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Feasibility Of Tubulin As A Control For Gene Expression Following Transfection In Mouse Monocyte/Macrophage-Like Cells, Ankita Chabra 2022 St. Mary's University

Feasibility Of Tubulin As A Control For Gene Expression Following Transfection In Mouse Monocyte/Macrophage-Like Cells, Ankita Chabra

Honors Program Theses and Research Projects

Transfection, which is the ability to modify host cells’ genetic content, has broad application in studying normal cellular processes, molecular mechanism of disease and gene therapy. There are several transfection techniques, and all require either a control or a reference gene. Commonly used controls for transfection experiments are housekeeping genes, which maintain expression for a given cell/tissue, experimental conditions, and treatment. However, recent research has uncovered that expression levels of housekeeping genes may vary depending on the gene, cell type and experimental conditions. A growing body of evidence demonstrates that housekeeping genes are inadequate internal standards for measuring gene expression …


A Pathway To Solving The Structure Of Cl-Par-4 Tumor Suppressor Protein: Challenges & Findings, Krishna Raut, Samjhana Pandey, Andrea M. Clark, Komala Ponniah, Steven M. Pascal 2022 Old Dominion University

A Pathway To Solving The Structure Of Cl-Par-4 Tumor Suppressor Protein: Challenges & Findings, Krishna Raut, Samjhana Pandey, Andrea M. Clark, Komala Ponniah, Steven M. Pascal

College of Sciences Posters

Prostate apoptosis response-4 (Par-4) is a pro-apoptotic tumor suppressor protein. Down-regulation of this protein has been reported in a myriad of cancers. Conversely, up-regulation of Par-4 is found to be associated with several neurodegenerative disorders. Par-4 is unique in the sense it can selectively induce apoptosis in cancer cells. For this, caspase-dependent intracellular cleavage of Par-4 is essential to produce the functionally active fragment, cl-Par-4 (caspase-cleaved Par-4). The cl-Par-4 protein inhibits the NF-κB-mediated cell survival pathway and causes selective apoptosis in various tumor cells.

Our laboratory is interested in determining the structure of cl-Par-4 and understanding it’s interaction with various …


Exploring The Functionality Of Putative Bop3 Post-Translational Modifications, Liliya Tkachuk 2022 Belmont University

Exploring The Functionality Of Putative Bop3 Post-Translational Modifications, Liliya Tkachuk

Honors Scholars Collaborative Projects

All eukaryotic cells require that transcribed mRNAs undergo export form the nucleus to the cytoplasm where they can be translated into proteins. This process requires a host of proteins which are conserved between the unicellular budding yeast, S. cerevisiae, and humans. During this process, Mex67 and other associated proteins facilitate the mRNA to travel across the nuclear pore complex (NPC), doorways embedded in the nuclear envelope. Upon the exit of mRNA, Mex67 is released and recycled back into the nucleus to facilitate the export of more mRNA. This occurs through the action of Dbp5, whose activity is regulated through …


Generating A Colorimetric Ssa4 Transcript Export Reporter For Multicopy Suppression Screen In S. Cerevisiae, Zaid Hatem 2022 Belmont University

Generating A Colorimetric Ssa4 Transcript Export Reporter For Multicopy Suppression Screen In S. Cerevisiae, Zaid Hatem

[Archive] Belmont University Research Symposium (BURS)

The export of mRNA from the nucleus to the cytoplasm is a regulatory point that is essential to the pathway of gene expression in eukaryotic cells. The export of mRNA transcripts is mediated through selective doorways called the nuclear pore complexes (NPC). Additionally, there are proteins associated with the nuclear pore complex that assist in facilitating the export. This includes association with the export receptor, Mex67, which binds to the transcript and ferries it through NPCs. During cellular stress, such as heat shock, the export of housekeeping mRNA transcripts is halted, forcing these transcripts to remain inside the nucleus and …


Neuroprotective Effect Of Liraglutide In An Experimental Mouse Model Of Multiple Sclerosis: Role Of Ampk/Sirt1 Signaling And Nlrp3 Inflammasome, Reham A. Ammar, Ahmed F. Mohamed, Mohamed M. Kamal, Marwa M. Safar, Noha F. Abdelkader 2022 The Britsih University in Egypt

Neuroprotective Effect Of Liraglutide In An Experimental Mouse Model Of Multiple Sclerosis: Role Of Ampk/Sirt1 Signaling And Nlrp3 Inflammasome, Reham A. Ammar, Ahmed F. Mohamed, Mohamed M. Kamal, Marwa M. Safar, Noha F. Abdelkader

Pharmacy

The heterogeneous nature of multiple sclerosis (MS) and the unavailability of treatments addressing its intricate network and reversing the disease state is yet an area that needs to be elucidated. Liraglutide, a glucagon-like peptide-1 analogue, recently exhibited intriguing potential neuroprotective effects. The currents study investigated its potential effect against mouse model of MS and the possible underlying mechanisms. Demyelination was induced in C57Bl/6 mice by cuprizone (400 mg/kg/day p.o.) for 5 weeks. Animals received either liraglutide (25 nmol/kg/day i.p.) or dorsomorphin, an AMPK inhibitor, (2.5 mg/ Kg i.p.) 30 min before the liraglutide dose, for 4 weeks (starting from the …


Identification And Characterization Of An Ftsq-Null Suppressor Gene In Streptomyces, Alexandra Sherman 2022 Otterbein University

Identification And Characterization Of An Ftsq-Null Suppressor Gene In Streptomyces, Alexandra Sherman

Undergraduate Distinction Papers

Streptomyces coelicolor is a filamentous Gram-positive soil bacterium that grows similarly to fungi. The bacteria grow together in a mycelium-like structure that produces aerial hyphae above the media surface for sporulation. Evenly spaced crosswalls develop during cell division of the aerial filaments with the aid of division genes, including ftsZ and ftsQ. These cell division genes are essential for growth in the common bacterium and if silenced will cause the bacterium to die. Streptomyces uniquely retains the ability for growth after a deletion of either the ftsZ or ftsQ gene which causes a loss of septum formation in the …


Investigation Of Oncogenic Ras And Endoplasmic Reticulum-Mitochondria Calcium Flux And Their Relationship In The Context Of Tumorigenesis, Emma Anderson 2022 Liberty University

Investigation Of Oncogenic Ras And Endoplasmic Reticulum-Mitochondria Calcium Flux And Their Relationship In The Context Of Tumorigenesis, Emma Anderson

Senior Honors Theses

Intracellular calcium as a signaling molecule is a pervasive feature of cellular pathways, especially those that manage internal homeostasis and transitions through the cell cycle, so much so that regulated, responsive calcium flux between the endoplasmic reticulum (ER) and the mitochondria has been suggested to play a major role in cancer development. Another factor commonly implicated in tumorigenesis is RAS, an oncogene that controls signaling for many pathways that are also regulated by calcium. While both calcium and oncogenic RAS signaling are implicated in cancer development, possible links between them have yet to be determined. The identification of these links …


The Yeast Glucose Sensing Receptor Is Stabilized By Interaction With Casein Kinases, Emma E. Mohler 2022 Liberty University

The Yeast Glucose Sensing Receptor Is Stabilized By Interaction With Casein Kinases, Emma E. Mohler

Senior Honors Theses

Many metabolic diseases are rooted in the inability to process glucose or regulate its uptake. These processes can be explored using yeast as a model. Rgt2 is a glucose sensing receptor in yeast, and it detects glucose concentration outside the cell. This receptor is present on the plasma membrane in high glucose conditions but absent in low glucose. Western blot and a yeast two-hybrid assay were used to investigate the relationship between Rgt2 and the plasma membrane-tethered yeast casein kinases, Yck1 and Yck2. This research demonstrated that in high glucose, Rgt2 is stabilized on the plasma membrane by interaction with …


The Development Of Inhibitors For Sars-Cov-2 Orf8, My Thanh Thao Nguyen 2022 College of Saint Benedict/Saint John's University

The Development Of Inhibitors For Sars-Cov-2 Orf8, My Thanh Thao Nguyen

CSB and SJU Distinguished Thesis

An unexpected outbreak of SARS-CoV-2 caused a worldwide pandemic in 2020. Many repurposed drugs were tested, but there are currently only three FDA approved antivirals (Merck’s antiviral Molnupiravir, Pfizer’s antiviral Paxlovid, and Remdisivir).1 Most of the antiviral drugs tested SARS-CoV-2 main protease and RNA-dependent RNA polymerase. However, it is important to explore different drug targets of SARS-CoV-2 to prepare for the virus mutations of the future. This research looks at an alternative approach in which SARSCoV- 2 Open Reading Frame 8 (ORF8), which has been shown to be a rapidly evolving hypervariable gene, was chosen to be the protein of …


Sars-Cov-2 Main Protease Inhibitors Repurposed For Hiv-1 Protease Binding, Jacob Minkkinen 2022 College of Saint Benedict/Saint John's University

Sars-Cov-2 Main Protease Inhibitors Repurposed For Hiv-1 Protease Binding, Jacob Minkkinen

CSB and SJU Distinguished Thesis

Severe acute respiratory syndrome (SARS-CoV-2) led to the COVID-19 global pandemic, with over 460 million cases of infection and over 6 million deaths since the start of the pandemic. SARS-CoV-2 is a retrovirus that utilizes a main protease (Mpro). Mpro is a catalytic cys/his protease. Several treatments were proposed to stop the pandemic including repurposing drugs to inhibit the Mpro. Another retrovirus that uses a protease is human immunodeficiency virus (HIV-1) which has been a global epidemic for 40 years and is a devastating disease that attacks the immune system. HIV-1 has infected 79.5 million people and has killed an …


Investigating The Role Of Fun30, A Chromatin Remodeler, In Dna Repair, Mehwish Iqbal 2022 United Arab Emirates University

Investigating The Role Of Fun30, A Chromatin Remodeler, In Dna Repair, Mehwish Iqbal

Dissertations

The repair of DNA double-strand breaks (DSBs) is crucial for maintaining genome stability. DSB repair needs to take place within the complex organization of the chromatin, and this requires changes in the chromatin structure adjacent to DSB sites. These changes occur through covalent histone modifications that alter histone-DNA contacts as well as by the action of ATP-dependent chromatin remodelers. Many chromatin remodelers, including Fun30, are involved in DSB repair. Fun30 facilitates DNA end resection at DSB site during the homologous recombination repair pathway. Apart from its role in DNA repair, Fun30 promotes gene silencing at heterochromatic loci such as telomeres, …


Development Of Enhanced Algae Strains And Sustainable Cultivation Processes For Production Of Algal Lipids For Biofuels And Bioproducts, Enlin Lo 2022 University of South Florida

Development Of Enhanced Algae Strains And Sustainable Cultivation Processes For Production Of Algal Lipids For Biofuels And Bioproducts, Enlin Lo

USF Tampa Graduate Theses and Dissertations

The establishment of an algae industry is crucial for addressing global biofuel and bioproduct demand that meets the Sustainable Development Goals (SDG) worldwide. Photosynthetic microalgae are excellent sources for food, fiber, fuel, feed, and fertilizer, which are the 5Fs of the SDG. However, at present, algae-based materials are not cost-competitive or sufficiently sustainable. Improved productivity, lower cultivation cost, and reduced use of resources are required to transition from lab to industry, necessitating the development of superior strains that have high productivity and can tolerate environmental stress, such as temperature and salinity, so they can be cultivated at large scale outdoors …


Defining The Role Of Oxidized Mitochondrial Dna In Myelodysplastic Syndromes, Grace Anne Ward 2022 University of South Florida

Defining The Role Of Oxidized Mitochondrial Dna In Myelodysplastic Syndromes, Grace Anne Ward

USF Tampa Graduate Theses and Dissertations

Myelodysplastic Syndromes (MDS) are heterogeneous bone marrow (BM) failure malignancies characterized by constitutive innate immune activation, NLRP3 inflammasome (IFM) driven pyroptotic cell death, and the induction of interferon-stimulated genes (ISG). MDS often diagnostically resembles other hematologic disorders, as such, additional tools are needed for the discrimination from overlapping disorders. We observed that oxidized mitochondrial DNA (ox-mtDNA) is released upon cytolysis. We hypothesize that levels of ox-mtDNA are high in MDS, allowing us to use it as a diagnostic biomarker; and that cell free ox-mtDNA is contributing to feedforward BM failure.

ROC/AUC analysis demonstrated that ox-mtDNA is a sensitive and specific …


Efforts To Increase The Ketamine-Like Activity Of The Rapid-Acting Antidepressant Ro-25-6981 (Mi-4) By Increasing Ampa Potentiation, Nathan Heger 2022 Roseman University of Health Sciences

Efforts To Increase The Ketamine-Like Activity Of The Rapid-Acting Antidepressant Ro-25-6981 (Mi-4) By Increasing Ampa Potentiation, Nathan Heger

Annual Research Symposium

The small molecule ketamine has generated much interest due to its rapid antidepressant effects. Despite having a rapid onset, ketamine has poor bioavailability, short duration of action, toxicities with long-term use, and a high potential for abuse. The molecule MI-4 (RO 25-6981) has also been shown to have both a rapid and sustained antidepressant effect. Most of the research into the mechanism of the rapid onset of MI-4 and ketamine has focused on their interaction with the NMDA receptor in addition to some monoamine transporters. Some recent publications have shown a significant role of AMPA receptors in the ketamine antidepressant …


Endogenous Cftr Expression In Human Epithelial Cell Lines, Zithlaly Amezquita 2022 Mississippi University for Women

Endogenous Cftr Expression In Human Epithelial Cell Lines, Zithlaly Amezquita

Undergraduate Research Conference

CFTR (Cystic Fibrosis Transmembrane-conductance Regulator) is a plasma membrane protein that functions as a chloride ion channel on many epithelial cells. There are over 1000 mutations that affect the function of this protein; however, the most common mutation is DF508. CFTR mutations target many secretory organs like pancreas and lungs causing the genetic disease cystic fibrosis (CF), common among Caucasians of northern European origin. Detection of endogenous CFTR expression is possible by a difficult and costly immunoprecipitation method but not by the most used western blotting method. Therefore, the goal of this project was to detect the endogenous CFTR expression …


Analyzing Inhibitors Of The Sars-Cov-2 Endoribonuclease Nsp15, Mary Staunton 2022 University of Connecticut

Analyzing Inhibitors Of The Sars-Cov-2 Endoribonuclease Nsp15, Mary Staunton

Honors Scholar Theses

The global pandemic caused by the virus SARS-CoV-2 has devastated the world. A flurry of research into the structures and activities of the virus have identified several viable targets for drug therapy, including the endoribonuclease nsp15, also known as EndoU. EndoU has been shown to play a role in diminishing the host cell’s immune response to the virus by cleaving signaling dsRNA, specifically targeting uridine sequences. The development of the crystal structure nsp15 allowed our lab along with others to perform virtual screenings to identify inhibitors that might be able to dock at the active site and inhibit the activity …


The Role Of Eicosanoid Metabolism In Mammalian Wound Healing And Inflammation, Kenneth D. Maus 2022 University of South Florida

The Role Of Eicosanoid Metabolism In Mammalian Wound Healing And Inflammation, Kenneth D. Maus

USF Tampa Graduate Theses and Dissertations

Inflammatory wounds, both chronic and acute, lead to increased morbidity and mortality rates, especially in the elderly population. The annual healthcare cost for chronic wound care alone is over $39B in the US and the demographic of susceptible patients is steadily increasing due to an aging population and lifestyle-related diseases (e.g., hyperlipidemia, obesity, and type 2 diabetes). In fact, many chronic wounds currently have a worse 5-year outlook than certain types of cancers. This shows the need for expediting the wound healing process in such a way that compresses inflammatory signaling and encourages wound resolution without sacrificing pathogen removal and …


Delineating The Exocytic Fusion Machinery Required For Mast Cell Exocytosis, Pratikshya Adhikari 2022 University of Southern Mississippi

Delineating The Exocytic Fusion Machinery Required For Mast Cell Exocytosis, Pratikshya Adhikari

Dissertations

Mast cells undergo exocytosis to release a wide array of inflammatory mediators by utilizing membrane fusion proteins-SNAREs (soluble-N-ethyl-maleimide sensitive factor attachment protein receptor) along with essential regulatory Munc18 and Munc13 proteins. Accumulating evidence in mast cell biology suggests the existence of distinct pools of mast cell mediators. However, the precise mechanism underlying the release of each mast cell mediator is not clear. To determine whether different exocytic machineries are required for differential mediator release, I used reconstitution to investigate the differential role of Munc18s in fusion machinery regulation. Munc18a and Munc18c stimulated VAMP2 and VAMP3-mediated lipid mixing, whereas Munc18b only …


Impact Of Arginine Metabolism And Sensing In Mouse Models Of Alzheimer’S Disease, Chao Ma 2022 University of South Florida

Impact Of Arginine Metabolism And Sensing In Mouse Models Of Alzheimer’S Disease, Chao Ma

USF Tampa Graduate Theses and Dissertations

Alzheimer’s disease (AD) remains the most common neurodegenerative disease in the central nervous system (CNS), with amyloidosis and tauopathy as their two main hallmarks. Typical AD pathologies include cerebral plaques deposited by amyloid-β, neurofibrillary tangles aggregated by tau, and neuroinflammation caused by activated brain myeloid cells. A critical theme is centered on impaired brain metabolism. Emerging evidence showed that impaired arginine metabolism was a novel biomarker pathway for AD. The manipulation of arginine metabolism by a critical enzyme arginase 1 (ARG1) in neurons indicated therapeutic benefits in alleviating tau pathology. Balanced cellular proteostasis was governed by the mechanistic target of …


Investigations Into The Improvement Of Angelman Syndrome Therapeutics, Austin W. Nenninger 2022 University of South Florida

Investigations Into The Improvement Of Angelman Syndrome Therapeutics, Austin W. Nenninger

USF Tampa Graduate Theses and Dissertations

Angelman syndrome (AS) is a rare genetic neurodevelopmental disease caused by interruption of the function of the ubiquitin ligase UBE3A gene. Patients experience an early life onset of symptoms which include pronounced intellectual disability, drastic speech impairmentor inability to speak, severe movement disorders, seizures, aggression, disruptive sleep impairment, and unusual personality traits. Estimates of prevalence show that approximately 1:15000 births are affected.

The disease is severe, and the burden can be devastating to the patients and the caregivers that they require for the duration of their relatively normal lifespan. Current treatments for the disease are lacking. Many are expensive and …


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