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2013

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Articles 241 - 270 of 618

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

The Effects Of Glutathione And Its Derivatives On The Survival Of Mycobacterium Bovis-Bcg Vegetative And Persistent Organisms, Neil Patel May 2013

The Effects Of Glutathione And Its Derivatives On The Survival Of Mycobacterium Bovis-Bcg Vegetative And Persistent Organisms, Neil Patel

Honors College Theses

Mycobacterium tuberculosis is responsible for nearly 2 million deaths yearly. Upon inhalation,mycobacteria are engulfed by alveolar macrophages. These cells produce reactive oxygen and nitrogen intermediates (ROI’s and RNI’s), which normally kill pathogens, but are ineffective against invading mycobacteria. What ensues, is the formation of a tubercle to sequester the infected macrophages, and the initiation of a latent tuberculosis infection, in which the mycobacteria enter a state of non-replicative persistence (NRP). Glutathione (GSH), a host tripeptide thiol-based detoxification molecule, protects host cells from ROI/RNI toxicity.Recently, it has been demonstrated that GSH is toxic to in vitro and early infection mycobacteria, but …


Amphetamine Elicits Opposing Actions On Readily Releasable And Reserve Pools For Dopamine, Dan P. Covey, Steven A. Juliano, Paul A. Garris May 2013

Amphetamine Elicits Opposing Actions On Readily Releasable And Reserve Pools For Dopamine, Dan P. Covey, Steven A. Juliano, Paul A. Garris

Faculty Publications – Biological Sciences

Amphetamine, a highly addictive drug with therapeutic efficacy, exerts paradoxical effects on the fundamental communication modes employed by dopamine neurons in modulating behavior. While amphetamine elevates tonic dopamine signaling by depleting vesicular stores and driving non-exocytotic release through reverse transport, this psychostimulant also activates phasic dopamine signaling by up-regulating vesicular dopamine release. We hypothesized that these seemingly incongruent effects arise from amphetamine depleting the reserve pool and enhancing the readily releasable pool. This novel hypothesis was tested using in vivo voltammetry and stimulus trains of varying duration to access different vesicular stores. We show that amphetamine actions are stimulus dependent …


Mechanisms Underlying The Heterogeneous Sensitivities Of Cancer Cells To Proteasome Inhibitors, Matthew C. White May 2013

Mechanisms Underlying The Heterogeneous Sensitivities Of Cancer Cells To Proteasome Inhibitors, Matthew C. White

Dissertations and Theses (Open Access)

The mechanisms underlying cellular response to proteasome inhibitors have not been clearly elucidated in solid tumor models. Evidence suggests that the ability of a cell to manage the amount of proteotoxic stress following proteasome inhibition dictates survival. In this study using the FDA-approved proteasome inhibitor bortezomib (Velcade®) in solid tumor cells, we demonstrated that perhaps the most critical response to proteasome inhibition is repression of global protein synthesis by phosphorylation of the eukaryotic initiation factor 2-α subunit (eIF2α). In a panel of 10 distinct human pancreatic cancer cells, we showed marked heterogeneity in the ability of cancer cells to induce …


Molecular Diagnosis Of Metabolic Fast Growth Related Diseases In Broiler, Adnan Ali Khalaf Al-Rubaye May 2013

Molecular Diagnosis Of Metabolic Fast Growth Related Diseases In Broiler, Adnan Ali Khalaf Al-Rubaye

Graduate Theses and Dissertations

Pulmonary Hypertension Syndrome (PHS) and lameness are important metabolic diseases that affect rapidly growing broilers. The research reported in the first section of this dissertation focused on developing qPCR assays to identify differences in the expression levels of four candidate genes possibly associated with PHS: angiotensin II type 1 receptor (AGTR1): urotensin receptor 2D (UTS2D); serotonin receptor/transporter type 2Bn (HTR2B); and angiotensinogen cleaving enzyme (ACE). Expression levels of these candidate genes were examined in four different tissues. We established ribosomal protein S14 (RPS14) and RNA polymerase subunit 2B (RP2B) as suitable reference genes because they showed the most consistent deltaCt …


Dynamics And Model Of The Pore-Forming Protein Lysenin, Eric Krueger May 2013

Dynamics And Model Of The Pore-Forming Protein Lysenin, Eric Krueger

Graduate Theses and Dissertations

Membrane transporters are a class of membrane proteins that function to provide a pathway across a cell membrane for the movement of ions and biomolecules. Investigations into the regulatory mechanism of these systems are hindered by their extensive preparation requirements compounded by their fragility and instability. However, lysenin, a pore-forming protein extracted from the earthworm Eisenia foetida, provided a unique opportunity to study a protein which is stable in both a soluble and membrane phase. Lysenin channels possess several important properties characteristic of ion channels without the inherent difficulties that plague investigations with biologically vital membrane transporters like voltage-gated ion …


Interaction Of Bacillus Anthracis Exosporium Protein Bcla With Complement Factor H And Spore Persistence In The Lung, Sarah A. Jenkins May 2013

Interaction Of Bacillus Anthracis Exosporium Protein Bcla With Complement Factor H And Spore Persistence In The Lung, Sarah A. Jenkins

Dissertations and Theses (Open Access)

Anthrax outbreaks in the United States and Europe and its potential use as a bioweapon have made Bacillus anthracis an interest of study. Anthrax infections are caused by the entry of B. anthracis spores into the host via the respiratory system, the gastrointestinal tract, cuts or wounds in the skin, and injection. Among these four forms, inhalational anthrax has the highest lethality rate and persistence of spores in the lungs of animals following pulmonary exposure has been noted for decades. However, details or mechanisms of spore persistence were not known. In this study, we investigated spore persistence in a mouse …


The Geometry And Sensitivity Of Ion-Beam Sculpted Nanopores For Single Molecule Dna Analysis, Ryan Connor Rollings May 2013

The Geometry And Sensitivity Of Ion-Beam Sculpted Nanopores For Single Molecule Dna Analysis, Ryan Connor Rollings

Graduate Theses and Dissertations

In this dissertation, the relationship between the geometry of ion-beam sculpted solid-state nanopores and their ability to analyze single DNA molecules using resistive pulse sensing is investigated. To accomplish this, the three dimensional shape of the nanopore is determined using energy filtered and tomographic transmission electron microscopy. It is shown that this information enables the prediction of the ionic current passing through a voltage biased nanopore and improves the prediction of the magnitude of current drop signals when the nanopore interacts with single DNA molecules. The dimensional stability of nanopores in solution is monitored using this information and is improved …


Characterizing The Role Of Cortactin In Actin Pedestal Assembly By Enterohemorrhagic Escherichia Coli (Ehec), Sarah E. Grout May 2013

Characterizing The Role Of Cortactin In Actin Pedestal Assembly By Enterohemorrhagic Escherichia Coli (Ehec), Sarah E. Grout

Honors Scholar Theses

Enterohemorrhagic Escherichia coli (EHEC) is a major foodborne cause of bloody diarrhea and renal failure. During colonization of the intestine, EHEC injects the transmembrane receptor protein Tir and the cytoplasmic effector protein EspFU into host cells to reorganize the actin cytoskeleton into adhesion “pedestals.” EspFU has been shown to bind and activate the actin nucleation factor N-WASP to drive actin polymerization into pedestals. However, EspFU can still assemble pedestals in cells lacking N-WASP, suggesting that this effector protein is able to also trigger N-WASP-independent pathways of actin polymerization during infection. Cortactin is an atypical nucleation factor that localizes to pedestals, …


A Cell Simulator Platform: The Cell Collective, Tomáš Helikar, B. Kowal, J. A. Rogers May 2013

A Cell Simulator Platform: The Cell Collective, Tomáš Helikar, B. Kowal, J. A. Rogers

Department of Biochemistry: Faculty Publications

Diseases are often a result of multiple malfunctions in complex, nonlinear biological/biochemical networks. As such, these processes are far more complicated to understand because they tend to give rise to functions that are emergent in nature, i.e., higher-level (mal)functions that are more than the sum of their parts. Systems biology provides a new approach to understanding biological systems and diseases from a holistic perspective.


What Can Biochemistry Students Learn About Protein Translation? Using Variation Theory To Explore The Space Of Learning Created By Some Common External Representations, Thomas J. Bussey May 2013

What Can Biochemistry Students Learn About Protein Translation? Using Variation Theory To Explore The Space Of Learning Created By Some Common External Representations, Thomas J. Bussey

UNLV Theses, Dissertations, Professional Papers, and Capstones

Biochemistry education relies heavily on students' ability to visualize abstract cellular and molecular processes, mechanisms, and components. As such, biochemistry educators often turn to external representations to provide tangible, working models from which students' internal representations (mental models) can be constructed, evaluated, and revised. However, prior research has shown that, while potentially beneficial, external representations can also lead to alternative student conceptions.

Considering the breadth of biochemical phenomena, protein translation has been identified as an essential biochemical process and can subsequently be considered a fundamental concept for biochemistry students to learn. External representations of translation range from static diagrams to …


The Role Of Oswrky71 And Its Interacting Proteins In Seed Germination And Early Growth Of Cereal Grains, Margaret Ja Shin May 2013

The Role Of Oswrky71 And Its Interacting Proteins In Seed Germination And Early Growth Of Cereal Grains, Margaret Ja Shin

UNLV Theses, Dissertations, Professional Papers, and Capstones

During seed germination and early seedling growth, complex molecular and physiological events occur in rice (Oryza sativa) and other cereal grains. As the seed transitions to vegetative tissue, it responds to both favorable and unfavorable environmental conditions and is vulnerable to attack by predation and disease. Although seeds are relatively small and tender in size, extensive and sophisticated molecular networks enables the immobile seed to grow, survive and adapt in its environment. One of the networks I am interested in is in the crosstalk between the gibberellin (GA) and abscisic acid (ABA) signaling pathways. These pathways are interesting because they …


The Phosphoramidase Competency Of Prototypical Phosphatase Catalytic Motifs, Mark P. Haney May 2013

The Phosphoramidase Competency Of Prototypical Phosphatase Catalytic Motifs, Mark P. Haney

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Phosphorylation of proteins is ubiquitous. Phosphorylation can activate proteins, deactivate proteins, assist in signaling, or serve other roles depending upon the biochemical pathway. Attaching phosphate to proteins is accomplished by enzymes called kinases; removing phosphate from proteins is accomplished by enzymes called phosphatases. Cells must regulate their biochemical pathways, and the antipodal roles of kinases and phosphatases represent the yin-yang of phosphorylation.

Phosphorylation of proteins is known to occur on serine, threonine, and tyrosine. This creates a phosphoester bond. Phosphoester bonds have a phosphorus-oxygen (P-O) bond. The ability of phosphatases to cleave such phosphoester bonds is well studied. Phosphorylation of …


Spectroscopic Investigation Of The Interaction Of Fadh In Dna Photolyase With Uv-Damaged Dna, Kyle Luke Williams May 2013

Spectroscopic Investigation Of The Interaction Of Fadh In Dna Photolyase With Uv-Damaged Dna, Kyle Luke Williams

Theses, Dissertations and Culminating Projects

Skin cancer is the most prevalent malignancy found in humans, with the diagnosis rate continuing to steadily increase. The primary cause of this disease is overexposure to harmful ultraviolet (UV) radiation from sunlight, which can induce damage to the nitrogenous bases in DNA via dimerization. The most prevalent UV-induced photoproducts in DNA are cyclobutane pyrimidine dimers (CPDs), most commonly between adjacent thymidines.

Organisms have implemented methods by which to repair these CPDs, the primary of which are nucleotide excision repair (NER) and photoreactivation by photolyases. Photolyases are blue-light activated flavoproteins that are more efficient at recognizing and repairing CPDs than …


Genome-Wide Profiling Unveils Criticial Functions Of P53 In Human Embryonic Stem Cells, Kadir C. Akdemir May 2013

Genome-Wide Profiling Unveils Criticial Functions Of P53 In Human Embryonic Stem Cells, Kadir C. Akdemir

Dissertations and Theses (Open Access)

Embryonic stem cells (ESCs) possess two unique characteristics: infinite self-renewal and the potential to differentiate into almost every cell type (pluripotency). Recently, global expression analyses of metastatic breast and lung cancers revealed an ESC-like expression program or signature, specifically for cancers that are mutant for p53 function. Surprisingly, although p53 is widely recognized as the guardian of the genome, due to its roles in cell cycle checkpoints, programmed cell death or senescence, relatively little is known about p53 functions in normal cells, especially in ESCs. My hypothesis is that p53 has specific transcription regulatory functions in human ESCs (hESCs) that …


Interaction Between Brk And Her2 In Breast Cancer, Midan Ai May 2013

Interaction Between Brk And Her2 In Breast Cancer, Midan Ai

Dissertations and Theses (Open Access)

INTERACTION BETWEEN BRK AND HER2 IN BREAST CANCER

Midan Ai, Ph.D.

Supervisory Professor: Zhen Fan, M.D.

Breast tumor kinase (Brk) is a nonreceptor protein-tyrosine kinase that is highly expressed in approximately two thirds of breast cancers but is not detectable or is expressed at very low levels in normal mammary epithelium. Brk plays important roles in promoting proliferation, survival, invasion, and metastasis of breast cancer cells, but the mechanism(s) of which remain largely unknown. Recent studies showed that Brk is frequently co-overexpressed with human epidermal growth factor receptor-2 (HER2) and is physically associated with HER2 in breast cancer. The mechanism …


Structure-Function Analysis Of Human Integrator Subunit-4, Anupama Sataluri May 2013

Structure-Function Analysis Of Human Integrator Subunit-4, Anupama Sataluri

Dissertations and Theses (Open Access)

Structure-function analysis of human Integrator subunit 4

Anupama Sataluri

Advisor: Eric. J. Wagner, Ph.D.

Uridine-rich small nuclear RNAs (U snRNA) are RNA Polymerase-II (RNAPII) transcripts that are ubiquitously expressed and are known to be essential for gene expression. snRNAs play a key role in mRNA splicing and in histone mRNA expression. Inaccurate snRNA biosynthesis can lead to diseases related to defective splicing and histone mRNA expression. Although the 3′ end formation mechanism and processing machinery of other RNAPII transcripts such as mRNA has been well studied, the mechanism of snRNA 3′ end processing has remained a mystery until the recent …


Oxidation Of Thrombomodulin Methionine 388 In Cigarette Smokers, Samrat B. Thapa May 2013

Oxidation Of Thrombomodulin Methionine 388 In Cigarette Smokers, Samrat B. Thapa

Graduate Theses and Dissertations

This work tested the hypothesis that oxidation of methionine 388 in thrombomodulin is higher in cigarette smokers, and thus a likely contributor towards the hypercoagulable state in smokers. Thrombomodulin, a protein cofactor found on endothelial cell surfaces, regulates the activity of thrombin. Thrombin bound to thrombomodulin no longer converts fibrinogen to fibrin, but instead activates Protein C which, in turn, stops the coagulation cascade by inactivation of clotting factors. The oxidation of methionine 388 of thrombomodulin has been shown in vitro to dramatically decrease the anticoagulant cofactor activity of thrombomodulin. The blood of cigarette smokers is more prone to clot …


Bio-Separation Process Improvement Via Genomic Manipulation: Development Of Novel Strains For Use In Immobilized Metal Affinity Chromatography (Imac), Ryan Curtis Haley May 2013

Bio-Separation Process Improvement Via Genomic Manipulation: Development Of Novel Strains For Use In Immobilized Metal Affinity Chromatography (Imac), Ryan Curtis Haley

Graduate Theses and Dissertations

The dissertation is comprised of three parts. Part I describes proteomic analysis of native bacterial proteins from Escherichia coli (E.coli) that bind during Immobilized Metal Affinity Chromatography (IMAC). Part II describes the value in exploiting proteome based data as a tool toward the design an E. coli expression strain that is particularly useful when Immobilized Metal Affinity Chromatography is employed as the initial capture step of a homologous protein purification process. Part III describes a methodology of chromosomal mapping of all contaminant gene products.

The objective of Part I was to identify all E. coli proteins that bind to Co(II), …


Expression, Production, And Purification Of Novel Therapeutic Proteins, Mckinzie Shea Fruchtl May 2013

Expression, Production, And Purification Of Novel Therapeutic Proteins, Mckinzie Shea Fruchtl

Graduate Theses and Dissertations

Interest in the production of recombinant proteins consisting of collagen binding domain (CBD) fused to a bioactive material has increased due to the targeting/attachment capabilities of CBD. For example, CBD fusions can be applied to the reversing of bone density loss and the repair of the eardrum, specifically, by choosing an appropriate fusion partner (parathyroid hormone or epidermal growth factor). The production of CBD fusions was examined using batch and fed-batch culturing of Escherichia coli to express the fusion proteins, and affinity chromatography to isolate the final product.

Different medium formulations, feeding strategies, and induction methods were tested in order …


Characterization Of The Product Specificity And Kinetic Mechanism Of Protein Arginine Methyltransferase 1, Shanying Gui May 2013

Characterization Of The Product Specificity And Kinetic Mechanism Of Protein Arginine Methyltransferase 1, Shanying Gui

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Protein enzymes perform a vast array of functions within living organisms, catalyzing various metabolic reactions including DNA replication, DNA repair, protein synthesis, etc. In order to maintain proper cellular functions, enzymes need to be accurately regulated under different circumstances. Specifically, enzymes can be modified after their creation to give them additional functions. These modifications can do a variety of things including activating (turning on) or inactivating (turning off) an enzyme, changing what proteins or molecules can interact with the enzyme, changing the enzyme’s location in the cell, and/or targeting the enzyme for destruction. This dissertation focuses on a single class …


Investigation Of The Oxidation/Reduction Of Prmt1, Substrate Interaction With Prmt1, And The Role Of Arginine Methylation In Rna Surveillance, Damon V. Nitzel May 2013

Investigation Of The Oxidation/Reduction Of Prmt1, Substrate Interaction With Prmt1, And The Role Of Arginine Methylation In Rna Surveillance, Damon V. Nitzel

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Enzymes are the machines of our cells. Just like machines, it takes a lot of energy to create them, and they then serve only the function they were created for. If we want to change the function of a machine, we need to modify it. Similarly, enzymes can be modified after their creation to give them additional function. These modifications can do a variety of things including activating (on) or inactivating (off) an enzyme, changing the enzyme’s location in the cell, and targeting the enzyme for destruction. This thesis focuses on a single class of enzymes, protein arginine methyltransferases (PRMTs), …


Using Rnai In C. Elegans To Demonstrate Gene Knockdown Phenotypes In The Undergraduate Biology Lab Setting, Nicole M. Roy May 2013

Using Rnai In C. Elegans To Demonstrate Gene Knockdown Phenotypes In The Undergraduate Biology Lab Setting, Nicole M. Roy

Biology Faculty Publications

RNA interference (RNAi) is a powerful technology used to knock down genes in basic research and medicine. In 2006 RNAi technology using Caenorhabditis elegans (C. elegans) was awarded the Nobel Prize in medicine and thus students graduating in the biological sciences should have experience with this technology. However, students struggle conceptually with the molecular biology behind the RNAi technology and find the technology difficult to grasp. To this end, we have provided a simple, streamlined and inexpensive RNAi procedure using C. elegans that can be adopted in upper level biology classes. By using an unknown RNAi-producing bacteria, students perform novel …


Differential Effects Of Growth Factors On Glycolysis In Ovarian Cancer Cells, Fang Yuan May 2013

Differential Effects Of Growth Factors On Glycolysis In Ovarian Cancer Cells, Fang Yuan

Theses and Dissertations

Lysophosphatidic acid (LPA), a naturally-occurring, simple phospholipid, is present at elevated levels in the blood and ascites of ovarian cancer patients. LPA is a ligand of seven cell surface G protein-coupled receptors. It has been known as an oncogenic growth factor in ovarian cancer and other types of human malignancies. However, the precise biological functions of LPA in ovarian oncogenesis remain to be fully elucidated. Our laboratory is interested in studying the potential role of LPA, as a tumor microenvironment factor, in regulation of cancer cell metabolism. A fundamental change associated with most cancer is the switch of glucose metabolism …


Effects Of Ergot Alkaloids And Bovine Bodily Fluids On Cytochrome P450 Activity, Nicholas Scott Ezell May 2013

Effects Of Ergot Alkaloids And Bovine Bodily Fluids On Cytochrome P450 Activity, Nicholas Scott Ezell

Graduate Theses and Dissertations

This thesis evaluates the PromegaTM P450-Glo assay (PromegaTM V9800) as a tool for quantifying ergot alkaloid concentration. Current techniques used for detection of ergot alkaloids are slow and expensive, do not detect all ergot alkaloids, or are not effective on bovine bodily fluids. The first study was conducted to determine effects of commercial ergot alkaloids (n = 6; 0 - 400 μM) on the PromegaTM P450-Glo assay. Cytochrome P450 (CYP450) activity in assay had a differential response to each ergot alkaloid and concentration. As concentrations of ergotamine, dihydroergotamine, ergocornine, and ergocryptine increased CYP450 activity was inhibited (P …


Evaluation Of The Tgf-Ss Inhibitor Repsox On The Expression Of Pluripotency Pathways In Murine And Bovine Cells, Davin M. Larsen May 2013

Evaluation Of The Tgf-Ss Inhibitor Repsox On The Expression Of Pluripotency Pathways In Murine And Bovine Cells, Davin M. Larsen

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Embryonic stem cells are cells which are isolated from early stage embryos and have the theoretical ability to become any adult cell type in the body. In the past few years much research has focused on the use of embryonic stem cells for clinical applications in the treatment of degenerative diseases. Consequently they are a promising tool in the treatment of diseases such as Diabetes and Parkinson’s disease, and could potentially be used in the repair of permanently damaged tissue. However, since these cells are isolated from early stage embryos their successful isolation often results in the destruction of the …


Increased Production And Extraction Efficiency Of Triacylglycerides From Microorganisms And An Enhanced Understanding Of The Pathways Involved In The Production Of Triacylglycerides And Fatty Alcohols, Robert M. Willis May 2013

Increased Production And Extraction Efficiency Of Triacylglycerides From Microorganisms And An Enhanced Understanding Of The Pathways Involved In The Production Of Triacylglycerides And Fatty Alcohols, Robert M. Willis

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

The continued increase in the demand for fossil fuels combined with their ever dwindling supply has prompted the search for a suitable alternative fuel. The research contained within this dissertation seeks to increase the lipid (fat) content of cellular feedstocks, improve extraction efficiencies of lipids, and to understand the pathways involved in the production of fatty alcohols and triacylglycerides, compounds commonly used in many industrial processes, from microbial feedstocks. This work has been done in an attempt to increase the overall economic viability of microbial biofuels production.

The production of biofuels from microalgae used as a feedstock allows for the …


Characterization And Potential Utility Of Porcine Trophoblast-Derived Stem-Like Cells, Edison A. Suasnavas May 2013

Characterization And Potential Utility Of Porcine Trophoblast-Derived Stem-Like Cells, Edison A. Suasnavas

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

In mammalian pregnancy, the placenta is a very important organ which helps to establish a healthy pregnancy. Its functions could be described in four points: 1) It allows the fetus to receive gases and nutrients from the mother in a safe way; 2) it lets the fetus get rid of waste through the mother's kidneys; 3) it releases essential pregnancy-related hormones and growth factors that let the uterus hold the fetus; 4) it secretes immune response regulators to give the fetus immune protection against the mother. Abnormalities in the placenta can be the cause of death to the fetus. Mammalian …


Nuclear Localization Of Cpi-17, A Protein Phosphatase-1 Inhibitor Protein, Affects Histone H3 Phosphorylation And Corresponds To Proliferation Of Cancer And Smooth Muscle Cells., Masumi Eto, Jason A Kirkbride, Rishika Chugh, Nana Kofi Karikari, Jee In Kim Apr 2013

Nuclear Localization Of Cpi-17, A Protein Phosphatase-1 Inhibitor Protein, Affects Histone H3 Phosphorylation And Corresponds To Proliferation Of Cancer And Smooth Muscle Cells., Masumi Eto, Jason A Kirkbride, Rishika Chugh, Nana Kofi Karikari, Jee In Kim

Department of Molecular Physiology and Biophysics Faculty Papers

CPI-17 (C-kinase-activated protein phosphatase-1 (PP1) inhibitor, 17kDa) is a cytoplasmic protein predominantly expressed in mature smooth muscle (SM) that regulates the myosin-associated PP1 holoenzyme (MLCP). Here, we show CPI-17 expression in proliferating cells, such as pancreatic cancer and hyperplastic SM cells. Immunofluorescence showed that CPI-17 was concentrated in nuclei of human pancreatic cancer (Panc1) cells. Nuclear accumulation of CPI-17 was also detected in the proliferating vascular SM cell culture and cells at neointima of rat vascular injury model. The N-terminal 21-residue tail domain of CPI-17 was necessary for the nuclear localization. Phospho-mimetic Asp-substitution of CPI-17 at Ser12 attenuated the nuclear …


Structural And Functional Characterization Of Sortase A, Vishaka Santosh Apr 2013

Structural And Functional Characterization Of Sortase A, Vishaka Santosh

Theses and Dissertations

Sortases have been known to be essential in Gram-positive bacteria for attaching proteins onto the peptidoglycan layer of the bacterium. Sortase A has been found to be useful as a “molecular stapler”, although; in vivo, the enzyme is responsible for attaching proteins to the peptidoglycan layer of Gram-positive bacteria. It accomplishes both of these tasks by joining two proteins together via an LPXTG sorting sequence. The enzyme has been proven to be very useful in attaching any two proteins together without worrying about recombinant techniques to generate the fusion protein. The problem with this enzyme is that the catalytic diad, …


The Activation, Receptor Complexing And Endogenous Regulation Of The Type-I Interferon Response As It Pertains To Innate Immunity, James D. Marion Jr. Apr 2013

The Activation, Receptor Complexing And Endogenous Regulation Of The Type-I Interferon Response As It Pertains To Innate Immunity, James D. Marion Jr.

Theses and Dissertations

To defend against pathogen challenge, multi-cellular organisms mount an immune response that recognizes, sequesters and eradicates invading infectious agents. Critical to this safeguard is the receptor-mediated detection of pathogens. Pathogen recognition then initiates a variety of signaling cascades that lead to the modulation of genes orchestrating an immune response. Toll-like receptor 3 (TLR3), a transmembrane receptor found in endosomes, is vital to the innate immune response against viruses. Double-stranded RNA (dsRNA) stimulation of TLR3 initiates a signaling cascade that leads to the production of type-I interferons and proinflammatory cytokines necessary to trigger the protective defenses of the immune system. Critical …