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Full-Text Articles in Biochemistry

Structural Impacts Of Canonical And Non-Canonical Oligonucleotide Modifications, Deepak Shrestha Jan 2025

Structural Impacts Of Canonical And Non-Canonical Oligonucleotide Modifications, Deepak Shrestha

Wayne State University Dissertations

Nucleic acids, including DNA (deoxyribonucleic acid) and RNA (ribonucleic acids), are the fundamental building blocks of living organisms. The events that cause modification of DNA/RNA are of interest because they impact the nucleic acid function. Targeting DNA is important for treating diseases such as cancer. Cisplatin (cisPt) is a well-studied drug that targets DNA and blocks replication, but its use is limited by adverse side effects and cellular resistance. Prevoius research addressed some of these challenges through development of platinum analogues such as carboplatin and oxaliplatin. Amino acid-linked platinum analogues (AAPt) are the focus of this thesis work. AAPt complexes …


Mass Spectrometry Combined With Chemical Biology To Study Human Ailments, Eric Thomas Jacquerio Davis Jan 2025

Mass Spectrometry Combined With Chemical Biology To Study Human Ailments, Eric Thomas Jacquerio Davis

Wayne State University Dissertations

Post-translational modifications (PTMs) are essential as chemical changes that regulate protein function, activity, stability, interactions, and localization after protein synthesis. PTMs, such as phosphorylation, acetylation, and ubiquitination, can activate or deactivate proteins, influence their interactions with other molecules, and determine their cellular location. This regulation is vital for numerous biological processes, such as cell cycle control, signal transduction, and gene expression. Abnormal PTMs are linked to various diseases in humans, including parasitic infection, blood disorders, cancers, and neurodegenerative diseases, making their study crucial for understanding disease mechanisms and developing targeted therapies. In the Pflum lab, we are interested in the …


Uracil Landscape Of Mouse B Cell Genome Undergoing Class-Switch Recombination, Fathima Rukshana Mohamad Ramshan Jan 2024

Uracil Landscape Of Mouse B Cell Genome Undergoing Class-Switch Recombination, Fathima Rukshana Mohamad Ramshan

Wayne State University Dissertations

Activation-induced cytosine deaminase (AID) is required for both somatic hypermutation (SHM) and class switch recombination (CSR) within mammalian antibody genes. Uracils created by AID in the Ig loci are recognized and processed by base-excision and mismatch repair pathways leading to antibody diversification. This involves a hypermutation process restricted to the V(D)J segments of the immunoglobulin genes, SHM, and an error-prone end-joining process that causes isotype switching, CSR, but the molecular details of these processes have remained obscure for the past 20+ years. Most studies of SHM and CSR have used AID-promoted mutations as a proxy for the uracils, but their …


Design, Synthesis, And Evaluation Of Class Iia Histone Deacetylase (Hdac) Inhibitors, Lauren Nicole Kotsull Jan 2024

Design, Synthesis, And Evaluation Of Class Iia Histone Deacetylase (Hdac) Inhibitors, Lauren Nicole Kotsull

Wayne State University Dissertations

Histone deacetylase (HDAC) proteins are linked to disease states, including cancer, and have become important targets for therapeutic development. Many inhibitors have been developed to target HDAC proteins, including FDA-approved inhibitors Vorinostat (SAHA), Belinostat, Romidepsin, and Panobinostat. These inhibitors non-specifically influence most of the 11 metal-dependent HDAC isoforms, which might contribute to the side effects that patients experience during treatment. The lack of selectivity also diminishes the use of HDAC inhibitors as biomedical research tools. To address these drawbacks, the development of selective inhibitors has been heavily studied. Yet, reported inhibitors are predominantly selective for class I HDAC isoforms (HDACs …


Dual Mechanisms Contributing To Pyruvate Dehydrogenase Activity Deficiency In A Barth Syndrome Cell Model, Zhuqing Liang Jan 2023

Dual Mechanisms Contributing To Pyruvate Dehydrogenase Activity Deficiency In A Barth Syndrome Cell Model, Zhuqing Liang

Wayne State University Dissertations

Barth syndrome (BTHS) is a rare genetic disease that results from mutations in the TAFAZZIN gene, which encodes the cardiolipin (CL) remodeling enzyme tafazzin (Taz). The mechanisms linking perturbation of CL remodeling and the pathological features of BTHS are not understood. We have recently reported that intermediary metabolism is perturbed in BTHS, and activity of the metabolic gatekeeper enzyme pyruvate dehydrogenase (PDH) is deficient in BTHS models. The mechanism whereby PDH is regulated by Taz is unknown, and this knowledge gap represents an obstacle to the development of therapeutics to treat BTHS. Using an established C2C12 myoblast model of BTHS, …


Analyzing The Impact Of Zip Subfamily Ii Mutations On The Zinc And Iron Transport Of Zupt From Escherichia Coli, Bradley Vandecar Jan 2023

Analyzing The Impact Of Zip Subfamily Ii Mutations On The Zinc And Iron Transport Of Zupt From Escherichia Coli, Bradley Vandecar

Wayne State University Theses

The disfunction or misregulation of the ZIP family of metal ion transporters has been linked to a plethora of diseases and cancers in humans. Zn2+ is the primary substrate for ZIPs and is transported through the M1 metal binding site, though this activity is stimulated through the binding of Fe2+ in the M2 metal binding site. The members of ZIP Subfamily II are predicted to have an inactive M2 site due to the lack of Fe2+ transport and from a previously generated homology model. This work utilizes homology modelling, whole cell metal ion uptake assays, and growth studies in minimal …


In Silico Drug Discovery For Sars-Cov-2 Papain-Like Protease, Olivia Haskin Jan 2023

In Silico Drug Discovery For Sars-Cov-2 Papain-Like Protease, Olivia Haskin

Wayne State University Theses

SARS-CoV-2 Papain-like protease is an essential viral protein for viral replication. In our lab, we hypothesize that successful inhibition of this protease will stop viral replication and allow for clearance of the infection by the host. The work described here aimed to design and execute an in silico drug discovery workflow for successfully selecting PLpro inhibitors from the Mcule purchasable compound database. This work reports such a workflow and nine potential compounds for in vitro testing. This work also describes structural activity relationship analysis of a proprietary set of PLpro inhibitors synthesized by medicinal chemistry collaborators and makes recommendations for …


Expression And Purification Of E. Coli Yoaa, A Putative Helicase, Mark Gregory, Vincent Sutera Mr., Susan Lovett Dr. Jun 2022

Expression And Purification Of E. Coli Yoaa, A Putative Helicase, Mark Gregory, Vincent Sutera Mr., Susan Lovett Dr.

Medical Student Research Symposium

All cells must maintain their genomic integrity to survive, which they achieve through several repair mechanisms that necessitate unwinding the damaged DNA by helicases. In Escherichia coli (E. coli), YoaA has been genetically shown to be involved in DNA repair and shares conserved sequences with helicase DinG. The goal of our study was to purify YoaA for further biochemical characterization. For expression, YoaA was fused to a His tag and overexpressed in MG1655 E.coli under the lacZ or T7 promoters for 2 hours, 4 hours, or overnight at 24oC, 30oC or 37oC. For purification, crude lysate was applied to a …


Kinase-Catalyzed Labeling To Identify Kinase-Substrate Pairs Using Γ-Phosphate Modified Atp Analogs, Rachel Beltman Jan 2022

Kinase-Catalyzed Labeling To Identify Kinase-Substrate Pairs Using Γ-Phosphate Modified Atp Analogs, Rachel Beltman

Wayne State University Dissertations

Post-translational modifications (PTMs) are responsible for a variety of cellular processes. One such PTM is protein phosphorylation, which is catalyzed by kinases. Kinase enzymes play important roles in cellular signaling pathways, but dysregulation of kinase-mediated events results in the formation of diseases, which make kinases favorable drug targets. To uncover the role kinases play in the development of diseases, kinase-mediated cellular events need to be better understood. The current gap in the field is the lack of tools available to identify the kinase that is responsible for specific phosphorylation events within the cell. To improve the gap in the field, …


Extending Plasma Proteome Coverage To Enable Biomarker Discovery, Jordan Bruce Burton Jan 2022

Extending Plasma Proteome Coverage To Enable Biomarker Discovery, Jordan Bruce Burton

Wayne State University Dissertations

Two features make plasma a valued source of health information: First, plasma contains secreted proteins from all tissues in the body and can, therefore, provide information about the health status of all tissues. Second, plasma is available in large quantity using a minimally invasive procedure that is well tolerated. The status of plasma as a valued source of health information is matched by the difficulty in extracting proteome information from the samples. Using state of the art instrumentation a standard analysis of plasma yields quantitative information on approximately 300 proteins. Extreme fractionation strategies coupled with increased mass spectrometry time extends …


Identification Of Glutathionylated Cysteines Regulating Cell Migration, Dhanushika Kukulage Jan 2022

Identification Of Glutathionylated Cysteines Regulating Cell Migration, Dhanushika Kukulage

Wayne State University Dissertations

Cell migration is vital in many physiological processes, such as wound repair and metastasis. Impaired cell migration in wound healing may result in chronic wounds, by which 6.7 million Americans are affected, and they suffer from bacterial infections, amputations, increased mortality, and depression. Reactive oxygen species (ROS) or hydrogen peroxide (H2O2) play an essential role as a second messenger in redox signaling. Evidence has been found that H2O2 takes part in regulating cell migration as well. A primary mechanism of ROS regulating redox signaling is oxidative protein modifications. Protein S-glutathionylation, one of the oxidative modifications, is the conjugation of glutathione …


Effect Of Allosteric Site Binding On Smyd2 Conformational Ensemble, Jacob Daniel Sobota Jan 2022

Effect Of Allosteric Site Binding On Smyd2 Conformational Ensemble, Jacob Daniel Sobota

Wayne State University Theses

Molecular dynamics simulation allows for the simulation of proteins with precise control over what ligands are present at what sites. The conformational ensemble of a protein can be obtained from MD simulation with and without binding at an allosteric site and compared between to gain insight at what effects binding at an allosteric site has on a protein’s structure. SMYD2, a critical regulator of cellular processes, was recently found to have a novel secondary binding site with allosteric effects on its activity. The discovery of an allosteric site has implications for drug design in the inhibition of SMYD2 to treat …


Characterizing The Post-Translational Modifications Of The Pro-Oncogenic Type Ii Transmembrane Serine Protease Tmprss13, Carly Elizabeth Martin Jan 2022

Characterizing The Post-Translational Modifications Of The Pro-Oncogenic Type Ii Transmembrane Serine Protease Tmprss13, Carly Elizabeth Martin

Wayne State University Dissertations

TMPRSS13, a type II transmembrane serine protease discovered at the turn of the century, has recently been shown to be significantly overexpressed in both breast cancer (BCa) and colorectal cancer (CRC), and to mediate chemoresistance in cell lines from both cancer types. Furthermore, loss of TMPRSS13 in a genetic model of mouse mammary carcinoma significantly reduced tumor burden and growth rate, and increased overall tumor-free survival. Its location on the cell surface as well as its low expression in normal breast and colon make TMPRSS13 an attractive candidate as an oncogenic biomarker and therapeutic target in cancer. However, little is …


Vaginal Microbiota Of Recurrent Bacterial Vaginosis Patients Under Oral Metronidazole Therapy: Prognosis Based On Specific Species Of Gardnerella And Other Bacterial Vaginosis Associated Species In Association With The Vaginal Microbiome, Ashomathi Ashok Sudhamathi Mollin Jan 2022

Vaginal Microbiota Of Recurrent Bacterial Vaginosis Patients Under Oral Metronidazole Therapy: Prognosis Based On Specific Species Of Gardnerella And Other Bacterial Vaginosis Associated Species In Association With The Vaginal Microbiome, Ashomathi Ashok Sudhamathi Mollin

Wayne State University Theses

Bacterial Vaginosis (BV) is a state of vaginal dysbiosis in which BV-associated species displace the typically dominant species of Lactobacillus. This urogenital disease elevates the risk for complications such as pre-term birth, STDs and HIV. Currently, there is no consensus on the etiology of BV. Standard of care treatment is oral metronidazole; however, therapy has high rates of recurrence. Our previous qPCR study of recurrent BV patients (3+ episodes/year) found strong associations of Gardnerella_Gsp07, G. swidsinksii, and G. leopoldii with refractory and recurrent responses, and a robust recovery of Lactobacillus in remission patients. However, these findings were not applicable across …


Lysine 53 Acetylation Of Cytochrome C In Prostate Cancer: Warburg Metabolism And Evasion Of Apoptosis, Viktoriia Bazylianska, Hasini A. Kalpage, Junmei Wan, Asmita Vaishnav, Gargi Mahapatra, Alice A. Turner, Dipanwita Dutta Chowdhury, Katherine Kim, Paul T. Morse, Icksoo Lee, Joseph S. Brunzelle, Lisa Polin, Prabal Subedi, Elisabeth I. Heath, Izabela Podgorski, Katrin Marcus, Brian Fp Edwards, Maik HüTtemann Apr 2021

Lysine 53 Acetylation Of Cytochrome C In Prostate Cancer: Warburg Metabolism And Evasion Of Apoptosis, Viktoriia Bazylianska, Hasini A. Kalpage, Junmei Wan, Asmita Vaishnav, Gargi Mahapatra, Alice A. Turner, Dipanwita Dutta Chowdhury, Katherine Kim, Paul T. Morse, Icksoo Lee, Joseph S. Brunzelle, Lisa Polin, Prabal Subedi, Elisabeth I. Heath, Izabela Podgorski, Katrin Marcus, Brian Fp Edwards, Maik HüTtemann

Biochemistry and Molecular Biology Faculty Publications

Prostate cancer is the second leading cause of cancer-related death in men. Two classic cancer hallmarks are a metabolic switch from oxidative phosphorylation (OxPhos) to glycolysis, known as the Warburg effect, and resistance to cell death. Cytochrome c (Cytc) is at the intersection of both pathways, as it is essential for electron transport in mitochondrial respiration and a trigger of intrinsic apoptosis when released from the mitochondria. However, its functional role in cancer has never been studied. Our data show that Cytc is acetylated on lysine 53 in both androgen hormone-resistant and -sensitive human prostate cancer xenografts. To characterize the …


Effects Of Cocaine And/Or Heroin Use On Resting Cardiovascular Function, Shabber Syed Bs, Lina A. Shkokani Bs, Leslie H. Lundahl Phd, Renato S. Roxas Md, Philip D. Levy Md, Mark K. Greenwald Phd Jan 2021

Effects Of Cocaine And/Or Heroin Use On Resting Cardiovascular Function, Shabber Syed Bs, Lina A. Shkokani Bs, Leslie H. Lundahl Phd, Renato S. Roxas Md, Philip D. Levy Md, Mark K. Greenwald Phd

Medical Student Research Symposium

Background: Regular cocaine and/or heroin use is associated with major health risks, especially cardiovascular disease (CVD), but confounded by other factors.

Objectives: We examined effects of chronic (years of regular use) and recent (past-month) use of cocaine and heroin, controlling for other factors, on resting cardiovascular function.

Methods: In a sample of cocaine and/or heroin users (N=292), we obtained data on demographics, body mass index (BMI), history of substance use, and electrocardiogram, heart rate (HR) and blood pressure (BP). Following bivariate correlations, three-block (1: demographics, BMI; 2: tobacco, alcohol, marijuana; 3: cocaine, heroin) regression analyses were …


Substrate Profiling Of The Epigenetic Erasers Hdac1 And Lsd1, Herath Mudiyansela Gedara Kavinda Eranga Herath Jan 2021

Substrate Profiling Of The Epigenetic Erasers Hdac1 And Lsd1, Herath Mudiyansela Gedara Kavinda Eranga Herath

Wayne State University Dissertations

Regulators of chromatin structure have emerged as a key driver of transcriptional responses inside the cell. Two such groups of regulators, histone writers and erasers; the proteins, that add or remove histone post translational modifications (PTMs), have become the central players in chromatin structure. Thus, the aberrant expression of writers and erasures is a hallmark in human diseases. For example, overexpression of the erasures histone deacetylase1 (HDAC1) and lysine specific demethylase1 (LSD1) had been reported in many cancers. Currently, HDAC inhibitors have been used successfully for cancer treatment and several inhibitors targeting LSD1 are in clinical trial. To date, apart …


Developing Inhibitors Of Uchl5 Deubiquitinase In The Proteasome, Harshani Sewvandi Gurusingha Arachchige Jan 2021

Developing Inhibitors Of Uchl5 Deubiquitinase In The Proteasome, Harshani Sewvandi Gurusingha Arachchige

Wayne State University Dissertations

Ubiquitin proteasomal system (UPS) plays a vital role in maintaining protein homeostasis by eliminating misfolded and damaged proteins in a eukaryotic cell. Target proteins to be degraded are modified by poly-ubiquitination, which leads to degradation by 26S proteasome. Before entering the 20S catalytic subunit, the 19S regulatory particle is responsible for binding, unfolding, and deubiquitinating the target protein. Based on the nature of the polyubiquitin tag, removal of the ubiquitin is performed by the deubiquitinases (DUBs) associated with the proteasome.Ubiquitin carboxyl-terminal hydrolase isozyme L5 (UCHL5) is one of the three DUBs in the proteasome. UCHL5 regulates many cellular functions and …


An In Vivo Inducible Expression System To Determine Antibacterial Activity Of Peptides, Rabiul Islam Jan 2021

An In Vivo Inducible Expression System To Determine Antibacterial Activity Of Peptides, Rabiul Islam

Wayne State University Dissertations

The threat of bacterial resistance throughout the world has created tremendous challenges to clinicians. Some bacterial species have acquired resistance to not only single antibiotics, but also to multiple compounds, which is called multidrug resistance. Since the early discovery of resistance to penicillin, scientists have been developing new drugs to combat antibiotic resistance. In some cases, it took less than a decade to develop resistance to a new antibiotic. The World Health Organization (WHO) reported several deadly multi-drug-resistant bacteria, some of which cause life-threating illnesses. Each year more than 35,000 people in the United States die from antibiotic-resistant bacterial infections. …


Functional Characterization Of Threonine 49 Phosphorylation Of Cytochrome C, Antoine Khobeir Jan 2021

Functional Characterization Of Threonine 49 Phosphorylation Of Cytochrome C, Antoine Khobeir

Wayne State University Theses

Cytochrome c (Cytc) is a pivotal multifunctional mitochondrial protein that serves as a single electron carrier between complexes III and IV of the electron transport chain. It has important roles in both cellular respiration and apoptosis. The novel Thr49 (T49) phosphorylation of Cytc likely affects mitochondrial respiration, membrane potential, ROS production, ATP production, and apoptosis. Based on the functional characterization of previously mapped phosphorylation sites (Tyr97, Tyr48, Thr28, Ser47, Thr58) of the lab, we hypothesize that T49 phosphorylation will lead to controlled respiration, optimal intermediate mitochondrial membrane potential, lower ROS production, and inhibition of apoptosis compared to unphosphorylated Cytc. Here …


Mnrr1: Understanding The Role Of A Novel Mitochondrial-Nuclear Regulator, Stephanie L. Gladyck Jan 2021

Mnrr1: Understanding The Role Of A Novel Mitochondrial-Nuclear Regulator, Stephanie L. Gladyck

Wayne State University Dissertations

Mitochondria are complex organelles that generate most of the energy required to sustain life and function in metabolic and signaling pathways required to maintain cellular homeostasis. MNRR1 (mitochondrial nuclear retrograde regulator 1 or CHCHD2) is a small, bi-organellar twin CX9C protein that is emerging as an important regulator of mitochondrial function, apoptosis, and cellular stress by participating in mitochondrial-nuclear crosstalk. Our lab has previously shown that in the mitochondria, MNRR1 regulates complex IV (Cytochrome c oxidase or COX) and is able to finetune the oxidase function through phosphorylation status. We have also shown that during stress, mitochondrial MNRR1 levels deplete, …


Evaluating The Anti-Cancer Efficacy Of A Synthetic Curcumin Analog On Human Melanoma Cells And Its Interaction With Standard Chemotherapeutics, Krishan Parashar, Siddhartha Sood, Ali Mehaidli, Colin Curran, Caleb Vegh, Christopher Nguyen, Christopher Pignanelli, Jianzhang Wu, Guang Liang, Yi Wang, Siyaram Pandey Mar 2020

Evaluating The Anti-Cancer Efficacy Of A Synthetic Curcumin Analog On Human Melanoma Cells And Its Interaction With Standard Chemotherapeutics, Krishan Parashar, Siddhartha Sood, Ali Mehaidli, Colin Curran, Caleb Vegh, Christopher Nguyen, Christopher Pignanelli, Jianzhang Wu, Guang Liang, Yi Wang, Siyaram Pandey

Medical Student Research Symposium

Melanoma is the leading cause of skin-cancer related deaths in North America. Metastatic melanoma is difficult to treat and chemotherapies have limited success. Furthermore, chemotherapies lead to toxic side effects due to nonselective targeting of normal cells. Curcumin is a natural product of Curcuma longa (turmeric) and has been shown to possess anti-cancer activity. However, due to its poor bioavailability and stability, natural curcumin is not an effective cancer treatment. We tested synthetic analogs of curcumin that are more stable. One of these derivatives, Compound A, has shown significant anti-cancer efficacy in colon, leukemia, and triple-negative inflammatory breast cancer cells. …


Characterization And Assembly Of The Pseudomonas Aeruginosa Aspartate Transcarbamoylase-Pseudo Dihydroorotase Complex, Chandni Patel, Asmita Vaishnav, Brian Fp Edwards, David R. Evans Mar 2020

Characterization And Assembly Of The Pseudomonas Aeruginosa Aspartate Transcarbamoylase-Pseudo Dihydroorotase Complex, Chandni Patel, Asmita Vaishnav, Brian Fp Edwards, David R. Evans

Biochemistry and Molecular Biology Faculty Publications

Pseudomonas aeruginosa is a virulent pathogen that has become more threatening with the emergence of multidrug resistance. The aspartate transcarbamoylase (ATCase) of this organism is a dodecamer comprised of six 37 kDa catalytic chains and six 45 kDa chains homologous to dihydroorotase (pDHO). The pDHO chain is inactive but is necessary for ATCase activity. A stoichiometric mixture of the subunits associates into a dodecamer with full ATCase activity. Unlike other known ATCases, the P. aeruginosa catalytic chain does not spontaneously assemble into a trimer. Chemical-crosslinking and size-exclusion chro- matography showed that P. aeruginosa ATCase is monomeric which accounts for its …


Development And Application Of Chemical Tools To Identify Kinase-Substrate Interactions, Aparni Kithulgoda Gamage Jan 2020

Development And Application Of Chemical Tools To Identify Kinase-Substrate Interactions, Aparni Kithulgoda Gamage

Wayne State University Dissertations

Post translational modifications regulate a variety of biological processes inside the cell.Protein phosphorylation is one such PTM modification catalyzed by protein kinases, which aid to transfer a signal from one place to another inside the cell. However, irregularities in kinase-mediated signaling are often implicated in many diseases, making kinases effective drug targets. To understand kinase-related disease formation and to discover drugs to treat these diseases, it is crucial to have a clear understanding on kinase-mediated cell signaling networks. A current gap in the kinase biology field is a lack of tools to identify which kinase phosphorylates which protein substrate inside …


Variations On A Theme: Intricacies Of Unanchored Poly-Ubiquitin Signaling And Toxicity, Jessica Renee Blount-Pacheco Jan 2020

Variations On A Theme: Intricacies Of Unanchored Poly-Ubiquitin Signaling And Toxicity, Jessica Renee Blount-Pacheco

Wayne State University Dissertations

Ubiquitin is an 8.5 kDa post-translational modifier involved in essentially all eukaryotic cellular processes. Through a process called ubiquitination, ubiquitinating enzymes chemically attach ubiquitin to substrate proteins to control their fates, resulting in anything from their recruitment into signaling pathways to their proteasomal degradation, with a plethora of possibilities in between. Ubiquitin molecules can also be attached to one another, resulting in poly-ubiquitin chains with various effects depending on the number of ubiquitin molecules and the specific amino acid residues used to link them together. While most poly-ubiquitin in the cell exists as conjugated species, there are also untethered poly-ubiquitin …


Use Of Alkoxyamines To Quantify And Map Uracils And To Kill B Cell Cancers, Madusha Lakshani Watuthanthrige Perera Jan 2020

Use Of Alkoxyamines To Quantify And Map Uracils And To Kill B Cell Cancers, Madusha Lakshani Watuthanthrige Perera

Wayne State University Dissertations

Majority of B-cell lymphoma and leukemia originates in germinal centers and over express AID resulting high levels of uracils and eventually AP sites. Treating cells with a small alkoxyamine AA3 with a terminal alkyne group specifically killed B cell lymphoma cell lines without killing normal human B cells and non-hematological cancers. To study the cytotoxicity of AA3, I designed and synthesized a series of AA3 analogs with and without the alkyne group. Using cytotoxicity assays I demonstrated that the alkyne functionality plays a major role in AA3 cytotoxicity in B-cell cancers and further showed that the effectiveness is modulated by …


Computational Analysis Of Oxidative Stress In Endothelial Dysfunction: Insights On The Role Of Tetrahydrobiopterin, Ascorbate And Glutathione, Sheetal Kedar Panday Jan 2020

Computational Analysis Of Oxidative Stress In Endothelial Dysfunction: Insights On The Role Of Tetrahydrobiopterin, Ascorbate And Glutathione, Sheetal Kedar Panday

Wayne State University Dissertations

Oxidative stress and endothelial dysfunction are reported in the cardiovascular and neurovascular diseases. Oxidative stress is caused due to an increase in the generation of reactive oxygen (ROS) and nitrogen species (RNS) and incapacity of antioxidant systems to eliminate ROS and RNS. Endothelial dysfunction is characterized by a reduction in nitric oxide (NO) bioavailability. NO is constitutively produced by enzyme endothelial nitric oxide synthase (eNOS). A reduction in tetrahydrobiopterin (BH4), which is an essential cofactor of eNOS, can lead to eNOS uncoupling. There is complex interplay between the ROS/RNS and antioxidant system underlying pathophysiologies of vascular diseases, however our quantitative …


Timing And Duration Of Folate Restriction Differentially Impacts Colon Carcinogenesis., Ali M. Fardous Jan 2020

Timing And Duration Of Folate Restriction Differentially Impacts Colon Carcinogenesis., Ali M. Fardous

Wayne State University Dissertations

Colorectal cancer (CRC) constitutes a major burden on the healthcare system as the second most commonly diagnosed cancer in the developed world. Dietary folate is considered an important modulator of colorectal cancer. Folate restriction has been implicated in increasing CRC incidence by disrupting nucleotide synthesis, Impacting DNA methylation and inducing genetic instability. Our research shows that the timing and duration of dietary folate restriction can differentially impact Colorectal cancer initiation. Acclimating mice to folate restriction for 8 weeks results in a reduced number of preneoplastic lesions compared to mice placed of folate restriction for 1 week prior to initiating the …


Termination-Independent Role Of Rat1 In Cotranscriptional Splicing In Budding Yeast, Zuzer Hakimuddin Dhoondia Jan 2020

Termination-Independent Role Of Rat1 In Cotranscriptional Splicing In Budding Yeast, Zuzer Hakimuddin Dhoondia

Wayne State University Dissertations

Rat1 is a 5′→3′ exoribonuclease in budding yeast belonging to the XRN-family of nucleases. It is a highly conserved protein with homologs being present in fission yeast, flies, worms, mice and humans. Rat1 and its homolog in metazoan have been shown to function in multiple facets of RNA metabolism. In this study, we report a novel role of Rat1 in splicing of pre-mRNA in budding yeast. In the absence of the functional Rat1 in the nucleus, an increase in the level of unspliced transcripts was observed in yeast cells. Strand-specific TRO analysis revealed that the accumulation of unspliced transcripts upon …


Generation Of Neural Stem Cells (Nscs) From Human Fibroblasts Using Qq-Modified Sox2 And Neurod1 Proteins, Abdullah Ibrahim Alhomoudi Jan 2020

Generation Of Neural Stem Cells (Nscs) From Human Fibroblasts Using Qq-Modified Sox2 And Neurod1 Proteins, Abdullah Ibrahim Alhomoudi

Wayne State University Theses

The generation of induced neural stem cells (iNSCs) and induced neuronal cells (iNCs) from somatic cells provides new avenues for basic research and potential transplantation therapies for neurological diseases. However, clinical applications must consider the tumor formation capabilities of the implanted cells, the inability of iNCs to self-renew in culture, and reprogramming methods that use retroviral transduction which permanently alter genetic network of the cells. Here we report the generation of protein-induced neural stem cells (piNSCs) from human dermal fibroblasts using QQ-SON pluripotent reprogramming as a tool to quickly reset the time clock of the human somatic fibroblasts to a …