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Staphylococcus Aureus Biofilms Interfere With Macrophage Antimicrobial Responses Through Differential Gene Regulation, Toxin Production, And Purine Metabolism, Tyler D. Scherr Dec 2016

Staphylococcus Aureus Biofilms Interfere With Macrophage Antimicrobial Responses Through Differential Gene Regulation, Toxin Production, And Purine Metabolism, Tyler D. Scherr

Theses & Dissertations

Staphylococcus aureus (S. aureus) is an opportunistic pathogen that is a leading cause of both nosocomial and community-associated infections. Armed with a myriad of virulence factors and the propensity to form a biofilm on native tissues and implanted medical devices alike, S. aureus infections represent a very real public health threat, the treatment of which results in an excessive economic burden. S. aureus biofilm infections are notoriously recalcitrant to antibiotic therapy and adept at evading and neutralizing the host immune antimicrobial response. Previous studies from our laboratory have shown that S. aureus biofilms are able to cause persistent …


Defining The Role Of Phosphorylation And Dephosphorylation In The Regulation Of Gap Junction Proteins, Hanjun Li Dec 2016

Defining The Role Of Phosphorylation And Dephosphorylation In The Regulation Of Gap Junction Proteins, Hanjun Li

Theses & Dissertations

Gap junctions are intercellular channels that permit the free passage of ions, small metabolites, and signaling molecules between neighboring cells. In the diseased human heart, altered ventricular gap junction organization and connexin expression (i.e., remodeling) are key contributors to rhythm disturbances and contractile dysfunction. Connexin43 (Cx43) is the dominant gap junction protein isoform in the ventricle which is under tight regulation by serine/tyrosine phosphorylation. Phosphorylation and dephosphorylation regulate many aspects of Cx43 function including trafficking, assembly and disassembly, electrical and metabolic coupling at the plaque, as well as to modulate the interaction with other proteins.

Serine phosphorylation has long been …


Chimerscope: A Novel Alignment-Free Algorithm For Fusion Gene Prediction Using Paired-End Short Reads, You Li Dec 2016

Chimerscope: A Novel Alignment-Free Algorithm For Fusion Gene Prediction Using Paired-End Short Reads, You Li

Theses & Dissertations

Fusion genes are those that result from the fusion of two or more genes, and they are typically generated due to the perturbations in the genome structure in cancer cells. In turn, fusion genes can contribute to tumor formation and progression by promoting the expression of an oncogene, deregulation of a tumor-suppressor, or producing much more active abnormal proteins. More importantly, oncogenic fusion genes are specifically expressed in the tumor cells, which provide enormous diagnostic and therapeutic advantages for cancer treatment. With the development of next-generation sequencing (NGS) technology, RNA-Seq becomes increasingly popular for transcriptomic study because of its high …


Dna Polymerase Zeta-Dependent Mutagenesis: Molecular Specificity, Extent Of Error-Prone Synthesis, And The Role Of Dntp Pools, Olga V. Kochenova Dec 2016

Dna Polymerase Zeta-Dependent Mutagenesis: Molecular Specificity, Extent Of Error-Prone Synthesis, And The Role Of Dntp Pools, Olga V. Kochenova

Theses & Dissertations

Despite multiple DNA repair pathways, DNA lesions can escape repair and compromise normal chromosomal replication, leading to genome instability. Cells utilize specialized low-fidelity Translesion Synthesis (TLS) DNA polymerases to bypass lesions and rescue arrested replication forks. TLS is a highly conserved two-step process that involves insertion of a nucleotide opposite a lesion and extension of the resulting aberrant primer terminus. The first step can be performed by both replicative and TLS DNA polymerases and, because of non-instructive DNA lesions, often results in a nucleotide misincorporation. The second step is almost exclusively catalyzed by DNA polymerase ζ …


Regulation Of Alteration/Deficiency In Activation 3 (Ada3) By Acetylation And Its Role In Cell Cycle Regulation And Oncogenesis, Shashank Srivastava Dec 2016

Regulation Of Alteration/Deficiency In Activation 3 (Ada3) By Acetylation And Its Role In Cell Cycle Regulation And Oncogenesis, Shashank Srivastava

Theses & Dissertations

The ADA3 (Alteration/Deficiency in Activation 3) protein is a transcriptional adaptor protein that was initially discovered as a component of several HAT (Histone Acetyltransferase) complexes, the enzyme complex responsible for histone acetylation, which is a prerequisite for transcription. Earlier the studies from Dr. Band’s laboratory and that of others’ have deciphered a crucial role of ADA3 in cell cycle regulation (both through G1/S and G2/M phase transitions) and in maintaining the genomic stability.

While our laboratory investigated the mechanism behind the role of ADA3 in G1/S transition, the same remained unknown for G2 …


Amino Acid Catabolism In Staphylococcus Aureus, Cortney Halsey Dec 2016

Amino Acid Catabolism In Staphylococcus Aureus, Cortney Halsey

Theses & Dissertations

Staphylococcus aureus must rapidly adapt to a variety of carbon and nitrogen sources during invasion of a host. Within a staphylococcal abscess, preferred carbon sources such as glucose are limiting, suggesting S. aureus survives through the catabolism of secondary carbon sources. S. aureus encodes pathways to catabolize multiple amino acids including those that generate pyruvate, 2-oxoglutarate, and oxaloacetate. To assess amino acid catabolism, S. aureus JE2 and mutants were grown in complete defined medium containing 18 amino acids but lacking glucose (CDM). A mutation in glutamate dehydrogenase (gudB), which generates 2-oxoglutarate from glutamate, abrogated growth in CDM suggesting …


Global Gene Expression Profiling Of Healthy Human Brain And Its Application In Studying Neurological Disorders, Simarjeet K. Negi Dec 2016

Global Gene Expression Profiling Of Healthy Human Brain And Its Application In Studying Neurological Disorders, Simarjeet K. Negi

Theses & Dissertations

The human brain is the most complex structure known to mankind and one of the greatest challenges in modern biology is to understand how it is built and organized. The power of the brain arises from its variety of cells and structures, and ultimately where and when different genes are switched on and off throughout the brain tissue. In other words, brain function depends on the precise regulation of gene expression in its sub-anatomical structures. But, our understanding of the complexity and dynamics of the transcriptome of the human brain is still incomplete. To fill in the need, we designed …


The Functions Of The Cid And Lrg Operons In S. Aureus Programmed Cell Death, Xinyan Zhang Dec 2016

The Functions Of The Cid And Lrg Operons In S. Aureus Programmed Cell Death, Xinyan Zhang

Theses & Dissertations

Staphylococcus aureus cid/lrg operons regulate the formation of S.aureus biofilm formation and programmed cell death based on previous in vivo work done in Dr. Bayles's lab. cid operon, which encodes CidA/CidB/CidC proteins, has been shown to be an effector in leading to the lysis and death of the S.aureus; While lrg operon, encoding LrgA and LrgB proteins, is an inhibitor of the lysis and death. Recent studies suggest that CidA behaves like holin proteins from bacterial phage, by increasing the murein hydrolysis activity under aerobic culturing conditions. LrgA, together with LrgB, appears to inhibit this function. …


Motor Control In Individuals With Multiple Sclerosis, David Arpin Dec 2016

Motor Control In Individuals With Multiple Sclerosis, David Arpin

Theses & Dissertations

This dissertation explored motor control in individuals with multiple sclerosis (MS) by quantifying the behavioral and neurophysiological deficits present in these individuals. We behaviorally quantified the precision of the ankle plantarflexor musculature of individuals with MS. Our results indicated that the individuals with MS had a greater amount of variability in the precision of the isometric ankle torques, and that this greater variability was related to decreased walking performance. To further explore whether these motor control deficits were due to aberrant cortical activity associated with planning motor actions, we used magnetoencephalography to assess the motor planning and execution stages of …


Role Of Cbl-Family Ubiquitin Ligases As Critical Negative Regulators Of T Cell Activation And Functions, Benjamin Goetz Dec 2016

Role Of Cbl-Family Ubiquitin Ligases As Critical Negative Regulators Of T Cell Activation And Functions, Benjamin Goetz

Theses & Dissertations

Adaptive T cell immunity is essential for defense against foreign antigens and immune surveillance against cancer. Tight regulation of T cell activation is required to avoid autoimmunity to self-antigens or protracted inflammation after foreign antigens are cleared. Incomplete or inappropriate stimulation leads to an active shutdown of T cell activation called anergy. The Casitas B-lineage Lymphoma (CBL)-family of ubiquitin ligases (E3s) are essential negative regulators of T cell activation that impinge on thymic selection as well as anergy induction programs. Single gene studies show that CBL is critical during T cell development while CBL-B plays an essential role in peripheral …


Target Validation And Pharmacological Characterization Of Novel Nmdar Modulators, Kiran Sapkota Dec 2016

Target Validation And Pharmacological Characterization Of Novel Nmdar Modulators, Kiran Sapkota

Theses & Dissertations

The N-methyl-D aspartate receptors (NMDARs) are ligand-gated ion channels, which play important roles in learning and memory. Excessive activity of NMDARs is implicated in damage due to stroke and neurodegenerative diseases, whereas hypoactivity of NMDARs contributes to schizophrenia. The initial goal of my dissertation is to evaluate the potential role of the GluN2D-containing NMDARs in neuropathological, behavioral and cognitive alterations associated with schizophrenia and characterize the pharmacology and mechanisms of action of NMDAR modulators which could potentially be used to modulate these receptors in schizophrenia.

A subanesthetic dose of the NMDAR antagonist ketamine elicits symptoms of schizophrenia. This property led …


Mitogen And Morphogen Signaling Dysregulation: Pathophysiological Influence In Pancreatic Cancer And Alzheimer’S Disease, Eric Cruz Dec 2016

Mitogen And Morphogen Signaling Dysregulation: Pathophysiological Influence In Pancreatic Cancer And Alzheimer’S Disease, Eric Cruz

Theses & Dissertations

Although the etiology of a particular disease will vary, there are genetic and epigenetic bottlenecks that frequently converge resulting in dysregulation of mitogenic and morphogenetic signaling. This propensity is acutely experienced in malignancy and neurodegenerative disease.

Here, we have first investigated the role of dysregulated signaling in the context of pancreatic cancer (PC). Morphogenetic signaling has been regarded as a pleiotropic pathway with the potential to promote and inhibit metastatic features. Our investigation of bone morphogenetic protein 2 (BMP-2), an archetypical member of the BMP superfamily, has revealed the presence of extracellular, intracellular, and long non-coding RNA products. Our findings …


Increased Mitochondrial Superoxide In The Brain, But Not Periphery, Sensitizes Mice To Angiotensin Ii-Mediated Hypertension., Adam J. Case, Jun Tian, Matthew C. Zimmerman Nov 2016

Increased Mitochondrial Superoxide In The Brain, But Not Periphery, Sensitizes Mice To Angiotensin Ii-Mediated Hypertension., Adam J. Case, Jun Tian, Matthew C. Zimmerman

Journal Articles: Cellular & Integrative Physiology

Angiotensin II (AngII) elicits the production of superoxide (O2(•-)) from mitochondria in numerous cell types within peripheral organs and in the brain suggesting a role for mitochondrial-produced O2(•-) in the pathogenesis of hypertension. However, it remains unclear if mitochondrial O2(•-) is causal in the development of AngII-induced hypertension, or if mitochondrial O2(•-) in the absence of elevated AngII is sufficient to increase blood pressure. Further, the tissue specific (i.e. central versus peripheral) redox regulation of AngII hypertension remains elusive. Herein, we hypothesized that increased mitochondrial O2(•-) in the absence of pro-hypertensive stimuli, such as AngII, elevates baseline systemic mean arterial …


Mitochondrial Superoxide Signaling Contributes To Norepinephrine-Mediated T-Lymphocyte Cytokine Profiles., Adam J. Case, Colton T. Roessner, Jun Tian, Matthew C. Zimmerman Oct 2016

Mitochondrial Superoxide Signaling Contributes To Norepinephrine-Mediated T-Lymphocyte Cytokine Profiles., Adam J. Case, Colton T. Roessner, Jun Tian, Matthew C. Zimmerman

Journal Articles: Cellular & Integrative Physiology

Norepinephrine (NE) produces multifaceted regulatory patterns in T-lymphocytes. Recently, we have shown that NE utilizes redox signaling as evidenced by increased superoxide (O2●-) causally linked to the observed changes in these cells; however, the source of this reactive oxygen species (ROS) remains elusive. Herein, we hypothesized that the source of increased O2●- in NE-stimulated T-lymphocytes is due to disruption of mitochondrial bioenergetics. To address this hypothesis, we utilized purified mouse splenic CD4+ and CD8+ T-lymphocytes stimulated with NE and assessed O2●- levels, mitochondrial metabolism, cellular proliferation, and cytokine profiles. We demonstrate that the increase in O2●- levels in response to …


Study Of The Structure-Related Functions Of Eukaryotic Primase-Pol Alpha Complex During Replication, Yinbo Zhang Aug 2016

Study Of The Structure-Related Functions Of Eukaryotic Primase-Pol Alpha Complex During Replication, Yinbo Zhang

Theses & Dissertations

During eukaryotic replication primase•polymerase α (prim•polα) complex synthesizes de novo chimeric primers composed of about 10 nt RNA and 20 nt DNA, which are subsequently extended by main replicative DNA polymerases (pol), polε and polδ, on leading and lagging strands, respectively. It is estimated that prim•polα initiates more than 10 millions of lagging strand Okazaki fragments in human genome in each replication cycle. A concerted action of the two active sites, RNA pol and DNA pol, is required to ensure the efficient priming. A remarkable feature of the prim•polα complex is the “programmed” synthesis of the chimeric primer, where the …


Mutations Affecting Epigenetic Regulators And Their Role In Peripheral T-Cell Lymphomas, Chao Wang Aug 2016

Mutations Affecting Epigenetic Regulators And Their Role In Peripheral T-Cell Lymphomas, Chao Wang

Theses & Dissertations

Peripheral T-cell lymphoma (PTCL) is a heterogeneous group of generally aggressive lymphoid malignancies, accounting for 10-15% of all non-Hodgkin lymphomas. Angioimmunoblastic T-cell lymphoma (AITL) represents approximately 20% of all PTCLs and is recognized as a distinct entity. Accurate diagnosis and classification of PTCL remain challenging. With the exception of ALK+ ALCL, patients with PTCL generally have a poor prognosis with standard chemotherapy and even with the availability of many novel drugs, including HDAC inhibitor (romidepsin and belinostat), gemcitabine, and bortezomib. Therefore, deciphering the pathogenesis of this group of diseases is needed to identify novel treatable targets for better therapeutic intervention. …


The Mechanism Of Tubular Recycling Endosome Biogenesis, Shuwei Xie Aug 2016

The Mechanism Of Tubular Recycling Endosome Biogenesis, Shuwei Xie

Theses & Dissertations

Endocytic trafficking is a critical process for cellular homeostasis, and multiple ailments that include cardiovascular disease and cancer are related to the dysregulation of endocytic transport. As vesicles and target membranes are key to endocytic transport, lipids are essential for the regulation of endocytic trafficking pathways. We have shown that the tubular recycling endosomes (TRE) are essential for the regulation of endocytic recycling pathways. However, the mechanisms by which TRE are biosynthesized and carry out their functions remain unsolved. Studies from our lab have shown that phosphatidic acid (PA) recruits Molecule Interacting with Casl-Like protein 1 (MICAL-L1) as well as …


Molecular Mechanisms Involved In Neurotoxicity Mediated By Hiv Proteins And Drug Abuse, Yu Cai Aug 2016

Molecular Mechanisms Involved In Neurotoxicity Mediated By Hiv Proteins And Drug Abuse, Yu Cai

Theses & Dissertations

While the advancement of highly active antiretroviral therapy (HAART) has transformed the course of HIV/AIDS from a death sentence to a manageable chronic condition, the prevalence of a constellation of neurological disorders collectively termed as HIV-associated neurocognitive disorders (HAND) continues to persist in these patients. HAND is characterized by cognitive dysfunction, depression, impaired memory and/or deficits in motor skills. The underlying factors leading to HAND have been the subject of extensive research and are thought to be associated with HIV infection in the CNS combined with robust immune activation of resident cells of the CNS. In addition, there is a …


Exploration Into The Functional Impact Of Muc1 On The Formation And Regulation Of Transcriptional Complexes Containing Ap-1 And P53, Ryan L. Hanson Aug 2016

Exploration Into The Functional Impact Of Muc1 On The Formation And Regulation Of Transcriptional Complexes Containing Ap-1 And P53, Ryan L. Hanson

Theses & Dissertations

The transmembrane glycoprotein MUC1 is aberrantly expressed in the majority of pancreatic ductal adenocarcinoma cases and promotes tumor progression by engaging in morphogenetic signaling through its cytoplasmic tail. Furthermore, MUC1 can translocate to the nucleus and function as a transcriptional co-regulator in conjunction with transcriptional complexes containing activator protein-1 (AP-1) and p53. The specificity of these interactions are thought to rely on specific patterning of post-translational modifications within the cytoplasmic tail of MUC1.

Within this dissertation, we examined how MUC1 influences the formation and activity of these transcription factors and the resulting impact on tumor progression and metastasis. In our …


Voltage-Gated K+ Channels And Hiv-1-Induced Neural Injury: Implications For Pathogenesis Of Hiv-1-Associated Neurocognitive Disorders, Han Liu Aug 2016

Voltage-Gated K+ Channels And Hiv-1-Induced Neural Injury: Implications For Pathogenesis Of Hiv-1-Associated Neurocognitive Disorders, Han Liu

Theses & Dissertations

Human immunodeficiency virus-1 (HIV-1)-associated neurocognitive disorder (HAND) is a subcortical disease involving neuronal loss and myelin damage. Myelin is deposited by oligodendrocytes through a complex process including oligodendrocyte progenitor cell (OPC) proliferation and maturation. Oligodendrocytes/OPCs are susceptible to viral proteins such as Tat and that myelin damage is associated with oligodendrocyte number decrease. It has been shown that activation of voltage-gated K+ (KV) channels mediates apoptosis in various cell types. KV1.3 is the most predominant KV channel expressed in OPCs/oligodendrocytes and potentially involved in OPC developmental regulation. We studied the involvement of KV …


Genetic Landscape Of Pediatric Myelodysplastic Syndromes, Jennifer E. Grove Aug 2016

Genetic Landscape Of Pediatric Myelodysplastic Syndromes, Jennifer E. Grove

Theses & Dissertations

Myelodysplastic syndromes (MDS) are acquired heterogeneous hematopoietic clonal disorders primarily seen in the adult and elderly populations that presents a variety of cellular morphologies in cell lineages, varying prognoses, and differences in overall survival (OS) between individual patients. The occurrence of MDS in the pediatric and young adult population, or those between the ages of 0 and 29, is slowly on the rise. Pediatric and elderly cases exhibit diverse cytogenetic findings with differences in OS. The characterization of the genetic landscape of pediatric MDS is limited and most studies detailing genetic changes have been conducted in adult MDS cases. In …


Role Of Ddr1 In Pancreatic Cancer, Huocong Huang Aug 2016

Role Of Ddr1 In Pancreatic Cancer, Huocong Huang

Theses & Dissertations

Pancreatic ductal adenocarcinomas are highly malignant cancers, characterized by extensive invasion into surrounding tissues, metastasis to distant organs at a very early stage, and a limited response to therapy. One of the main features of pancreatic ductal adenocarcinomas is desmoplasia, which leads to extensive deposition of collagen I. We have demonstrated that collagen I can induce epithelial-mesenchymal transition (EMT) in pancreatic cancer cells. A hallmark of EMT is an increase in the expression of a mesenchymal cadherin, N-cadherin. Our previous studies have shown that up-regulation of N-cadherin can promote tumor cell invasion and that collagen I-induced EMT is through two …


Expression And Function Of Inflammation-Associated Micrornas In Traumatic Brain Injury, Emily Harrison May 2016

Expression And Function Of Inflammation-Associated Micrornas In Traumatic Brain Injury, Emily Harrison

Theses & Dissertations

MicroRNAs (miRNAs) are important regulators of gene expression. Many neurological diseases, including traumatic brain injury alter expression of miRNAs in the brain. However, the function of these molecules in the context of TBI is largely unknown. Here we report multiple potential roles for miRNAs in TBI, some of which extend beyond the traditional model of post-transcriptional regulation, highlighting that these RNA molecules may have broader implications for the neurobiology of disease. We found that miR-155 plays an essential role in interferon expression after CCI and that miR-155 contributes to TBI induced anxiety, potentially through regulation of interferons. Expression of miR-155 …


Role Of Cell Type And Genetic Alterations In Driving Breast Cancer Pathogenesis, Divya Bhagirath May 2016

Role Of Cell Type And Genetic Alterations In Driving Breast Cancer Pathogenesis, Divya Bhagirath

Theses & Dissertations

Breast cancer is the second most leading cause of death among women in the United States. Several environmental and genetic factors contribute to the pathogenesis of the disease. It is classified into different subtypes based on expression of certain markers as well as that of set of genes that define the disease progression and associated mortality. Identification of various subtypes namely: Luminal-like (Luminal-A, Luminal-B), ErbB2 over-expressing, Basal-like and Claudin low types, showed an association of survival outcomes with that of the corresponding gene expression signatures, thus paving a way for therapeutic intervention. It further emphasizes the importance of nature of …


Role Of Akt2 In Cell Survival, Establishment And/Or Maintenance Of Colorectal Cancer Metastasis, Ekta Agarwal May 2016

Role Of Akt2 In Cell Survival, Establishment And/Or Maintenance Of Colorectal Cancer Metastasis, Ekta Agarwal

Theses & Dissertations

There is extensive evidence for the role of aberrant cell survival signaling mechanisms in cancer progression and metastasis. Akt acts as a key signaling node that bridges oncogenic receptors to many essential pro-survival cellular functions, and is perhaps the most commonly activated signaling pathway in human cancer. Akt has three isoforms, Akt1, 2 and 3. Variable phenotypic differences are observed following the genetic inactivation and/or removal of the Akt isoforms, which suggests that the isoforms have distinct non-redundant functional characteristics despite sharing a high level of structural homology and similar mechanisms of activation.

The major goal of the work presented …


Regulation Of Cid-Mediated Cell Death In Staphylococcus Aureus, Ian H. Windham May 2016

Regulation Of Cid-Mediated Cell Death In Staphylococcus Aureus, Ian H. Windham

Theses & Dissertations

The death and lysis of a subpopulation of cells in Staphylococcus aureus biofilms is thought to benefit the surviving population by releasing extracellular DNA, a critical component of the biofilm extracellular matrix. Although the means by which S. aureus controls cell death and lysis is not completely understood, studies implicate the role of the cidABC, alsSD and lrgAB operons in this process. This dissertation has focused on the regulation of cidABC and alsSD expression, which is mediated, primarily, by the LysR-Type Transcriptional Regulator (LTTR) known as CidR. To better define the role of CidR in regulating cidABC and alsSD transcription …


The Role Of Oncogenic Kras In Initiation, Progression And Maintenance Of Pancreatic Cancer, Nirakar Rajbhandari May 2016

The Role Of Oncogenic Kras In Initiation, Progression And Maintenance Of Pancreatic Cancer, Nirakar Rajbhandari

Theses & Dissertations

Pancreatic cancer is a lethal disease that is almost invariably associated with a KRAS gene mutation. Due to a very high frequency of gain-of-function mutations within the KRAS gene, and its proven role in initiation of pancreatic cancer in animal models, mutant KRAS is considered a rational therapeutic target. To determine the potential role of oncogenic KRAS in pancreatic tumor maintenance in vivo, we generated a mouse model with a Doxycycline regulated expression of oncogenic KRAS (KRASG12D) in pancreas. Using this reversible model, we demonstrated that the expression of oncogenic KRAS in a Cdkn2a deficient background was …


Role Of Stemloop D In Terminally Deleted Coxsackievirus B3 Replication, Lee K. Jaramillo May 2016

Role Of Stemloop D In Terminally Deleted Coxsackievirus B3 Replication, Lee K. Jaramillo

Theses & Dissertations

Coxsackievirus B3 (CVB3) is an enterovirus with no known form of latency. However, assays designed to detect enteroviral RNA have shown that CVB3 RNA can persist for weeks beyond the acute infection both naturally and experimentally. Our previous work with coxsackievirus revealed an inhibited version of enteroviral replication where the progeny virus, termed terminally deleted (TD) virus, was missing a maximum of 49 nucleotides from the beginning of the 5’ non-translated region (NTR). The largest terminally deleted virus, TD50, effaced stem a, stemloop b, and stemloop c from the secondary structure, the cloverleaf. We hypothesized that further deletion beyond those …


Role Of Ecdysoneless In Erbb2/Her2 Mediated Breast Oncogenesis, Shalis A. Ammons May 2016

Role Of Ecdysoneless In Erbb2/Her2 Mediated Breast Oncogenesis, Shalis A. Ammons

Theses & Dissertations

Breast cancer is the second leading cause of cancer related deaths in women in the United States. The human Epidermal Growth Factor 2 (ErbB2) gene amplification and/or receptor overexpression subtype of breast cancer accounts for 25% of all breast cancers. A crucial regulator of the ErbB2 signaling pathway is the heat shock protein 90 (Hsp90) and its interacting protein complex. One such complex is the R2TP/Prefoldin-like complex that is composed of four proteins, RUVBL1, RUVBL2, PIH1D1, and RPAP3 and seven prefoldin-like proteins. This complex has been shown to be involved in telomere elongation, ribosome biogenesis, protein stability; etc. We and …


Secretory Mucin Muc5ac In Gastrointestinal Malignancies, Shiv Ram Krishn May 2016

Secretory Mucin Muc5ac In Gastrointestinal Malignancies, Shiv Ram Krishn

Theses & Dissertations

Secretory mucin MUC5AC is an extensively glycosylated high molecular weight protein that forms a polymeric gel layer over the epithelial layers under physiological conditions, to protect these surfaces from myriad of insults. MUC5AC is known to be implicated in various malignancies including pancreatic cancer and colorectal cancer. MUC5AC is overexpressed in pancreatic cancer compared to no expression in normal pancreas. However, its functional implications and associated mechanistic basis in pancreatic cancer remains obscure. Therefore, we investigated the role of MUC5AC in onset and progression of pancreatic cancer. Our study showed that MUC5AC expression is elevated during pancreatic cancer progression while …