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Articles 4021 - 4050 of 6988

Full-Text Articles in Biochemistry

Reverse Gyrase Is Not Necessary For Survival Of Hyperthermophilic Archaeon Pyrococcus Furiosus, Farshid Taghizadeh, Michael S. Bartlett May 2015

Reverse Gyrase Is Not Necessary For Survival Of Hyperthermophilic Archaeon Pyrococcus Furiosus, Farshid Taghizadeh, Michael S. Bartlett

Student Research Symposium

Reverse gyrase is the only known topoisomerase enzyme with positive supercoiling activity on covalently-closed DNA. This positive supercoiling is required to prevent DNA from denaturation at high temperatures. The gene that codes for this protein is present in all hyperthermophiles and absent from all mesophilic and thermophilic genomes, suggesting that this enzyme is the only hyperthermophile-specific protein. To investigate if this protein is vital for the cells, we knocked out its gene from the genome of living organism Pyrococcus furiosus. Pyrococcus furiosus is a hyperthermophilic archaeon that grows between 70°C to 103°C with an optimum growth temperature of 100°C. …


Probing Buffer-Specific Effects On Nucleotide Binding To Reca Using Difference Fourier Transform Infrared Spectroscopy, Joshua E. Temple May 2015

Probing Buffer-Specific Effects On Nucleotide Binding To Reca Using Difference Fourier Transform Infrared Spectroscopy, Joshua E. Temple

Senior Honors Projects, 2010-2019

The Escherichia coli protein RecA catalyzes the strand exchange reaction used in DNA repair and genetic recombination. RecA is also a target for inhibiting microbial antibiotic resistance, understanding cancer propagation, and characterizing neurodegenerative disorders. Therefore, understanding factors that affect RecA structure and stability is broadly applicable to many fields. Previous studies in our lab have shown buffer-specific changes in RecA stability and unfolding transitions. These studies suggest only minimal buffer-dependent changes in nucleotide binding and secondary structure but do not explain the significant differences in RecA stability and unfolding profiles. Here we have employed various biochemical and spectroscopic techniques to …


Structural Elucidation Of Aggr-Activated Regulator, Aar, In Enteroaggregative Escherichia Coli, Andrew Heindel May 2015

Structural Elucidation Of Aggr-Activated Regulator, Aar, In Enteroaggregative Escherichia Coli, Andrew Heindel

Senior Honors Projects, 2010-2019

Travelers’ Diarrhea is the number one cause of childhood death in the world. Enteroaggregative Escherichia coli (EAEC) is one of the main causes of this disease. EAEC adhere to the surface of the intestine and stack in a brick-like pattern. Via an unstudied quorum-sensing mechanism, these bacteria express a variety of virulence factors that lead to diarrhea. The long-term goal of this research is to elucidate the mechanism by which EAEC changes from benign to virulent. A previously-unstudied open-reading frame in EAEC, AggR activated repressor (Aar), has recently been hypothesized to act as one of the major transcription factors influencing …


Biophysical Characterization Of Naturally Occurring Titin M10 Mutations, Michael William Rudloff May 2015

Biophysical Characterization Of Naturally Occurring Titin M10 Mutations, Michael William Rudloff

Senior Honors Projects, 2010-2019

The giant human muscle proteins titin and obscurin are important for sarcomeric organization, stretch response, and sarcomerogenesis in myofibrils. The extreme C-terminus of titin (the M10 domain) binds to the N-terminus of obscurin (the Ig1 domain) in the M-line, an interaction that is critical for sarcomere stability. The high-resolution structure of human M10 has been solved, along with M10 bound to one of its two known molecular targets, the Ig1 domain of obscurin-like protein. Multiple M10 mutations are linked to limb-girdle muscular dystrophy type 2J (LGMD2J) and tibial muscular dystrophy (TMD), however the effect of the M10 mutations on protein …


An Improved 96-Well Turbidity Assay For T4 Lysozyme Activity, Tasha B. Toro, Thao P. Nguyen, Terry J. Watt May 2015

An Improved 96-Well Turbidity Assay For T4 Lysozyme Activity, Tasha B. Toro, Thao P. Nguyen, Terry J. Watt

Faculty and Staff Publications

T4 lysozyme (T4L) is an important model system for investigating the relationship between protein structure and function. Despite being extensively studied, a reliable, quantitative activity assay for T4L has not been developed. Here, we present an improved T4L turbidity assay as well as an affinity-based T4L expression and purification protocol. This assay is designed for 96-well format and utilizes conditions amenable for both T4L and other lysozymes. This protocol enables easy, efficient, and quantitative characterization of T4L variants and allows comparison between different lysozymes. Our method: •Is applicable for all lysozymes, with enhanced sensitivity for T4 lysozyme compared to other …


Biofilm-Related Materials As Total N-Nitrosamine (Tono) Precursors And Hydroxylamine-Based Interferences In Tono And N-Nitrosodimethylamine (Ndma) Measurements, David Allen Meints May 2015

Biofilm-Related Materials As Total N-Nitrosamine (Tono) Precursors And Hydroxylamine-Based Interferences In Tono And N-Nitrosodimethylamine (Ndma) Measurements, David Allen Meints

Graduate Theses and Dissertations

In this study, a chemiluminescence-based total N-nitrosamine (TONO) assay was adapted to include a solid-phase extraction (SPE) step to assess the role of biologically derived materials as N-nitrosamine precursors. Methanol was determined to be a suitable solvent for the SPE-TONO assay, with N-nitrosodimethylamine (NDMA) losses estimated to be 30% by SPE alone and an additional 15% from concentration of the methanol extracts by N2-gas blowdown. Three biofilm-derived materials - poly-N-acetylglucosamine (PNAG), Pseudomonas aeruginosa, and tryptophan - were individually chloraminated and dose-response relationships were observed with the SPE-TONO assay, indicating biofilm are potential N-nitrosamine precursors. The role of hydroxylamine - a …


Scale Up Isolation Of Aaptamine For In Vivo Evaluation Indicates Its Neurobiological Activity Is Linked To The Delta Opioid Receptor, Eptisam Lambu, Nicole L. Mcintosh, Madeline Ferwerda, Allison Coker, Laura Millan-Lobo, Nicholas Lorig-Roach, Phillip Crews, Jennifer L. Whistler May 2015

Scale Up Isolation Of Aaptamine For In Vivo Evaluation Indicates Its Neurobiological Activity Is Linked To The Delta Opioid Receptor, Eptisam Lambu, Nicole L. Mcintosh, Madeline Ferwerda, Allison Coker, Laura Millan-Lobo, Nicholas Lorig-Roach, Phillip Crews, Jennifer L. Whistler

Student Research Posters

Opioid receptors belong to the large superfamily of seven transmembrane-spanning (7TM) G protein-coupled receptors (GPCRs). As a class, GPCRs are of fundamental physiological importance mediating the actions of the majority of known neurotransmitters and hormones. The Mu (µ), Delta (δ) and Kappa (MOR, DOR, KOR) opioid receptors are particularly intriguing members of this receptor family as they are the targets involved in many neurobiological diseases such as addiction, pain, stress, anxiety, and depression. To date few marine natural products have been investigated for their neurobiological activities.1 One noteworthy example involves ziconotide (1) from the cone snail Conus magnus.2 Compound 1 …


Venom Peptide Induced Inhibition Of Escherichia Coli Atp Synthase, Sofiya Azim May 2015

Venom Peptide Induced Inhibition Of Escherichia Coli Atp Synthase, Sofiya Azim

Undergraduate Honors Theses

ATP is the main cellular energy generated by the enzyme ATP synthase in almost all organisms from bacteria to vertebrates. While malfunction of the ATP synthase complex is responsible for several disease conditions, the enzyme itself can be used as a potent molecular drug target to combat many diseases including microbial infections, cancer, tuberculosis, and obesity. Recent widespread escalation of antibiotic resistant microbes in general and E. coli in particular demands novel alternative approaches to combat microbial infections. Inhibition of ATP synthase by inhibitors such as peptides is known to deprive microbes of required energy, resulting in microbial cell death. …


Design Of Antimicrobial Peptide Based On The Heparin Binding Segment Of Fgf-1, Alice Margaret Power May 2015

Design Of Antimicrobial Peptide Based On The Heparin Binding Segment Of Fgf-1, Alice Margaret Power

Chemistry & Biochemistry Undergraduate Honors Theses

Fibroblast Growth Factors (FGFs) are heparin-binding proteins known for their involvement in various biological processes such as cell differentiation and wound healing.1 The heparin binding site of FGF-1 displays a unique stretch of positive amino acid sequence and facilitates a very strong binding to negatively charged heparin due to the formation of electrostatic interaction. The aim of this study is to analyze and modify the novel antimicrobial peptide sequence (GST-HB) designed based on the heparin-binding region of FGF-1 as well as other polycationic microbial sequences. These aspects will be examined using various experimental techniques including overexpression of GST-HB, purification using …


Additional Sex Combs-Like 2 (Asxl2): A Psychological Stress-Related Gene In A Chicken Stress Model, Emily Sandra Jacobson May 2015

Additional Sex Combs-Like 2 (Asxl2): A Psychological Stress-Related Gene In A Chicken Stress Model, Emily Sandra Jacobson

Chemistry & Biochemistry Undergraduate Honors Theses

Chronic stress is a problem not only in terms of its psychological effects but also due to the harmful physiological changes induced in the individual. Although chronic stress is recognized as detrimental and rampant throughout society, the stress system itself remains poorly understood in terms of comprehending which genes are involved in regulating and carrying out stress-induced signals. In a previous study, 57 candidate genes in the stress pathway had been identified based on the presence of stress-associated single nucleotide polymorphisms (SNPs) and differential expression from microarray data. The objective of this study was to investigate Additional Sex Combs-Like 2 …


Devlopment Toward Fluorescence Imaging Of Microdialysis Sampling Diffusion Profiles, Nicholas Edward Baioni May 2015

Devlopment Toward Fluorescence Imaging Of Microdialysis Sampling Diffusion Profiles, Nicholas Edward Baioni

Chemistry & Biochemistry Undergraduate Honors Theses

Microdialysis is a diffusion-based method used to collect analytes from specific locations in the body. Matrix Metalloproteinases (MMPs) are important enzymes located throughout the body that play a role in the breakdown of extracellular matrix. Microdialysis sampling in conjunction with appropriate analysis methods can be used to observe the reactions of MMPs in real time. This project is aimed at determining the activity of porcine pancreatic enzyme, a known substitute for MMP-12, using nanodrop spectroscopy. This is a necessary pre-requisite toward using microdialysis in an in vivo imaging setup. These experiments were performed using Succinyl(Ala)_3-p-nitroanilide (suc(Ala)3-p-NA), 4-nitroaniline, and porcine pancreatic …


Molecular Mechanisms Of Tandem Cbd Of Clostridium Histolyticum, Dawn Weir May 2015

Molecular Mechanisms Of Tandem Cbd Of Clostridium Histolyticum, Dawn Weir

Chemistry & Biochemistry Undergraduate Honors Theses

In order to spread infections, bacterial collagenases methodically unravel collagen fibril in tissues. Collagen is the most abundant protein in the body, and can be found in the skin, bone and cartilage [1]. Two collagenases, ColG and ColH, synergistically dismantle collagen fibrils by seeking different weak links in the collagen structure. The collagen-binding domain (CBD) of these collagenases binds to most vulnerable regions in collagen [8]. Without CBDs, collagen fibril cannot be degraded. Cells express collagen receptors in order to anchor themselves, which is a critical step in cell proliferation. Binding sites for some collagen receptors, such as integrin and …


Efforts In Increasing Microdialysis Recovery Rates By Utilizing Bidirectional Flow Capabilites, Jacob Taylor Needham May 2015

Efforts In Increasing Microdialysis Recovery Rates By Utilizing Bidirectional Flow Capabilites, Jacob Taylor Needham

Chemistry & Biochemistry Undergraduate Honors Theses

Microdialysis sampling involves the collection of biological fluids from tissues or fluid-filled cavities in vivo via diffusion through a semipermeable membrane probe. In order to increase the recovery of fluids for analysis from this process, a new regime was attempted that would allow perfusion fluids to make multiple passes through the probe in order to collect more analyte with each additional pass. This was dubbed the Bidirectional Flow Technique. Dextran-70 solution was used as the perfusion fluid while 100μM Methyl Orange solution was used as the analyte. The experiments were performed in vitro using a fully automated microdialysis ePump capable …


Chymotrypsin Digestion Analysis To Characterize Site-Specific Incorporation Of An Extrinsic Fluorescent Probe On A Ras-Related Protein., Akash D. Patel May 2015

Chymotrypsin Digestion Analysis To Characterize Site-Specific Incorporation Of An Extrinsic Fluorescent Probe On A Ras-Related Protein., Akash D. Patel

Chemistry & Biochemistry Undergraduate Honors Theses

Ras Homolog Enriched in Brain (RHEB) is a member of Ras GTPase family and plays an important role in regulation of cell growth and cell cycle proliferation. RHEB is regulated by cycling between active (GTP-bound) and inactive (GDP-bound) state. Guanidine Nucleotide Exchange Factors (GEFs) and GTPase-activationg proteins (GAPs) are the key regulators of RHEB, and it is of interest to closely study their interactions with RHEB. Towards that end, this project was designed to label RHEB with an environmentally sensitive extrinsic fluorophore, succinimidyl 6-(N-(7-nitrobenz-2-oxa-1.3-diazol-4-yl)amino)hexanoate (sNBD), to be used to monitor RHEB-protein interactions. Due to its extreme sensitivity to the surrounding …


Influence Of A Potentially Destabilizing Central Tryptophan On Transmembrane Helix Domains, Vasupradha Suresh Kumar May 2015

Influence Of A Potentially Destabilizing Central Tryptophan On Transmembrane Helix Domains, Vasupradha Suresh Kumar

Chemistry & Biochemistry Undergraduate Honors Theses

The vital role that membrane proteins play in cell mechanisms and the inner workings of disease in our bodies has been universally accepted. Thus, the study of protein-membrane and transmembrane interactions has become increasingly significant in understanding these membrane proteins. Synthetic model peptides, such as GWALP23 (acetyl-GGALW5LALALALALALALW19LAGA-amide)—designed at the University of Arkansas and composed of the amino acid residues of glycine (G), alanine (A), leucine (L) and tryptophan (W) —provide a favorable “host” framework for investigations of the influence of chosen “guest” amino acids. For example, it is of interest to know the consequences of having a third, centrally located, …


Percent Recovery Of Various Analytes Using A Wick Method, Patrick A. Naeger May 2015

Percent Recovery Of Various Analytes Using A Wick Method, Patrick A. Naeger

Chemistry & Biochemistry Undergraduate Honors Theses

Finding alternate methods to measure and isolate interstitial fluid in vivo has become a consequence of the limited recovery of analytes when using a probe.1 These probes consist of an inlet constantly bringing perfusate into a semi-permeable membrane where the perfusate is replace with dialysate containing numerous analytes. The dialysate leaves the semi-permeable membrane via an outlet. A wick technique has been shown to be useful in analytical chemistry because it can be used to effectively isolate interstitial fluid and accurately measure the concentrations of various analytes. For long-term applications, wicks can be used to measure the concentrations of cytokines …


The Use Of Shape Memory Polymers As A Tool To Study Human Fibrosarcoma And Murine Mesenchymal Stem Cell Migration, Justin N. Elkhechen May 2015

The Use Of Shape Memory Polymers As A Tool To Study Human Fibrosarcoma And Murine Mesenchymal Stem Cell Migration, Justin N. Elkhechen

Renée Crown University Honors Thesis Projects - All

Shape memory polymers (SMPs) are a class of “smart” materials that can transform between two distinct conformations through external stimuli, such as heat or electricity. Their usage in bioengineering has led to a promising field of research that lies at the interface of cell and mechanobiology, potentially providing insight into cancer therapies and tissue development—two processes that exist in dynamic environments in vivo. The present work involves creating new, shape changing, scaffolds for studies to analyze cell migration upon changes to the environmental topography. Specifically, this Capstone has been primarily focused on the development of a “half and half” fibrous …


The Effect Of High Terperature On Mating: Developmental Buffering Of S. Cerevisiae To The Environment, Sarah Hosie May 2015

The Effect Of High Terperature On Mating: Developmental Buffering Of S. Cerevisiae To The Environment, Sarah Hosie

Renée Crown University Honors Thesis Projects - All

In Saccharomyces cerevisiae, cellular polarization is an essential structural and functional aspect of growth and development. It is responsible for yielding and maintaining cellular asymmetry, and allows for cells to function. Mating in S. cerevisiae is a process that incorporates cell-to-cell signaling, signal transduction, cellular polarization, plasmogamy, karyogamy, and many other cellular processes. Each of these steps is mediated by a myriad of signaling proteins that are involved in a signaling cascade that is regulated by both extracellular and intracellular signals. Much is known about the mating process and pathway in S. cerevisiae. However, this project aimed to …


Overexpression And Gene Profiling Of Asparagine Synthetase In Hybrid Poplar, Kristopher Murray May 2015

Overexpression And Gene Profiling Of Asparagine Synthetase In Hybrid Poplar, Kristopher Murray

Renée Crown University Honors Thesis Projects - All

Plants with polysaccharide-rich secondary cell walls have great potential as a source of carbohydrates for bioethanol production. However, the presence of phenolic lignin inhibits the isolation of bioethanol precursors cellulose and hemicellulose from the secondary cell wall. Recent studies have linked nitrogen availability to secondary cell wall development and composition, making nitrogen metabolism genes an interesting target in the improvement of plant cell walls for biofuels production. Plants use a nitrogen assimilation pathway to convert inorganic nitrogen sources into organic sources, included amino acids, which play key roles in metabolism and cell wall development. Asparagine synthetase (AS), a key enzyme …


Characterization Of Ghrelin O-Acyltransferase Active Site, Leslie Patton May 2015

Characterization Of Ghrelin O-Acyltransferase Active Site, Leslie Patton

Renée Crown University Honors Thesis Projects - All

Ghrelin, first discovered in 1999, is a 28-amino acid peptide hormone involved in the regulation of appetite, insulin secretion and sensitivity, and many neurological effects such as learning, memory, and depression.1-6 Ghrelin has been identified to have a unique posttranslational octanoylation carried out by the enzyme ghrelin O-acyltransferase (GOAT). This distinctive modification is a point of interest in studying GOAT whereby blocking the acylation of the ghrelin could potentially halt the activity of the peptide hormone and provide a means of treating obesity, diabetes, and other diseases affected by ghrelin levels. The duration of my project involved working …


Developing Graphene-Based Supercapacitors For High Temperature Applications, Lea Rachel Rogers May 2015

Developing Graphene-Based Supercapacitors For High Temperature Applications, Lea Rachel Rogers

Chemistry & Biochemistry Undergraduate Honors Theses

Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures, long cycle-lives, high power densities of up to 13,000 W/kg, and fast rates of charge-discharge thereby having a high specific capacitance. This research reports synthesis of grapheme-based materials using a modified Hummer’s method. Graphene oxide synthesized first and then converted to reduced graphene oxide sheets and graphene-powder, which both increase the ionic conductivity due to sp2 bonding and a high surface area. These materials were then constructed into a button-cell supercapacitor for testing. For the first supercapacitors, a porous polypropylene membrane (Celgard) that acted as …


The Development Of Skeletal Muscle In Young Horses: An Ultrasonography And Satellite Cell Approach, Emma K. Lavigne May 2015

The Development Of Skeletal Muscle In Young Horses: An Ultrasonography And Satellite Cell Approach, Emma K. Lavigne

Honors Scholar Theses

Muscle growth in young horses is characterized by an increase in muscle cross-sectional area, which can be accomplished through the activation and differentiation of satellite cells. Satellite cells can be stimulated or inhibited in response to different cytokines and growth factors and are key mediators of muscle hypertrophy and regeneration. The aim of this study was to investigate the growth of the longissimus dorsi (LD) muscle in horses under 5 years of age and to obtain preliminary data on satellite cell behavior in foals. The area, width, height, and subcutaneous fat were measured using ultrasonography at 6-month increments over the …


Dlipin-A Link Between Lipid Metabolism, Glucose Homeostasis And Growth In Drosophila Melanogaster, Sandra Schmitt May 2015

Dlipin-A Link Between Lipid Metabolism, Glucose Homeostasis And Growth In Drosophila Melanogaster, Sandra Schmitt

Graduate Theses and Dissertations

Lipins are a family of highly conserved proteins found from yeasts to humans. Lipins have dual functions, serving as phosphatidate phosphatase enzymes (PAP) in the synthesis of neutral fats (triacylglycerols, TAG) and as transcriptional co-regulators that affect the expression of genes involved in lipid and fatty acid metabolism. Thus, they play central roles in metabolic control. Disruption of Lipin function has been implicated in lipodystrophy, obesity and insulin resistance. Using dLipin, the Drosophila homolog of Lipin, as a model, I aimed to elucidate the relationship between the two biochemical functions of Lipin and metabolic homeostasis. I discovered there is a …


Granulins As Inflammatory Mediators In Alzheimer Disease, Randi G. Reed May 2015

Granulins As Inflammatory Mediators In Alzheimer Disease, Randi G. Reed

Honors Theses

Alzheimer disease (AD) is a neurodegenerative disorder characterized by severe memory deficit and cognitive decline among the elderly. This degeneration is caused by the aggregation and deposition of a protein called amyloid-β (Aβ) in the brain. Aggregation of Aβ causes neuroinflammation in addition to other toxic events. However, it is unclear whether inflammation from an external source, such as from a traumatic brain injury (TBI), could trigger Aβ aggregation. In this context, several pro-inflammatory mediators such as cytokines and chemokines have been suspects. It is now hypothesized that a group of proteins called granulins (Grns) are unique inflammatory mediators that …


Role Of C-Kit In The Growth, Migration And Differentiation Of Human Cardiac Progenitor Cells., Bathri Narayan Vajravelu May 2015

Role Of C-Kit In The Growth, Migration And Differentiation Of Human Cardiac Progenitor Cells., Bathri Narayan Vajravelu

Electronic Theses and Dissertations

The belief that adult mammalian heart lacks regenerative potential was challenged by the identification of c-kit positive cardiac progenitor cells (CPCs) in the heart. A recent phase I clinical trial (SCIPIO), has shown that autologous c-kit positive CPCs improve cardiac function and quality of life when transplanted into ischemic heart disease patients. c-Kit is a type III receptor tyrosine kinase and a common stem cell antigen. Stem cell factor (SCF) is the only known ligand for c-kit. Although c-kit is extensively used as an invariable marker of resident CPCs and shown to be important in the context of different cell …


Assessment Of Variation In Susceptibility Of The Fall Armyworm, Spodoptera Frugiperda (J.E. Smith) (Lepidoptera: Noctuidae), To Bacillus Thuringiensis Toxins, Karen Ferreira Da Silva May 2015

Assessment Of Variation In Susceptibility Of The Fall Armyworm, Spodoptera Frugiperda (J.E. Smith) (Lepidoptera: Noctuidae), To Bacillus Thuringiensis Toxins, Karen Ferreira Da Silva

Department of Entomology: Dissertations, Theses, and Student Research

The fall armyworm, Spodoptera frugiperda, is a polyphagous insect pest affecting multiple crops. Fall armyworm is managed with insecticides and corn hybrids expressing insecticidal proteins derived from Bacillus thuringiensis. The early detection of insect resistance is important for making appropriate management decisions informs IPM and IRM recommendations.

The objective of the first study was to establish baseline susceptibility of fall armyworm populations to the Cry1F Bt insecticidal protein, emphasizing collections from locations where fall armyworm overwinters in the U.S. Fall armyworm neonates were exposed to artificial diet treated with increasing Cry1F concentrations, and mortality and growth inhibition were …


Investigations Into The Molecular Mechanisms Of Bacterial Pathogen–Host Interactions: Construction Of A Dual Plasmid System For Incorporation Of Unnatural Amino Acids Into Pseudomonas Syringae Pv. Tomato Dc3000, Scotty D. Raber May 2015

Investigations Into The Molecular Mechanisms Of Bacterial Pathogen–Host Interactions: Construction Of A Dual Plasmid System For Incorporation Of Unnatural Amino Acids Into Pseudomonas Syringae Pv. Tomato Dc3000, Scotty D. Raber

Department of Chemistry: Dissertations, Theses, and Student Research

A dual plasmid system for the incorporation of unnatural amino acids into plant pathogen, Pseudomonas syringae pv. tomato DC3000, has been designed. This invention is expected to allow (a) mutations of proteins synthesized by the bacterium, P. syringae pv. tomato DC3000, that can capture molecular targets, especially for such modified proteins secreted by the phytopathogen into the host plant cells of A. thaliana and S. lycopersicum, (b) expression of biological probes in the bacterial species to monitor changes in redox, nutritional, and other small molecule states over pre-, post- and in situ disease stages, and secretion of such biological …


Dna Polymerase Θ (Polq) And The Cellular Defense Against Dna Damage, Matthew J. Yousefzadeh May 2015

Dna Polymerase Θ (Polq) And The Cellular Defense Against Dna Damage, Matthew J. Yousefzadeh

Dissertations and Theses (Open Access)

In mammalian cells, DNA polymerase θ (POLQ) is an unusual specialized DNA polymerase whose in vivo function is under active investigation. The protein is comprised of an N-terminal helicase-like domain, a C-terminal DNA polymerase domain, and a large central domain that spans between the two. This arrangement is also found in the Drosophila Mus308 protein, which helps confer resistance to DNA interstrand crosslinking agents. Homologs of POLQ and Mus308 are found in eukaryotes, including plants, but a comparison of phenotypes suggests that not all of these genes are functional orthologs. Flies with defective Mus308 are sensitive to DNA interstrand crosslinking …


Selection Methods For Genetically-Modified T Cells: In Support Of Translational Therapy, David Rushworth May 2015

Selection Methods For Genetically-Modified T Cells: In Support Of Translational Therapy, David Rushworth

Dissertations and Theses (Open Access)

T cells are blood cells which organize the immune system of the host. These cells are necessary for the host to respond appropriately to threats from foreign organisms and cancerous growth. However, in the case of certain infections and cancer, T cells are unable to respond appropriately to a threat and establish immunity. This leads to disease when the infection or cancer is not sufficiently eliminated. On the other hand, T cells can lack tolerance for healthy tissue and perceive healthy tissue as infected. The ensuing over-reactive immune response also leads to disease. A delicate balance must exist between immunity …


Regulation Of Cell Adhesion By The Ferm Proteins, Ptpn14 And Merlin, Patty Dimarco Hewitt May 2015

Regulation Of Cell Adhesion By The Ferm Proteins, Ptpn14 And Merlin, Patty Dimarco Hewitt

Dissertations and Theses (Open Access)

Cell-cell adhesion is critical for the control of tissue organization and homeostasis. A family of proteins that regulate cell-cell adhesions is the FERM (4.1 protein, Ezrin, Radixin, Moesin) domain-containing proteins.One FERM domain protein, the non-receptor tyrosine phosphatase PTPN14, is mutated or deleted in several human cancers suggesting that it may be involved in tumor development and/or progression. Additionally, the loss of the FERM domain protein Merlin is associated with tumor development and metastasis.Both PTPN14 and Merlin have been shown to localize and possibly regulate adherens junction (AJ) functions. This work sought to determine if …