Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Cell and Developmental Biology (120)
- Cell Biology (115)
- Microbiology (87)
- Medicine and Health Sciences (55)
- Biology (34)
-
- Arts and Humanities (26)
- American Studies (25)
- Medical Specialties (19)
- Biochemistry (18)
- Oncology (18)
- Immunology and Infectious Disease (17)
- Medical Sciences (12)
- Neurosciences (12)
- Public Health (12)
- Parasitology (8)
- Physical Sciences and Mathematics (8)
- Genetics (7)
- Genetics and Genomics (7)
- Bioinformatics (6)
- Physiology (6)
- Ecology and Evolutionary Biology (5)
- Engineering (5)
- Biodiversity (4)
- Pharmacology, Toxicology and Environmental Health (4)
- Virology (4)
- Biomedical Engineering and Bioengineering (3)
- Biophysics (3)
- Keyword
-
- Proteomics (10)
- Cancer (7)
- Staphylococcus aureus (6)
- Autophagy (5)
- Malaria (5)
-
- Neurodegeneration (5)
- Transcription (5)
- Aging (4)
- Apoptosis (4)
- C. elegans (4)
- DNA repair (4)
- DNA replication (4)
- Inflammation (4)
- Lung cancer (4)
- Mass Spectrometry (4)
- Microglia (4)
- Pathogenesis (4)
- Tau (4)
- Bioinformatics (3)
- Chromatin (3)
- DNA Damage (3)
- EHEC (3)
- Epigenetics (3)
- Humans (3)
- Immunotherapy (3)
- MDMX (3)
- Mass spectrometry (3)
- Metabolism (3)
- Microbiome (3)
- Ovarian cancer (3)
- Publication Year
- Publication
- Publication Type
Articles 61 - 90 of 250
Full-Text Articles in Molecular Biology
Cytoplasmic Polyadenylation Element Binding Protein 2 Alternative Splicing Regulates Hif1Α During Chronic Hypoxia, Emily M. Mayo
Cytoplasmic Polyadenylation Element Binding Protein 2 Alternative Splicing Regulates Hif1Α During Chronic Hypoxia, Emily M. Mayo
USF Tampa Graduate Theses and Dissertations
Chronic pulmonary hypoxia commonly results in the sustained expression of HIF1 (hypoxia inducible factor 1), a heterodimeric transcription factor, that, if unrestrained, can result in dramatic vasculature remodeling, pulmonary arterial hypertension, and right-sided heart failure. Together, these pulmonary disorders cost approximately $100 billion annually to treat due to the limited therapeutic targets designed to inhibit HIF1 expression. In this study, we introduce a translational regulator of HIF1 expression, known as Cytosolic polyadenylation element binding proteins 2 (CPEB2). Our lab has previously demonstrated in cancer cells that alternatively spliced isoforms of CPEB2 regulate the translation of the HIF1 oxygen-dependent subunit, HIF1α, …
Circrev1 Expression In Triple-Negative Breast Cancer, Meagan P. Horton
Circrev1 Expression In Triple-Negative Breast Cancer, Meagan P. Horton
USF Tampa Graduate Theses and Dissertations
Triple-negative breast cancer (TNBC) comprises only 24% of breast cancer cases, yet is the second leading cause of cancer mortality in women due to its aggressive nature (1). This increase in mortality is due to the lack of receptors for three targetable growth factors (HER2, progesterone, and estrogen receptors). Our previous studies have indicated that these cancers are highly dysregulated in respect to alternative splicing. Hence, we undertook a study aimed at identifying circular RNAs (circRNAs) generated from back-splicing events which were dysregulated in TNBC. We have identified a novel circRNA transcript, circular REV1 (circREV1), which is upregulated in our …
Bone Microenvironmental Control Of Skeletal Malignancy, Chen Hao Lo
Bone Microenvironmental Control Of Skeletal Malignancy, Chen Hao Lo
USF Tampa Graduate Theses and Dissertations
Bone is a common site of metastasis for many solid malignancies. Bone-metastatic cancers pose a significant clinical problem worldwide and is among the main causes for cancer patient morbidity and mortality. Patients with advanced bone-metastatic diseases often present with either osteolytic or osteogenic bone diseases as their cancers progress. These bone pathologies are products of the cancer co-opting the local bone remodeling stroma to yield important growth nutrients and factors. Unfortunately, skeletal metastases remain incurable and are fatal. Identifying and understanding the causal multicellular and molecular interactions underlying skeletal malignancies can yield crucial ideas for targeting and inhibiting disease progression. …
Tracking The Subcellular Localization Of Surface Proteins In Staphylococcus Aureus By Immunofluorescence Microscopy, Salvatore J. Scaffidi, Mac A. Shebes, Wenqi Yu
Tracking The Subcellular Localization Of Surface Proteins In Staphylococcus Aureus By Immunofluorescence Microscopy, Salvatore J. Scaffidi, Mac A. Shebes, Wenqi Yu
Molecular Biosciences Faculty Publications
Surface proteins of Staphylococcus aureus and other Gram-positive bacteria play essential roles in bacterial colonization and host-microbe interactions. Surface protein precursors containing a YSIRK/GXXS signal peptide are translocated across the septal membrane at mid-cell, anchored to the cell wall peptidoglycan at the cross-wall compartment, and presented on the new hemispheres of the daughter cells following cell division. After several generations of cell division, these surface proteins will eventually cover the entire cell surface. To understand how these proteins travel from the bacterial cytoplasm to the cell surface, we describe a series of immunofluorescence microscopy protocols designed to detect the stepwise …
Dcaf14 Promotes Stalled Fork Stability To Maintain Genome Integrity, Arik Townsend, Gabriella Lora, Justin Engel, Neysha Tirado-Class, Huzefa Dungrawala
Dcaf14 Promotes Stalled Fork Stability To Maintain Genome Integrity, Arik Townsend, Gabriella Lora, Justin Engel, Neysha Tirado-Class, Huzefa Dungrawala
Molecular Biosciences Faculty Publications
No abstract provided.
Posttranslational Modification And Protein Disorder Regulate Protein-Protein Interactions And Dna Binding Specificity Of P53, Robin Levy
USF Tampa Graduate Theses and Dissertations
p53 is an intrinsically disordered transcription factor that suppresses tumor development by arresting the cell cycle and promoting DNA repair. p53 deletions or mutations can lead to cancer due to the inability of cells to respond to stress. The protein levels and post-translational modification state of p53 changes in response to cellular stress like DNA damage. Previous studies have shown that p53 can undergo coupled folding and binding with the E3 ubiquitin ligase, Mdm2, and the histone deacetylase, p300. In normal cells, p53 is kept at a low level by Mdm2, which marks it with ubiquitin, targeting p53 for proteasome …
New Mechanisms That Control Fact Histone Chaperone And Transcription-Mediated Genome Stability, Angelo Vincenzo De Vivo Diaz
New Mechanisms That Control Fact Histone Chaperone And Transcription-Mediated Genome Stability, Angelo Vincenzo De Vivo Diaz
USF Tampa Graduate Theses and Dissertations
The Role of deubiquitinating enzymes (DUBs) in transcription, replication and genome integrity is not one that has been extensively researched. OTU DUBs are a particular class of enzyme with very little known about them.OTUD5 is a cysteine protease in the OTU family responsible to processing lysine 48 and lysine 63 ubiquitin chains. Recently, it has been implicated in to play a role in transcription through its binding partner UBR5. OTUD5 has also been shown to interact with proteins such as PDCD5 and p53, potentially have great importance in cell fate. In this study, I describe new discovered functions for OTUD5 …
New Mechanisms That Regulate Dna Double-Strand Break-Induced Gene Silencing And Genome Integrity, Dante Francis Deascanis
New Mechanisms That Regulate Dna Double-Strand Break-Induced Gene Silencing And Genome Integrity, Dante Francis Deascanis
USF Tampa Graduate Theses and Dissertations
Proliferating cells are constantly threatened by genotoxic stressors that can potentially lead to genomic instability. Breaks in the DNA, namely double-strand breaks, are detrimental sources of damage that must be repaired to maintain genomic integrity and prevent potential tumorigenesis. Here we discuss a gene silencing mechanism flanking damaged chromatin. Gene silencing and transcriptional repression at damaged DNA are necessary to prevent potential genomic aberrations from occurring through conflicts with the DNA repair machinery. BMI1, a core polycomb protein in the polycomb repressive complex 1 (PRC1) has been known to play a role in gene silencing at damaged chromatin. However, the …
Role Of Ceramide-1 Phosphate In Regulation Of Sphingolipid And Eicosanoid Metabolism In Lung Epithelial Cells, Brittany A. Dudley
Role Of Ceramide-1 Phosphate In Regulation Of Sphingolipid And Eicosanoid Metabolism In Lung Epithelial Cells, Brittany A. Dudley
USF Tampa Graduate Theses and Dissertations
Ceramide 1-Phosphate (C1P) is a sphingolipid metabolite which plays a large role in inflammation, cell survival and proliferation1. C1P is known to have both pro- and anti-apoptotic roles in lung cancer cells, governed by ceramide kinase (CERK), upstream of precursor ceramide (Cer)2. Previous work reveals C1P serves as the liaison between sphingolipid and eicosanoid synthesis, by decreasing the dissociation rate of group IVA cytosolic PLA2 (cPLA2α) from the Golgi membrane, C1P directly activates this phospholipase for downstream eicosanoid synthesis and subsequent inflammatory response3. CERK has been discovered to modulate eicosanoid synthesis, …
Novel Long Non-Coding Rna Cdlinc Promotes Nsclc Progression, Christina J. Moss
Novel Long Non-Coding Rna Cdlinc Promotes Nsclc Progression, Christina J. Moss
USF Tampa Graduate Theses and Dissertations
Non-small cell lung cancer (NSCLC) is the leading cause of cancer death worldwide with a low 5-year survival rate of only around 21%. This low 5-year survival rate is due to two main reasons. First, NSCLC is often diagnosed at the later stages when it has already metastasized. Second, NSCLC is an incredibly diverse, heterogenous disease making it very hard to target the true molecular oncogenic drivers. New targets for personalized therapeutics are needed based on the expression status of each individual lung cancer tumor.
One way of looking for these new therapeutics is to begin by identifying the oncogenotype …
A Health Evaluation Of Gulf Of Mexico Golden Tilefish (Lopholatilus Chamaeleonticeps) And Red Snapper (Lutjanus Campechanus) Following The Deepwater Horizon Oil Spill, Kristina Leigh Deak
A Health Evaluation Of Gulf Of Mexico Golden Tilefish (Lopholatilus Chamaeleonticeps) And Red Snapper (Lutjanus Campechanus) Following The Deepwater Horizon Oil Spill, Kristina Leigh Deak
USF Tampa Graduate Theses and Dissertations
A lack of baseline heath indices for offshore Gulf of Mexico (GoM) teleosts complicated impact assessments of the Deepwater Horizon (DWH) oil spill. While measurement of contaminant levels in fish after a pollution event can document exposure, such data fail to provide meaningful information about how this contact affects an animal's physiology. Controlled exposure studies have highlighted the utility of biomarkers that may indicate deleterious, long-lasting effects of pollutant exposure on various life stages of fish, however, their extrapolation to wild-caught, non-model species is challenging. In an increasingly chemically-saturated environment, it can also be difficult to separate the influence of …
Genome Maintenance Roles Of Polycomb Transcriptional Repressors Bmi1 And Rnf2, Anthony Richard Sanchez Iv
Genome Maintenance Roles Of Polycomb Transcriptional Repressors Bmi1 And Rnf2, Anthony Richard Sanchez Iv
USF Tampa Graduate Theses and Dissertations
The coordination of transcription, replication, and DNA damage response (DDR) is vital for maintaining normal cellular homeostasis. All of these processes take place on the chromatin and thus, the temporal and spatial separation of the factors responsible are necessary for each to be correctly completed. Here we detail several novel processes contributing to this network.
BMI1 is a component of the Polycomb Repressive Complex 1 (PRC1) which plays a key role in maintaining epigenetic silencing programs during development. Recently, BMI1 and other members of PRC1 like RNF2 have been implicated gene silencing during the DDR; however, the mechanism through which …
Mechanistic And Translational Studies On Skeletal Malignancies, Jeremy Mcguire
Mechanistic And Translational Studies On Skeletal Malignancies, Jeremy Mcguire
USF Tampa Graduate Theses and Dissertations
New treatment strategies are desperately needed for treating skeletal malignancy. Skeletal malignancies can be either primary cancer that originated in the bone, such as osteosarcoma, or metastatic cancer that spread from another organ to the skeleton, as in the case of breast or prostate cancer. In this thesis, I will detail two projects that focus on the discovery of new treatment strategies for both primary skeletal malignancy and metastatic skeletal malignancy.
The first project focuses on the primary skeletal malignancy, osteosarcoma, a rare cancer that is commonly diagnosed in children and young adults and metastasizes to the lungs. The survival …
Surface Runoff Alters Cave Microbial Community Structure And Function, Madison Davis, Maria A. Messina, Giuseppe Nicolosi, Salvatore Petralia, Melvin D. Baker, Christiana K. S. Mayne, Chelsea M. Dinon, Christina J. Moss, Bogdan P. Onac, James R. Garey
Surface Runoff Alters Cave Microbial Community Structure And Function, Madison Davis, Maria A. Messina, Giuseppe Nicolosi, Salvatore Petralia, Melvin D. Baker, Christiana K. S. Mayne, Chelsea M. Dinon, Christina J. Moss, Bogdan P. Onac, James R. Garey
Molecular Biosciences Faculty Publications
Caves formed by sulfuric acid dissolution have been identified worldwide. These caves can host diverse microbial communities that are responsible for speleogenesis and speleothem formation. It is not well understood how microbial communities change in response to surface water entering caves. Illumina 16S rRNA sequencing and bioinformatic tools were used to determine the impact of surface water on the microbial community diversity and function within a spring pool found deep in the Monte Conca Cave system in Sicily, Italy. Sulfur oxidizers comprised more than 90% of the microbial community during the dry season and were replaced by potential anthropogenic contaminants …
A Novel Intramolecular Interaction In P53, Fan He
A Novel Intramolecular Interaction In P53, Fan He
USF Tampa Graduate Theses and Dissertations
The p53 tumor suppressor is a sequence-specific DNA binding protein that activates gene transcription to regulate cell survival and proliferation. The activation process involves post-translational modifications that suppress p53 degradation by MDM2 and increase p53 DNA binding affinity. p53 is mutated in ~50% of human tumors, with higher frequency in specific tumor types and after relapse. Mutated p53 loses transcriptional activity and gains new functions that drive tumor progression. Both N-terminus (NT) and C-terminus (CT) of p53 contain intrinsically disordered regions. The p53 CT has well-documented effects in regulating DNA binding. CT truncated p53 mutants showed defective DNA binding and …
To Mid-Cell And Beyond: Characterizing The Roles Of Gpsb And Ypsa In Cell Division Regulation In Gram-Positive Bacteria, Robert S. Brzozowski
To Mid-Cell And Beyond: Characterizing The Roles Of Gpsb And Ypsa In Cell Division Regulation In Gram-Positive Bacteria, Robert S. Brzozowski
USF Tampa Graduate Theses and Dissertations
The bacterial cell division protein FtsZ is a tubulin homolog that forms a ring-like structure at the site of cell division in most bacterial species. There it acts as a scaffold, aiding in the recruitment of other divisome proteins to the site of cell division. Furthermore, studies focusing on the role of FtsZ treadmilling and septal peptidoglycan synthesis implicates that FtsZ plays a direct role in the ultimate closure of the division septum. Thus, many studies in the field of bacterial cell division have focused on FtsZ in terms of its spatial and temporal regulation as well as its ability …
Draft Genome Sequence Of Verrucosispora Sp. Strain Cwr15, Isolated From A Gulf Of Mexico Sponge, Sarah J. Kennedy, Eleonora Cella, Mohammad Jubair, Taj Azarian, Bill J. Baker, Lindsey N. Shaw
Draft Genome Sequence Of Verrucosispora Sp. Strain Cwr15, Isolated From A Gulf Of Mexico Sponge, Sarah J. Kennedy, Eleonora Cella, Mohammad Jubair, Taj Azarian, Bill J. Baker, Lindsey N. Shaw
Molecular Biosciences Faculty Publications
Here, we present the draft genome sequence of Verrucosispora sp. strain CWR15, a bacterial symbiont of a Gulf of Mexico sponge. The genome consists of 35 contigs encoding 5,840 genes. The genome is the basis for future study and presents an underexplored taxonomy and biosynthetic potential.
Mir146a-Mediated Targeting Of Fancm During Inflammation Compromises Genome Integrity, Devakumar Sundaravinayagam, Hye Rim Kim, Tingting Wu, Hyun Hee Kim, Semo Jun, Jeong-Heon Cha, Younghoon Kee, Ho Jin You, Jung-Hee Lee
Mir146a-Mediated Targeting Of Fancm During Inflammation Compromises Genome Integrity, Devakumar Sundaravinayagam, Hye Rim Kim, Tingting Wu, Hyun Hee Kim, Semo Jun, Jeong-Heon Cha, Younghoon Kee, Ho Jin You, Jung-Hee Lee
Molecular Biosciences Faculty Publications
Inflammation is a potent inducer of tumorigenesis. Increased DNA damage or loss of genome integrity is thought to be one of the mechanisms linking inflammation and cancer development. It has been suggested that NF-κB-induced microRNA-146 (miR146a) may be a mediator of the inflammatory response. Based on our initial observation that miR146a overexpression strongly increases DNA damage, we investigated its potential role as a modulator of DNA repair. Here, we demonstrate that FANCM, a component in the Fanconi Anemia pathway, is a novel target of miR146a. miR146a suppressed FANCM expression by directly binding to the 3’ untranslated region of the gene. …
Cornus Officinalis Promotes Igfbp2 And Autophagy In Human 1.1b4 Pancreatic Cell Line As Revealed By Employing A Global Proteomic Approach Via Mass Spectrometry, Arielle Elizabeth Tawfik, Jennifer Guergues, Stanley M. Stevens Jr, Brant Roger Burkhardt
Cornus Officinalis Promotes Igfbp2 And Autophagy In Human 1.1b4 Pancreatic Cell Line As Revealed By Employing A Global Proteomic Approach Via Mass Spectrometry, Arielle Elizabeth Tawfik, Jennifer Guergues, Stanley M. Stevens Jr, Brant Roger Burkhardt
Molecular Biosciences Faculty Publications
Type 1 diabetes (T1D) results in the loss of pancreatic beta cells and subsequent loss of insulin production. Exogenous insulin is the only effective treatment, but there is still no cure or interventional therapy available to inhibit progression of T1D. Successful T1D interventional therapy must protect pancreatic beta cells from autoimmunity while enhancing beta cell survival and function. Our data suggests Cornus officinalis (CO) may be a candidate for interventional therapy to protect pancreatic beta cells from autoimmune attack and increase their function. CO has been used in traditional Chinese medicine (TCM) for over 2,000 years and has shown characteristics …
The Role Of Secreted Proteases In Regulating Disease Progression In Staphylococcus Aureus, Brittney D. Gimza
The Role Of Secreted Proteases In Regulating Disease Progression In Staphylococcus Aureus, Brittney D. Gimza
USF Tampa Graduate Theses and Dissertations
Staphylococcus aureus is a highly successful pathogen capable of producing a wealth of virulence factors in the human host. Of note, ten extracellular proteases are produced alongside these virulence factors and play a multifaceted role during infection. They not only cleave host proteins to promote bacterial invasion, immune evasion and survival, but also control disease progression by modulating the stability of self-derived pathogenic determinants. The importance of the secreted proteases modulating virulence factor stability is evidenced by our groups previous finding that a protease-null strain has a substantially increased infectious capacity in a murine model of sepsis; resulting from the …
A Novel Cytokine Response Modulatory Function Of Mek Inhibitors Mediates Therapeutic Efficacy, Mengyu Xie
A Novel Cytokine Response Modulatory Function Of Mek Inhibitors Mediates Therapeutic Efficacy, Mengyu Xie
USF Tampa Graduate Theses and Dissertations
Despite the recent success of immune-checkpoint blockade therapy for late-stage non-small cell lung cancer (NSCLC), lung cancer is still the leading cause of cancer deaths worldwide. One of the most important characteristics of lung cancer in therapeutic decision-making are the targetable molecules, including EGFR, ALK, BRAF, and MEK. The excitement of immune-checkpoint blockade therapy has triggered concerted efforts that focus on exploring combinations of immune checkpoint therapy with other approved therapeutic regimens aiming at further augmenting positive outcomes and survival. However, the lack of understanding of underlying mechanisms and evidence-based clinical testing has hindered the progress to a cure. Hence, …
Modeling Of Interaction Of Ions With Ether- And Ester-Linked Phospholipids, Matthew W. Saunders
Modeling Of Interaction Of Ions With Ether- And Ester-Linked Phospholipids, Matthew W. Saunders
USF Tampa Graduate Theses and Dissertations
Phospholipids are present in all parts of cells and are used in many signalling and struc- tural roles. As structural molecules they act as the main component of cellular membranes. Bilayer properties are heavily influenced by the structure of their component polar lipids, and different lipids are found in different organisms. A distinguishing feature of Archaeal plasma membranes is that their phospholipids contain ether-links, as opposed to bacterial and eukaryotic plasma membranes where phospholipids primarily contain ester-links. In our work we examine the effects of salt on bilayer structure in the case of both ester- and ether-linked lipid bilayers. We …
Design And Delivery Of Synthetic Mrna By A Peptide Nanoparticle, John H. Lockhart
Design And Delivery Of Synthetic Mrna By A Peptide Nanoparticle, John H. Lockhart
USF Tampa Graduate Theses and Dissertations
The field of synthetic mRNA therapeutics is a rapidly expanding arm of gene therapies. The use of mRNA provides multiple benefits over viral or DNA vectors. synthetic mRNA vectors are immediately translated into protein after entering the cytoplasm of cells in contrast to DNA vectors that must first be transcribed to mRNA in the nucleus. This allows synthetic mRNA to produce a therapeutic protein in any cell type, including non-dividing cells. In addition, the non-replicative nature of mRNA means that insertional mutagenesis or generation of escape mutants is not a concern. However, the stimulation of innate immune responses by unmodified …
Intrinsically Disorder Proteins And Liquid-Liquid Phase Transitions In Neurodegenerative Diseases, April Lynn Darling
Intrinsically Disorder Proteins And Liquid-Liquid Phase Transitions In Neurodegenerative Diseases, April Lynn Darling
USF Tampa Graduate Theses and Dissertations
Neurodegenerative diseases have a negative impact on health and economics, effecting more than 20 million people in the United States and costing around $800 billion in 2018. Additionally, most neurodegenerative diseases such as Alzheimer’s Disease (AD), Amyotrophic Lateral Sclerosis (ALS), Frontotemporal Dementia (FTD), and several others are fatal and have no cure or effective treatment. Many of these diseases have a common theme of protein aggregates being present in disease tissue. These aggregates are thought to be toxic to the cell and prevention of pathological aggregation and elimination of these cellular aggregates may serve as a potential therapeutic approach to …
Novel Strategies On Characterizing Biologically Specific Protein-Protein Interaction Networks, Bi Zhao
Novel Strategies On Characterizing Biologically Specific Protein-Protein Interaction Networks, Bi Zhao
USF Tampa Graduate Theses and Dissertations
The function, behavior, and environmental response of biological systems are essentially determined by the complex interaction and regulation of biomolecules inside the systems. Therefore, it is critical to characterize the inter-molecular interaction and regulation of biomolecules inside these systems. In this direction, many experimental techniques have been developed and these techniques have been used in many different model systems under various conditions. Consequently, a massive amount of data has been generated. These data cover multiple aspects of molecular interaction and regulation, such as protein-protein interaction, microRNA-RNA interaction, gene expression profiles, etc. While carrying rich information, these data may also contain …
Targeting Pten For Therapy In Cancer And Ptenopathies, Emily Palumbo
Targeting Pten For Therapy In Cancer And Ptenopathies, Emily Palumbo
USF Tampa Graduate Theses and Dissertations
PTEN, a dual protein and lipid phosphatase, regulates a myriad of cellular functions including PI3K pathway signaling, cell migration, proliferation, invasion and apoptosis. PTEN mutations often lead to multiple malignancies, including prostate, breast, endometrial, skin and brain cancers, associated with hyperactive PI3K signaling. PTEN mutations have also been associated with a variety of other diseases, classified as PTEN Hamartoma Tumor Syndromes (PHTS). In addition, compromised function or reduced expression of PTEN due to non-genomic mechanisms are associated with many types of hyperproliferative diseases, such as restenosis and neoplastic diseases, including melanoma, lung, breast, prostate and colon cancers. Although PI3K pathway …
Roux-En-Y Gastric Bypass Attenuates Obesity-Related Liver Injury, Drew Alan Rideout
Roux-En-Y Gastric Bypass Attenuates Obesity-Related Liver Injury, Drew Alan Rideout
USF Tampa Graduate Theses and Dissertations
Obesity is a growing epidemic in the United States with significant co-morbidities. Non-Alcoholic Fatty Liver Disease (NAFLD) is a prevalent manifestation of obesity that can lead to cirrhosis. Roux-en-Y gastric bypass (RYGB) results in substantial long-term weight loss and resolution of obesity-related metabolic diseases. There appears to be a weight-independent molecular mechanism for the improvement of diabetes mellitus and NAFLD after RYGB, which is poorly understood. Obesity is associated with chronic inflammation that accompanies the hepatic steatosis. Through unknown mechanisms, RYGB in humans increases serum levels of the fat-derived adipocytokine, adiponectin. Adiponectin (an anti-inflammatory cytokine) is known to have a …
Functional Characterization Of The Ovarian Tumor Domain Deubiquitinating Enzyme 6b, Jasmin M. D'Andrea
Functional Characterization Of The Ovarian Tumor Domain Deubiquitinating Enzyme 6b, Jasmin M. D'Andrea
USF Tampa Graduate Theses and Dissertations
The posttranslational modification ubiquitination is major regulatory mechanism used throughout cell signaling pathways such as cell cycle regulation and the DNA damage response. As such, the E3 ligases and their deubiquitinating enzyme counterparts, which conjugate and deconjugate ubiquitin to and from protein substrates respectively, must be tightly regulated to prevent aberrant cellular behaviors that could lead to diseases such as cancer.
Of the five families of deubiquitinating enzymes, the Ovarian Tumor Domain (OTU) family is fairly unique and under-studied; many of its family members hold a linkage specificity to certain ubiquitin chains and a number of them have been implicated …
Novel Insights Into The Multifaceted Roles Of Blm In The Maintenance Of Genome Stability, Vivek M. Shastri
Novel Insights Into The Multifaceted Roles Of Blm In The Maintenance Of Genome Stability, Vivek M. Shastri
USF Tampa Graduate Theses and Dissertations
Genomic instability is a hallmark of disorders in which DNA replication and repair genes are dysfunctional. The tumor suppressor RECQ helicase gene BLM encodes the 3’-5’ DNA Bloom syndrome helicase BLM, which plays important roles during DNA replication, recombination and repair to maintain genome stability. Mutations within BLM cause Bloom syndrome, an autosomal recessive disorder characterized by growth defects, immunodeficiency, >10-fold higher sister chromatid exchange compared to normal cells, and an increased predisposition to a wide range of cancers from an early age. Single nucleotide polymorphisms or SNPs in BLM have been reported to be associated with susceptibility to a …
Advanced Proteomic And Epigenetic Characterization Of Ethanol-Induced Microglial Activation, Jennifer Guergues Guergues
Advanced Proteomic And Epigenetic Characterization Of Ethanol-Induced Microglial Activation, Jennifer Guergues Guergues
USF Tampa Graduate Theses and Dissertations
Microglia, the resident immune cells of the brain, can exhibit a broad range of activation phenotypes and have been implicated in several diseases and disorders of the central nervous system. Here, we described a method optimized for sensitive and rapid quantitative proteomic analysis of microglia that involves suspension trapping (S-Trap) for efficient and reproducible protein extraction from a microglial cell count expected from an individual mouse brain (~300K) while also simultaneously providing the first comprehensive proteomic characterization of a novel adult-derived mouse microglial cell line. This enhanced method was used throughout all subsequent works and was especially necessary when we …