-Conserved Cysteine Residue In The Rna Polymerase Beta Prime Subunit Of E. Coli Rna Polymerase,
2020
Western Kentucky University
Investigation Of The Phenotypic Effect Of Mutating A Highly-Conserved Cysteine Residue In The Rna Polymerase Beta Prime Subunit Of E. Coli Rna Polymerase, Meg Dillingham
Mahurin Honors College Capstone Experience/Thesis Projects
All bacteria contain a multi-subunit RNA polymerase (RNAPs) that is essential for gene expression. Because of the centrality of these enzymes in cellular life, the structure and function of the various subunits is intensely studied. The primary sequence of the RNAP β’ subunit contains five cysteine residues that are highly conserved. Four of the cysteines coordinate a zinc atom and form the beta prime subunit zinc binding domain (ZBD). Mutation of any one of the ZBD cysteines is lethal to the cell. However, the role of the fifth residue (C58), which is located upstream of the ZBD cysteines, has not …
