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Articles 1 - 30 of 133
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Role Of Nadph Oxidase 4 In Murine Cancer-Associated Fibroblast, Faith M. Gomez
Role Of Nadph Oxidase 4 In Murine Cancer-Associated Fibroblast, Faith M. Gomez
Theses & Dissertations
Breast cancer is the second leading cause of cancer deaths in women in the United States. Frontline hormone therapies for breast cancer prove ineffective in triple negative breast cancer tumors wherein the hormones estrogen, progesterone, and HER2 are downregulated or absent; therefore, patients diagnosed with triple negative breast cancer are primarily limited to chemotherapies which carry a higher failure and resistance rate. Here we target cancer associated fibroblasts as potential drivers of chemoresistance in triple negative breast cancer. We investigated the mechanism by which Nox4 regulates the YAP/TAZ pathway in modulating DTX sensitivity and sought to determine if targeting Nox4 …
Development Of Self-Assembled Polymeric Polyplexes For Microrna Delivery: Toward Treatment Of Alcohol-Associated Liver Disease, Marjina Akter Kalpana
Development Of Self-Assembled Polymeric Polyplexes For Microrna Delivery: Toward Treatment Of Alcohol-Associated Liver Disease, Marjina Akter Kalpana
Theses & Dissertations
Self-assembled polymeric polyplexes have the potential to serve as an RNA interference (RNAi) delivery platform for the combined inhibition of CXCR4 and miR-155 in the treatment of alcohol-associated liver disease (AALD). A central challenge in RNA delivery is balancing the extracellular stability of polyplexes, cellular uptake, and intracellular release of RNA cargo. We developed polymeric polyplexes using the CXCR4-antagonist polymer PAMD, designed to target CXCR4 on activated hepatic stellate cells (HSCs) and deliver therapeutic miRNA to activated Kupffer cells (KCs) in fibrotic liver. We improved the polyplexes by cholesterol modification of PAMD and by PEGylation of PAMD-Ch. The cholesterol modification …
Evaluating Bmx-001 As A Selective Radioprotector For Healthy Tissue In Pelvic Cancers, Molly Myers
Evaluating Bmx-001 As A Selective Radioprotector For Healthy Tissue In Pelvic Cancers, Molly Myers
Theses & Dissertations
Pelvic cancers, including rectal, anal, and prostate cancer, are relatively survivable cancers with high five-year survival rates, partially due to the addition of radiation to treatment regimens. Radiation confers excellent tumor control, but also causes damage to surrounding tissue, resulting in both short-term and long-term side effects. In a patient population that is surviving longer after treatment, limiting the impact of side effects is instrumental to improving patient quality of life. Radiation-induced ROS is instrumental in causing these side effects and provides a unique opportunity to protect healthy tissue from damage while sensitizing cancer tissue to treatment, as cancer cells …
Claudin-1-Mediated Signaling And Therapy Resistance In Colorectal Cancer: From Mechanism To Translation, Mark W. Primeaux
Claudin-1-Mediated Signaling And Therapy Resistance In Colorectal Cancer: From Mechanism To Translation, Mark W. Primeaux
Theses & Dissertations
Colorectal cancer (CRC) remains a leading cause of cancer-related mortality, with metastatic cases showing poor response to chemotherapy due to both intrinsic and acquired therapy resistance. Claudin-1 (CLDN1), a tight junction protein, is overexpressed and mislocalized outside of tight junctions in CRC, where it contributes to an aggressive, metastatic phenotype. Although this causal relationship has been well established, the mechanisms by which CLDN1 promotes tumor progression were unclear due to its lack of intrinsic enzymatic activity. This dissertation investigates the molecular mechanisms through which CLDN1 drives oncogenic signaling, its role in therapy resistance, and its translational potential as both a …
Drivers And Mechanisms Of Golgi Fragmentation As A Modulator Of Disease, Amanda Macke
Drivers And Mechanisms Of Golgi Fragmentation As A Modulator Of Disease, Amanda Macke
Theses & Dissertations
The Golgi apparatus plays a pivotal role in post-translational modification, trafficking, and secretion of proteins, ensuring proper cellular function. As a result, its fragmentation has been implicated in multiple pathological conditions, including alcohol-induced liver injury and prostate cancer (PCa). Despite its known impact on cellular homeostasis, the molecular mechanisms governing Golgi fragmentation remain to be clarified. Additionally, we have only just begun to understand the vast consequences of Golgi disorganization on disease progression.
This dissertation investigates the drivers and mechanisms of Golgi fragmentation, with a focus on its role as a modulator of disease. Using both in vitro and in …
Cholestasis And Fluid Flow Are Biomechanic Regulators Of Cholangiocarcinoma Progression, Andrew Oleksijew
Cholestasis And Fluid Flow Are Biomechanic Regulators Of Cholangiocarcinoma Progression, Andrew Oleksijew
Theses & Dissertations
Cholestasis, altered or absent bile flow, is associated with poor survival in patients with cholangiocarcinoma, an aggressive cancer of the biliary epithelium. Changes in bile flow often result in stricture or obstruction. Experimental cholestasis promoted tumor growth and progression. However, studies are needed that directly assess the mechanical interaction between bile flow, or bile shear stress, and cholangiocarcinoma signaling. We hypothesized that cholestasis and absent bile shear stress activated cancer signaling and increased aggressive cellular behaviors such as proliferation and migration. Fluid shear stress approximating bile flow was applied by orbital culture plate method and compared to identical static culture …
Apolipoprotein E4, Tauopathy, And Brain Injury: Molecular Insights Into Alzheimer's Disease Pathology, Nashanthea J. Roland
Apolipoprotein E4, Tauopathy, And Brain Injury: Molecular Insights Into Alzheimer's Disease Pathology, Nashanthea J. Roland
Theses & Dissertations
Alzheimer’s disease (AD) is the world’s leading cause of dementia, characterized by progressive atrophy of the hippocampal and cortical brain regions, synapse damage and loss, and a buildup of senile plaques and neurofibrillary tangles composed of β-amyloid peptides and hyperphosphorylated tau, respectively. While age is the most significant risk factor for developing AD, apolipoprotein E4 (APOE4) is the strongest genetic risk factor for AD. Although it is known that APOE4 influences tau pathology, the molecular mechanisms by which APOE4 drives AD pathogenesis and progression remain unclear. In addition to intrinsic contributions to AD, there are many extrinsic factors that can …
P85Α Degradation Mediated By Ubiquitin E3 Ligase Fbxo21 Offers Therapeutic Potential In Leukemia, Kasidy K. Weber
P85Α Degradation Mediated By Ubiquitin E3 Ligase Fbxo21 Offers Therapeutic Potential In Leukemia, Kasidy K. Weber
Theses & Dissertations
Acute myeloid leukemia (AML) is a complex and heterogeneous disease characterized by the clonal expansion of myeloid blasts in the bone marrow. Despite significant therapeutic advances over the years, the prognosis for AML patients remains dismal, with high relapse rates and poor overall survival. The ubiquitin-proteasome system (UPS) plays a critical role in maintaining cellular homeostasis by regulating the degradation of proteins involved in essential processes such as cell cycle control, DNA repair, apoptosis, and various signaling pathways. Given this vital function, targeting ubiquitin E3 ligases within the UPS presents a promising strategy for developing more effective and targeted therapies …
Role Of Pycr2 In Colorectal Cancer, Raju Lama Tamang
Role Of Pycr2 In Colorectal Cancer, Raju Lama Tamang
Theses & Dissertations
Despite significant progress in clinical management, colorectal cancer (CRC) remains the 3rd most common cause of cancer-related deaths. A positive association of PYCR2 (Pyrroline-5-carboxylate reductase-2), a terminal enzyme of proline metabolism, with CRC aggressiveness was recently reported including by us. However, how PYCR2 promotes colon carcinogenesis remains ill understood. In our studies, comprehensive in-silico and biochemical evaluations were performed along with genetic manipulations and in-vivo tumor growth assays to gain mechanistic understanding. Results showed that PYCR2 expression was significantly upregulated in CRC and associated with poor patient survival specifically among PYCR isoforms (PYCR-1, -2 and -3). Genetic inhibition of PYCR2 …
Determining If Cx45 Acts As An Arrythmogenic Substrate In The Diseased Myocardium, Stephen R. Sobota
Determining If Cx45 Acts As An Arrythmogenic Substrate In The Diseased Myocardium, Stephen R. Sobota
Theses & Dissertations
Proper contraction of the heart relies on gap junction channels (GJCs) composed of Cx40 and Cx43 in the atrial and ventricular tissues which mediate electrical conductance in the working myocardium. Also expressed is Cx45, which is limited to the pacemaker system. Studies in diseased human hypertrophic cardiac tissue have shown expression of Cx45 and decrease of Cx43 in the myocardium. Cx43 and Cx45 in vitro form heterometric GJCs, where the channel characteristics (metabolite transfer, electrical conductance, etc.) resemble those of Cx45. There is little-to-no data showing whether GJCs composed of Cx43 and Cx45 in cardiac hypertrophy result in altered conductance. …
The Interactions Of Centromeric Nucleosomes Elucidated By Atomic Force Microscopy, Shaun Filliaux
The Interactions Of Centromeric Nucleosomes Elucidated By Atomic Force Microscopy, Shaun Filliaux
Theses & Dissertations
Nucleosomes are the fundamental unit of compaction for DNA in the genome. These positively charged proteins have two main types of nucleosomes: canonical (H3 containing) and centromere (CENP-A containing). The compacting of DNA allows for DNA to fit into the nucleus of cells, but creates a barrier for DNA accessibility for operations such as replication or transcription. Centromeric chromatin is a subset of chromatin structure and governs chromosome segregation. Compared to the bulk chromosome, centromeres are composed of H3 and CENP-A nucleosomes in which H3 histones is replaced by its homolog CENP-A histone. This results in nucleosomes with different structures, …
Identifying The Molecular Determinants Of Lung Metastatic Adaptation In Prostate Cancer, Grace M. Waldron
Identifying The Molecular Determinants Of Lung Metastatic Adaptation In Prostate Cancer, Grace M. Waldron
Theses & Dissertations
Prostate cancer (PC) stands as the primary diagnosed cancer in men in the US at approximately 299,010 cases in 2024 and ranks second globally, posing a significant public health challenge. Clinical presentations vary widely, from indolent to aggressive forms, necessitating stage-specific treatment regimens. Understanding its metastatic nature is critical due to the impact of cancer cell dissemination on disease morbidity, with bone and visceral organs serving as key sites of metastasis. Despite bone metastasis being the most common site for metastasis, visceral metastases at sites such as the liver and lungs correlate with poorer survival, emphasizing the role of microenvironmental …
Mucin 5ac Modulates Cancer-Associated Fibroblast Heterogeneity Through Epigenetic Regulation, Rachel J. Kehrberg
Mucin 5ac Modulates Cancer-Associated Fibroblast Heterogeneity Through Epigenetic Regulation, Rachel J. Kehrberg
Theses & Dissertations
Pancreatic cancer is characterized by a stroma component that comprises up to 90% of the tumor. Cancer-associated fibroblasts (CAFs) are a significant component of the stroma and contribute to cancer pathobiology through the secretion of extracellular matrix, growth factors, metabolites, and cytokines. CAFs are a highly heterogeneous population derived from various precursors, including adipose-derived and bone marrow- derived mesenchymal stem cells (AD-MSCs, BM-MSCs) and pancreatic stellate cells (PSCs). In this dissertation, we examine how mucin 5ac (Muc5ac) mediates the maturation of AD-MSCs, BM-MSCs, and PSCs into CAFs and the heterogeneity between CAFs derived from these various precursors. Muc5ac promotes the …
Cis-Regulatory Mechanisms Through Stages Of Erythroid Regenration, Yichao Zhou
Cis-Regulatory Mechanisms Through Stages Of Erythroid Regenration, Yichao Zhou
Theses & Dissertations
Produced by steady state erythropoiesis, erythrocytes serve as vital regulators of metabolism and life by delivering oxygen to all the cells and tissues. Under acute anemia, steady state erythropoiesis is not sufficient to produce enough erythrocytes, leading to distinct mechanisms needed to regenerate large numbers of mature erythrocytes rapidly. Erythroid regeneration occurs in four stages: activation, expansion and differentiation, resolution, and post-resolution, according to the dynamics of erythrocyte numbers and progenitor activity. Erythroid regeneration throughout this timeline requires some critical extracellular cues, but the intrinsic molecular mechanisms needed to accelerate and decelerate the activity of erythroid progenitors in anemia and …
Homeobox A10: Regulator Of Pancreatic Cancer Progression And Survival, Sophia G. Kisling
Homeobox A10: Regulator Of Pancreatic Cancer Progression And Survival, Sophia G. Kisling
Theses & Dissertations
Pancreatic ductal adenocarcinoma (PDAC) has one of the lowest incidence rates among all major cancers, yet it is disproportionally responsible for 8% of all cancer deaths. This high death rate is primarily attributed to the immunosuppressive tumor microenvironment and a lack of clinically relevant molecular targets. However, the underlying biology responsible for these poor outcomes remains obscure. To facilitate improved management of PDAC, an in-depth understanding of the molecular player(s) involved in PDAC aggressiveness is needed. Therefore, we analyzed the transcriptomic profiles of PDAC patients with long- and short-term survival and performed gene set enrichment analysis (GSEA), identifying a novel …
Mucins: Drivers Of Cancer Cell And Microenvironment Crosstalk In Pancreatic Cancer, Xiaoqi Li
Mucins: Drivers Of Cancer Cell And Microenvironment Crosstalk In Pancreatic Cancer, Xiaoqi Li
Theses & Dissertations
Mucins facilitate the pancreatic cancer (PC) initiation, progression, and metastasis. Among mucins, MUC4 has been reported to inhibit lymphokine-activated cell killing and induce the apoptosis of cytotoxic T-cells. Counterintuitively, MUC4 expression is upregulated by multiple T-cell-secreted cytokines, such as IFN-γ, IL-17, and stroma-secreted factors like retinoic acid. Previously, we have identified that nuclear receptor coactivator 3 (NCOA3) regulates the MUC1 and MUC4 expression by increasing chromatin accessibility and maintaining protein stability. However, the comprehensive crosstalk mediated by MUC4 in cancer cells and T-cells and how its upstream regulator, NCOA3, modifies the cancer cell-intrinsic behavior is still elusive. Here, we show …
Novel Spirocyclic Dimer (Spid3) Displays Potent Preclinical Effects In Hematological Malignancies, Alexandria Eiken
Novel Spirocyclic Dimer (Spid3) Displays Potent Preclinical Effects In Hematological Malignancies, Alexandria Eiken
Theses & Dissertations
Chronic lymphocytic leukemia (CLL) is a heterogeneous disease characterized by the accumulation of mature CD5+ B-cells in the peripheral blood, bone marrow, and secondary lymphoid tissues (e.g., spleen and lymph nodes).Despite the efficacy of front-line therapies, CLL is still an incurable disease, highlighting the need for development of novel therapeutics and further study of resistance mechanisms. Within the lymph node CLL tumor microenvironment (TME), there is an upregulation of gene signatures associated with B-cell receptor (BCR) and downstream nuclear factor kappa B (NF-κB) signaling compared to CLL cells found within the blood or bone marrow niches. Additionally, BCR signaling …
Targeting Lifr/C-Myc/Ddx21 Axis To Overcome Docetaxel Resistance In Prostate Cancer, Sushanta Halder
Targeting Lifr/C-Myc/Ddx21 Axis To Overcome Docetaxel Resistance In Prostate Cancer, Sushanta Halder
Theses & Dissertations
Resistance to chemotherapy poses a significant challenge in the treatment of advanced-stage prostate cancer (PCa), specifically with chemotherapy drugs like docetaxel (Doce), which is often employed after the failure of hormone therapy. However, 50-90% of PCa patients develop resistance to docetaxel within three years of post-chemo treatment, compounded by serious adverse side effects necessitating dose reductions. Various strategies are being investigated to address this issue, including identifying new therapeutic targets or mechanisms, developing novel combination therapies, and optimizing dosing regimens. In particular, our research is focused on uncovering the underlying mechanisms of resistance to docetaxel, such as the activation of …
Targeting Metabolic Switches And Dna Damage Repair For The Treatment Of Human Diseases, Rasangi Chathurika Kankanam Pathirage
Targeting Metabolic Switches And Dna Damage Repair For The Treatment Of Human Diseases, Rasangi Chathurika Kankanam Pathirage
Theses & Dissertations
Tuberculosis and Cancer treatments share common challenges due to prolonged therapy, the necessity of combination therapy and severe side effects. Characterization of novel drug targets and identification of new drugs modulating such targets within the context of multidrug treatments will contribute to overcoming current therapeutic challenges.
Tuberculosis (TB) is one of the challenging diseases to treat due to the persistence of Mycobacterium tuberculosis (Mtb) in the dormant phase. Current TB drugs are more effective toward actively dividing bacteria and less effective toward dormant bacteria. The metabolic transition between actively dividing bacteria and dormant bacteria is driven by pivotal metabolic enzymes …
Characterization Of Trafficking And Metabolic Functions Of The Endocytic Regulator Ehd1 In Ewing Sarcoma, Sukanya Chakraborty
Characterization Of Trafficking And Metabolic Functions Of The Endocytic Regulator Ehd1 In Ewing Sarcoma, Sukanya Chakraborty
Theses & Dissertations
Ewing sarcoma (EWS) is the second most common bone malignancy in children and adolescents. Despite improvement in survival due to advances in multimodality treatment strategies, patients with metastatic or recurrent disease have very poor outcomes. Overexpression of the EPS15 Homology Domain containing 1 (EHD1) protein has been linked to tumorigenesis but whether its core function as a regulator of intracellular traffic of cell surface receptors plays a role in oncogenesis remains unknown.
Studies presented in this dissertation establish that EHD1 overexpression is a feature of nearly 90% EWS patient tumors with high EHD1 expression specifying shorter patient survival. ShRNA-knockdown and …
Dynamics Of Site Search Process And Formation Of Synaptosome Assembly Characterized By Single Molecule Approaches, Sridhar Vemulapalli
Dynamics Of Site Search Process And Formation Of Synaptosome Assembly Characterized By Single Molecule Approaches, Sridhar Vemulapalli
Theses & Dissertations
Genome dynamics and integrity are the two crucial features defining the successful functioning of cells and their maintenance and evolution. The genetic processes in the cell require distant communications between the regulatory regions controlled by specific proteins. Mistakes in this interaction process will lead to termination of the genetic process may lead to the cell damage, disease development or the cell death. Similar distant regulatory process is required for numerous genome integration systems such as Variable Diversity Joining (V(D)J) recombination system resulting in the specificity of the immunoresponse, a defining property of the adaptive immune system. A common feature of …
Gap Junctional Intercellular Communication: Role Of Cx43 Phosphorylation By Tyrosine Kinases, Ishika Basu
Gap Junctional Intercellular Communication: Role Of Cx43 Phosphorylation By Tyrosine Kinases, Ishika Basu
Theses & Dissertations
Phosphorylation of Cx43 is a process that regulates various functionalities of the gap junction including assembly, stability, internalization, turnover, channel permeability and channel gating. Src has been shown to phosphorylate Cx43 at Y247, Y265, Y313 and regulate gap junctions. Intercellular communication in B and T cells is necessary to mediate adaptive immune response. However, there is little-to-no expression of Src in these lymphocytes. An in vitro kinase screen identified Bruton’s tyrosine kinase (BTK) and Interleukin 2-inducible T-cell kinase (ITK) to phosphorylate Cx43. Mass spectrometry identified Tyr residues to be phosphorylated by BTK and ITK, and these residues are similar to …
Exploiting Vulnerabilities In The Ras-Rac Signaling Pathway For The Selective Targeting Of Pancreatic Cancer Cells, Neha Chaudhary
Exploiting Vulnerabilities In The Ras-Rac Signaling Pathway For The Selective Targeting Of Pancreatic Cancer Cells, Neha Chaudhary
Theses & Dissertations
Deregulation of the KRas (Kirsten rat sarcoma virus) GTPase is one of the early hallmarks of Pancreatic Cancer (PC). The most common genetic alteration found in PC are mutations in the KRas protein that block its ability to hydrolyze GTP to GDP and resulting in higher levels of GTP-bound KRas, its active form. Pancreatic tumors driven by oncogenic mutants of KRas tend to be addicted to the oncogene, to the extent that its repression leads to the induction of cell death. This addiction to the KRAS oncogene makes the KRas protein an ideal target for cancer therapy. However, the globular …
Creation Of Tatde Rlnps For The Excision Of Integrated Hiv-1 Proviral Dna, Mahmudul Hasan
Creation Of Tatde Rlnps For The Excision Of Integrated Hiv-1 Proviral Dna, Mahmudul Hasan
Theses & Dissertations
The persistence of integrated human immunodeficiency virus type 1 (HIV-1) proviral DNA despite combination antiretroviral therapy (ART) is the principal challenge to eliminating HIV-1 infection. This is made ever more complex based on the high viral mutation rates, diversity and resistance profiles. Taken together, these factors present principal obstacles towards any means to eliminate the virus from its infective human host. To address these factors, we have developed and validated a TatDE rLNP RNA delivery system. The system utilizes Clustered Regularly Interspaced Short Palindromic Repeat (CRISPR) guide RNAs (gRNAs) to target multiple exons of an integrated proviral HIV-1 (tat1-2 …
A Critical Assessment Of The Role Of Clpxp-Mediated Proteolysis In The Development And Differentiation Of Chlamydia Trachomatis, Nicholas A. Wood
A Critical Assessment Of The Role Of Clpxp-Mediated Proteolysis In The Development And Differentiation Of Chlamydia Trachomatis, Nicholas A. Wood
Theses & Dissertations
Chlamydia trachomatis, an obligate intracellular human pathogen, is the etiological agent of the most commonly reported bacterial sexually transmitted infection and the leading cause of preventable infectious blindness worldwide. In adapting to an intracellular niche, Chlamydia has evolved to eliminate superfluous genes from its chromosome. Despite its highly reduced genome, Chlamydia undergoes a complex developmental cycle in which the bacteria differentiate between two functionally and morphologically distinct forms: the infectious, non-replicative elementary body (EB) and the non-infectious, replicative reticulate body (RB). An EB initiates infection by binding to and inducing uptake into a host cell. Within the cell, the EB …
Dynamics Of Nucleosome Assembly Characterized By Atomic Force Microscopy, Tommy Stormberg
Dynamics Of Nucleosome Assembly Characterized By Atomic Force Microscopy, Tommy Stormberg
Theses & Dissertations
Nucleosomes are the basic repeating unit defining the assembly and function of chromatin. Understanding the fundamental mechanisms of nucleosome structure and dynamics is critical to elucidating the chromatin assembly process. This dissertation describes my work in elucidating the role of different factors that drive the nucleosome dynamics.
In my first study, we characterized, for the first time, the effect of sequence on nucleosome assembly. We then characterized the role of internucleosomal interactions, discovering a critical role internucleosomal interactions in the assembly of higher order structures.
Based on the previous study and literature regarding histone tails, we hypothesized the histone H4 …
Characterization Of Ape1 And Dna G-Quadruplex Interaction In Transcription Regulation And Dna Damage Repair, Suravi Pramanik
Characterization Of Ape1 And Dna G-Quadruplex Interaction In Transcription Regulation And Dna Damage Repair, Suravi Pramanik
Theses & Dissertations
Human AP Endonuclease 1 (APE1) is the primary enzyme in the base excision repair (BER) pathway that repairs apurinic/apyrimidinic (AP) sites, the most frequently formed DNA lesions in the genome. Recently, through genome-wide mapping analysis, we have shown that APE1, as well as its post-translationally modified form, acetylated APE1 (AcAPE1), is enriched in the gene regulatory regions. The APE1/AcAPE1-enriched regions also harbor Guanine (G)-rich sequences that fold into DNA secondary structures called G-quadruplexes (G4s). Our lab has demonstrated a strong genome-wide correlation between the occurrence of G4 structures and the binding of APE1 and AcAPE1. However, it is unknown whether …
Structural And Inhibitory Studies On (I)Two Mycobacterium Tuberculosis Enzymes Essential For Capsular Glucan Biosynthesis And Mrna Degradation: (Ii) Hantann Virus L-Protein Endonuclease Domain, Hettiarachchige Thilina D. Jayasinghe
Structural And Inhibitory Studies On (I)Two Mycobacterium Tuberculosis Enzymes Essential For Capsular Glucan Biosynthesis And Mrna Degradation: (Ii) Hantann Virus L-Protein Endonuclease Domain, Hettiarachchige Thilina D. Jayasinghe
Theses & Dissertations
Mycobacterium tuberculosis (Mtb) is the pathogenic bacterium species that causes Tuberculosis (TB). Understanding the major biosynthetic pathways responsible for cell viability is essential in developing new drugs against Mtb. The first two projects will reflect our approach in identifying inhibitors against Mtb GlgE, Mtb GpsI, and characterization of protein inhibitor interactions using X-ray crystallography.
The enzyme GlgE plays an essential role in the α-glucan biosynthesis pathway in Mtb cells. These α-glucans are one of the major structural units in the Mtb capsule. GlgE catalyzes the elongation of α-glucan by transferring maltose from maltose-1-phosphate (M1P) to the non-reducing end …
Structural And Biochemical Studies Of Three Enzymes Involved In Amino Acid Metabolism To Develop Novel Drugs, Yahani Pankaja Jayasinghe Arachchige
Structural And Biochemical Studies Of Three Enzymes Involved In Amino Acid Metabolism To Develop Novel Drugs, Yahani Pankaja Jayasinghe Arachchige
Theses & Dissertations
Intrinsic drug resistance in bacteria predates the clinical use of antibiotics. Additionally, heterogeneous metabolic states and the ability of many bacteria to form biofilms further enhances bacterial survival during infection and exacerbates treatment challenges. This necessitates the identification of novel drugs against new drug targets. These studies focus on the development of compounds targeting enzymes in Mycobacterium tuberculosis (Mtb) and Staphylococcus aureus that avoid intrinsic antibiotic defenses. The Mtb-encoded homoserine transacetylase enzyme (HTA) catalyzes the first step of the methionine biosynthesis pathway that produces methionine and S-adenosyl methionine. These compounds are shown to be essential for both dormant …
The Role Of Parkin In Mitochondrial Dna, Eliezer Lichter
The Role Of Parkin In Mitochondrial Dna, Eliezer Lichter
Theses & Dissertations
Mitochondria are at the center of biological phenomena such as aging and diseases, especially neurodegenerative diseases. While the discovery of mitochondria only came approximately 200 years after the cell was discovered, a lot of progress has been made since. The mitochondrial genome encodes proteins vital for mitochondrial function. These proteins are only a subset of the proteins present in mitochondria; the rest are nuclear encoded. The nucleus also encodes cytosolic proteins vital for mitochondrial maintenance. One of these is Parkin, an E3 ubiquitin ligase that ubiquitinates mitochondrial proteins as mitochondria become depolarized. Its activity has been shown to be involved …