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Articles 10981 - 11010 of 13717

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

Conformational Motion Associated With Catalysis In Indole-3-Glycerol Phosphate Synthase From S. Solfataricus, Tomasz Kurcon May 2010

Conformational Motion Associated With Catalysis In Indole-3-Glycerol Phosphate Synthase From S. Solfataricus, Tomasz Kurcon

Theses, Dissertations and Culminating Projects

Indole-3-glycerol phosphate synthase from Sulfolobus solfataricus (SsIGPS) belongs to a broad family of (βα)8-barrel enzymes. It catalyzes the fifth step in tryptophan biosynthesis, converting l-(o-carboxylphenylamino)-l-deoxyribulose-5-phosphate (CdRP) to indole-3-glycerol phosphate (IGP). Site selective mutagenesis was used to introduce a single cysteine in two loops near the active site, generating two recombinant proteins, each containing a single cysteine handle. The two construct were labeled, each with two different thiol-reactive probes generating four labeled constructs that were used for this study. Steady-state kinetic parameters of the labeled mutants and the wild type SsIGPS were well characterized using fluorescence spectroscopy. Subsequent experiments …


A Novel Filarial Parasite (B. Malayi) Stress-Activated Protein Kinase As A Potential Drug Target, Akruti Patel May 2010

A Novel Filarial Parasite (B. Malayi) Stress-Activated Protein Kinase As A Potential Drug Target, Akruti Patel

Theses, Dissertations and Culminating Projects

Lymphatic filariasis (or elephantiasis) is a major neglected disease with an estimated 120 million individuals infected and approximately 1.5 billion at risk in endemic regions. It is a highly disfiguring and debilitating disease and one of the major causes of global morbidity. Treatment options for this disease are few and new drug targets and therapies need to be identified. We have identified a protein kinase ortholog of human p38 mitogen-activated protein kinase (p38) expressed in the filarial parasite, Brugia malayi (B. malayi), one of three causative agent of lymphatic filariasis. We hypothesize that this protein kinase, BmMPKl, is important for …


Investigation Of Near-Infrared Fluorescence And Photobleaching Of Human Volar Side Fingertips In Vivo: Antioxidants And Melanin, Colin Wright May 2010

Investigation Of Near-Infrared Fluorescence And Photobleaching Of Human Volar Side Fingertips In Vivo: Antioxidants And Melanin, Colin Wright

Renée Crown University Honors Thesis Projects - All

Noninvasive in vivo blood glucose determination in the skin of volar side of human fingertips by near-infrared (NIR) Raman spectroscopy relies on fluorescence to quantify blood volume. Fluorescence does not only come from blood, which is composed of plasma and red blood cells; in fact, most fluorescence produced by human fingertips originates in the static tissues, e.g. skin, interstitial fluid, etc.. It will soon be possible to quantify the precise contributions of red blood cells, plasma, and static tissue to the overall fluorescence emission. Observations reveal a systematic decay in fluorescence, which, if not caused by blood movement, challenges our …


The Role Of Cuticular Hydrocarbons In The Pre-Mating Isolation Of Two Pissodes Species, Stephanie L. Teale May 2010

The Role Of Cuticular Hydrocarbons In The Pre-Mating Isolation Of Two Pissodes Species, Stephanie L. Teale

Renée Crown University Honors Thesis Projects - All

Pissodes strobi and P. nemorensis are weevils (Coleoptera, Curculionidae) that infest pines (Pinus spp.) and spruces (Picea spp.). Previous studies indicate that they are able to hybridize. In the spring, breeding site specificity maintains reproductive isolation, but in the late summer, both species occupy lateral branches of host trees. Aggregation pheromones for P. nemorensis have been identified but the mechanism for late summer isolation is unknown. Cuticular hydrocarbons have been shown to play a role in the chemical recognition of species, sex, kin, and caste in many groups of insects. The large number of possible compounds and the …


Mtor In Cell Signaling And Size Enlargement As A Target For The Chemico-Physical Therapy Of Cancer, Gabriela Krawiec May 2010

Mtor In Cell Signaling And Size Enlargement As A Target For The Chemico-Physical Therapy Of Cancer, Gabriela Krawiec

Renée Crown University Honors Thesis Projects - All

mTOR is a kinase protein meaning it phosphorylates target proteins affecting their cell signaling properties1. The drug Rapamycin, analogs of Rapamycin, and cell signaling proteins that interact with mTOR control the activities mediated by mTOR1. mTOR is located in the cytoplasm at a convergent point of many signaling pathways that regulate a multiplicity of cellular processes including metabolism that precede cell enlargement (cell “growth”), cell proliferation (cell division), and angiogenesis1,2. Cells with mTOR inappropriately activated can proceed with cell enlargement and cell proliferation in the absence of normal cell signaling2. Rapamycin and …


The Effect Of Exogenous Estrogens On Primordial Follicle Assembly In Vivo, Jenna Rose Karavan May 2010

The Effect Of Exogenous Estrogens On Primordial Follicle Assembly In Vivo, Jenna Rose Karavan

Renée Crown University Honors Thesis Projects - All

During embryogenesis in the mouse, primordial germ cells develop, move to the genital ridge of the embryo, and form germline cysts as the ovary develops. The cells in these cysts are linked by intercellular bridges. The cysts then undergo a breakdown process which ultimately results in primordial follicles, each of which consists of a single oocyte surrounded by somatic cells called granulosa cells. During this cyst breakdown process, approximately one-third of the original oocytes become enclosed in primordial follicles, the amount of which is representative of the number of eggs a female will have available to her during her reproductive …


Dna Polymerases: Perfect Enzymes For An Imperfect World, Anthony J. Berdis May 2010

Dna Polymerases: Perfect Enzymes For An Imperfect World, Anthony J. Berdis

Chemistry Faculty Publications

This Special Thematic Issue explores the molecular properties of DNA polymerases as extraordinary biological catalysts. In this short introductory chapter, I briefly highlight some of the most important concepts from the articles contained within this Special Issue. The contents of this Special Issue are arranged into distinct sub-categories corresponding to mechanistic studies of faithful DNA polymerization, studies of "specialized" DNA polymerases that function on damaged DNA, and DNA polymerases that are of therapeutic importance against various diseases. Emphasis is placed on understanding the dynamic cellular roles and biochemical functions of DNA polymerases, and how their structure and mechanism impact their …


A Synthetic Biological Engineering Approach To Secretion- Based Recovery Of Polyhydroxyalkanoates And Other Cellular Products, Elisabeth Linton May 2010

A Synthetic Biological Engineering Approach To Secretion- Based Recovery Of Polyhydroxyalkanoates And Other Cellular Products, Elisabeth Linton

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

The costs associated with cellular product recovery commonly account for as much as 80% of the total production expense. As a specific example, significant recovery costs limit commercial use of polyhydroxyalkanoates (PHA), which comprise a class of microbially-accumulated polyesters. PHAs are biodegradable compounds that are of interest as a sustainable alternative to petrochemically-derived plastics. Secretion-based recovery of PHAs was studied to decrease PHA production costs. Type I and II secretory pathways are commonly used for the translocation of recombinant proteins out of the cytoplasm of E. coli. Proteins were targeted for translocation using four signal peptides (HlyA, TorA, GeneIII, …


Role Of Protein Kinase C Isotypes In 1,25-Dihydroxyvitamin D3 Mediated Signal Transduction Through The 1,25d3 Membrane Associated, Rapid Response Steroid Binding Receptors In Chick Intestinal Cells, Sakara Tunsophon May 2010

Role Of Protein Kinase C Isotypes In 1,25-Dihydroxyvitamin D3 Mediated Signal Transduction Through The 1,25d3 Membrane Associated, Rapid Response Steroid Binding Receptors In Chick Intestinal Cells, Sakara Tunsophon

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

It is now accepted that 1,25(OH)2D3 mediates its rapid actions on the control of phosphate and calcium homeostasis through its membrane receptor termed the 1,25D3-MARRS (membrane associated rapid response steroid binding) protein. I determined the various PKC isotypes involved in the rapid regulation of phosphate uptake and calcium extrusion in chick intestinal cells. 1,25(OH)2D3-mediated phosphate uptake was stimulated within 1 min after addition of the hormone. Western blot analyses on isolated intestinal cells treated with steroid hormone resulted in dose-dependent increases in PKC alpha and PKC beta in postnuclear centrifugation fractions, but not in the low speed centrifugation fractions. The …


Physiological And Molecular Function Of Hap3b In Flowering Time Regulation And Cold Stress Response, Mingxiang Liang May 2010

Physiological And Molecular Function Of Hap3b In Flowering Time Regulation And Cold Stress Response, Mingxiang Liang

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Heme-activated proteins (HAPs) are transcription factors that have multiple roles in plant growth and development, such as embryogenesis, flowering time control, and drought tolerance.

In the present study I found that HAP3b was also involved in controlling response to cold stress. Transcript profiling and gene expression analyses indicated that HAP3b repressed the CBF3 regulon under normal growth conditions. As a result, plants with HAP3b-overexpressed showed decreased survival rates while plants homozygous for the null allele hap3b showed an improved freezing tolerance compared to wild-type plants.

To understand the mechanism of HAP3b in Arabidopsis, i.e. whether it also acts …


Transesterification And Recovery Of Intracellular Lipids Using A Single Step Reactive Extraction, Daniel R. Nelson May 2010

Transesterification And Recovery Of Intracellular Lipids Using A Single Step Reactive Extraction, Daniel R. Nelson

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

A single-step, extractive reaction for extraction of lipids such as biodiesel components, omega-3 fatty acids, or other triglycerides from microbial cells was examined. Conventional methods for lipid extraction use toxic solvents, and require multiple steps and long processing times. When the goal is to produce fatty acid methyl esters or FAMEs, the extracted lipids are subjected to a separate transesterification reaction with simple alcohols in the presence of an acid or base catalyst. A simplified, single-step reactive extraction method can be applied that combines the sequential extraction followed by transesterification using acidified alcohols - a process known as in situ …


Development Of Novel Methods And Their Utilization In The Analysis Of The Effect Of The N-Terminus Of Human Protein Arginine Methyltransferase 1 Variant 1 On Enzymatic Activity, Protein-Protein Interactions, And Substrate Specificity, Brenda Bienka Suh-Lailam May 2010

Development Of Novel Methods And Their Utilization In The Analysis Of The Effect Of The N-Terminus Of Human Protein Arginine Methyltransferase 1 Variant 1 On Enzymatic Activity, Protein-Protein Interactions, And Substrate Specificity, Brenda Bienka Suh-Lailam

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Protein arginine methyltransferases (PRMTs) are enzymes that catalyze the methylation of protein arginine residues, resulting in the formation of monomethylarginine, and/or asymmetric or symmetric dimethylarginines. Although understanding of the PRMTs has grown rapidly over the last few years, several challenges still remain in the PRMT field. Here, we describe the development of two techniques that will be very useful in investigating PRMT regulation, small molecule inhibition, oligomerization, protein-protein interaction, and substrate specificity, which will ultimately lead to the advancement of the PRMT field. Studies have shown that having an N-terminal tag can influence enzyme activity and substrate specificity. The first …


Antimicrobial Activity Of D-Lenolate®, Andy Phui May 2010

Antimicrobial Activity Of D-Lenolate®, Andy Phui

UNLV Theses, Dissertations, Professional Papers, and Capstones

Olive trees are one of the most important fruit trees in the Mediterranean. Although not validated by research, olive leaves are traditionally believed to fight off fever and infections. It has been shown that olive leaf extracts possess antimicrobial activity. Olive leaf extracts contain polyphenols. One of the major phenolic compounds is oleuropein. Oleuropein and other polyphenols have been shown to exhibit antimicrobial activity. East Park Research (EPR) developed an extraction process that they claim does not alter the chemical composition of the olive leaves. The extract is known by the commercial name d-lenolate®. Studies have provided evidence that d-lenolate®, …


Bacillus Cereus And Bacillus Anthracis Germination Kinetics: A Michaelis-Menten Approach, Helen Luu May 2010

Bacillus Cereus And Bacillus Anthracis Germination Kinetics: A Michaelis-Menten Approach, Helen Luu

UNLV Theses, Dissertations, Professional Papers, and Capstones

Bacillus species are rod-shaped, gram-positive bacteria that are capable of producing endospores. In this dormant stage, the endospores can persist in hostile physical and chemical environments. Once conditions become favorable, the spores germinate into actively dividing cells, vegetative cells. Germination is a crucial step for the pathogenicity of the Bacilli in affecting a host organism.

Our study applies mathematical approaches to spore germination to determine whether the binding of one germinant will affect the binding of another germinant. We pursued this approach with two different species, B. cereus and B. anthracis, both pathogenic organisms. B. cereus is a widely known …


Host Signaling Response To Adhesion Of Bifidobacterium Infantis, Reed N. Gann May 2010

Host Signaling Response To Adhesion Of Bifidobacterium Infantis, Reed N. Gann

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Investigations of the molecular binding partners of the probiotic bacterium Bifidobacterium longum subspecies infantis (B. infantis) and the pathogen Salmonella enterica subspecies enterica serovar Typhimurium LT2 (Salmonella ser. Typhimurium) found that these two very different bacteria bind gangliosides. However, these organisms lead to completely different host health outcomes when present in the gut. B. infantis is the founding microbial population in the intestinal tract of breast-fed infants. S. typhimurium is the most important food-borne pathogen that results in humans. This study used an in vitro gut epithelial cell model to examine the host cellular response to adhesion …


Role Of Secondary Interactions (Π, Agostic) As Well As Solvent Influence On Alkali Metal Complexes, Elizabeth D. Nagle May 2010

Role Of Secondary Interactions (Π, Agostic) As Well As Solvent Influence On Alkali Metal Complexes, Elizabeth D. Nagle

Renée Crown University Honors Thesis Projects - All

We here attempt to synthesize heterobimetallic alkali metal complexes with bulky phenolate ligands via solid state direct metallation. The solid state route may offer a facile method of producing these heterobimetallic species. Synthesis of heterobimetallic alkali metal compounds remains a challenge, as the homometallic complexes are generally favored over formation of the heterobimetallic species. Previous work has shown that the alkali metals have a strong solvent dependency; the recrystallization of heterobimetallic products from toluene yields the heterobimetallic, while recrystallization from THF yields the homometallic. However, the ability for phenolate ligands to stabilize metal centers through secondary interactions, such as M∙∙∙π …


Understanding The Genetic And Molecular Mechanisms Of The Shl3 Phenotype In Arabidopsis Thaliana, Sukeerti Kesar May 2010

Understanding The Genetic And Molecular Mechanisms Of The Shl3 Phenotype In Arabidopsis Thaliana, Sukeerti Kesar

Renée Crown University Honors Thesis Projects - All

The study of plant genetics and the molecular mechanisms regulating plant-pathogen interactions is an intensely studied area of research in molecular genetics. Gaining an understanding of the defense mechanisms of plants has proven highly useful in the construction of transgenic plants for increased crop yield. The focus of my research was on the defense mechanisms of Arabidopsis thaliana, a plant in the mustard family. Several features of Arabidopsis make it an excellent model plant for molecular genetic studies. A few of these include a short life cycle (approximately 8 weeks), a completely sequenced genome, high fecundity, and the availability …


The Role Of A2b Adenosine Receptor Signaling In Adenosine Dependent Lung Disease, Yang Zhou May 2010

The Role Of A2b Adenosine Receptor Signaling In Adenosine Dependent Lung Disease, Yang Zhou

Dissertations and Theses (Open Access)

Chronic lung diseases and acute lung injuries are two distinctive pulmonary disorders that result in significant morbidity and mortality. Adenosine is a signaling nucleoside generated in response to injury and can serve both protective and destructive functions in tissues and cells through interaction with four G-protein coupled adenosine receptors: A1R, A2AR, A2BR, and A3R. However, the relationship between these factors is poorly understood. Recent findings suggest the A2BR has been implicated in the regulation of both chronic lung disease and acute lung injury. The work presented in this dissertation utilized the adenosine deaminase-deficient mouse model and the bleomycin-induced pulmonary injury …


Carboxylases Involved In Microbial Acetone And Acetophenone Metabolism, Ameya Mashruwala May 2010

Carboxylases Involved In Microbial Acetone And Acetophenone Metabolism, Ameya Mashruwala

All Graduate Plan B and other Reports, Spring 1920 to Spring 2023

A number of bacteria are capable of growth with acetone and acetophenone as their sole sources of carbon and/or energy. The pathways and enzymes involved in the transformation of these molecules into useable carbon and energy are unique. Among these are two novel enzymes, acetone carboxylase and acetophenone carboxylase, which represent a fundamentally novel classes of carboxylases.

The initial step in acetone metabolism, in X. autotrophicus st Py2, R. capsulatus st B10 and R. rhodochrous, is the thermodynamically unfavorable reaction to yield acetoacetate. This step is catalyzed by the enzyme acetone carboxylase and is coupled with the unprecedented, concomitant hydrolysis …


Glycopeptidome Of A Heavily N-Glycosylated Cell Surface Glycoprotein Of Dictyostelium Implicated In Cell Adhesion, Christa L. Feasley, Jennifer M. Johnson, Christopher M. West, Catherine P. Chia May 2010

Glycopeptidome Of A Heavily N-Glycosylated Cell Surface Glycoprotein Of Dictyostelium Implicated In Cell Adhesion, Christa L. Feasley, Jennifer M. Johnson, Christopher M. West, Catherine P. Chia

School of Biological Sciences: Faculty Publications

Genetic analysis has implicated the cell surface glycoprotein gp130 in cell interactions of the social amoeba Dictyostelium, and information about the utilization of the 18 N-glycosylation sequons present in gp130 is needed to identify critical molecular determinants of its activity. Various glycomics strategies, including mass spectrometry of native and derivatized glycans, monosaccharide analysis, exoglycosidase digestion, and antibody binding, were applied to characterize a nonanchored version secreted from Dictyostelium. s-gp130 is modified by a predominant Man8GlcNAc4 species containing bisecting and intersecting GlcNAc residues and additional high-mannose N-glycans substituted with sulfate, methyl-phosphate, and/or core R3-fucose. Site mapping confirmed the occupancy …


The Development Of A Comprehensive Mechanism For Intracellular Calcium Oscillations: A Theoretical Approach And An Experimental Validation, Amanda A. Borges, Deanna Salter, Sandor Kadar, Steven B. Symington May 2010

The Development Of A Comprehensive Mechanism For Intracellular Calcium Oscillations: A Theoretical Approach And An Experimental Validation, Amanda A. Borges, Deanna Salter, Sandor Kadar, Steven B. Symington

Pell Scholars and Senior Theses

Calcium is an important second messenger for cellular communication. Theoretical models help scientists understand its signalling mechanism. A comprehensive model was developed in order to minimize any limitations in the models currently presented in the literature. Experimental results support the model and therefore the theoretical model provides a plausible explanation of the dynamics of the calcium-signaling mechanism. In the future, additional verification will be performed using various experimental configurations on PC12 cells. Further, the model will be used to predict the response of cells to environmental factors such as pesticides and heavy metals.


Xenoestrogen-Specific Mechanisms Of Developmental Reprogramming Correlate With Gene Expression And Tumor Development, Kristen L. Greathouse May 2010

Xenoestrogen-Specific Mechanisms Of Developmental Reprogramming Correlate With Gene Expression And Tumor Development, Kristen L. Greathouse

Dissertations and Theses (Open Access)

Environmental exposures during sensitive windows of development can reprogram normal physiological responses and alter disease susceptibility later in life in a process known as developmental reprogramming. We have shown that neonatal exposure to the xenoestrogen diethylstilbestrol (DES) can developmentally reprogram the reproductive tract in genetically susceptible Eker rats giving rise to complete penetrance of uterine leiomyoma. Based on this, we hypothesized that xenoestrogens, including genistein (GEN) and bisphenol A (BPA), reprogram estrogen-responsive gene expression in the myometrium and promote the development of uterine leiomyoma. We proposed the mechanism that is responsible for the developmental reprogramming of gene expression was through …


Preeclampsia, Autoimmunity And The At1 Receptor, Roxanna A. Irani May 2010

Preeclampsia, Autoimmunity And The At1 Receptor, Roxanna A. Irani

Dissertations and Theses (Open Access)

Preeclampsia (PE) is a disease of late pregnancy characterized by maternal hypertension and proteinuria. It is associated with preterm delivery and significant perinatal morbidity and mortality. Despite affecting ~7% of first pregnancies, there is no effective screening method to identify women at risk, nor is there a definitive treatment other than delivery of the baby and placenta. Though the pathogenesis of PE remains unclear, an imbalance in the renin-angiotensin and immune systems are thought to be major contributors. Bridging these two concepts, it has recently been shown that women with PE harbor specific autoantibodies: the angiotensin II type 1 receptor …


A New Tumor Suppressor Gene Candidate Regulated By The Non-Coding Rna Pca3 In Human Prostate Cancer, Alessandro K. Lee May 2010

A New Tumor Suppressor Gene Candidate Regulated By The Non-Coding Rna Pca3 In Human Prostate Cancer, Alessandro K. Lee

Dissertations and Theses (Open Access)

Prostate cancer is the second leading cause of cancer-related death and the most common non-skin cancer in men in the USA. Considerable advancements in the practice of medicine have allowed a significant improvement in the diagnosis and treatment of this disease and, in recent years, both incidence and mortality rates have been slightly declining. However, it is still estimated that 1 man in 6 will be diagnosed with prostate cancer during his lifetime, and 1 man in 35 will die of the disease.

In order to identify novel strategies and effective therapeutic approaches in the fight against prostate cancer, it …


Host-Pathogen Interactions Of Secreted And Surface Staphylococcus Aureus Factors, Vanessa Vazquez May 2010

Host-Pathogen Interactions Of Secreted And Surface Staphylococcus Aureus Factors, Vanessa Vazquez

Dissertations and Theses (Open Access)

Staphylococcus aureus is an opportunistic bacterial pathogen that can infect humans and other species. It utilizes an arsenal of virulence factors to cause disease, including secreted and cell wall anchored factors. Secreted toxins attack host cells, and pore-forming toxins destroy target cells by causing cell lysis. S. aureus uses cell-surface adhesins to attach to host molecules thereby facilitating host colonization. The Microbial Surface Components Recognizing Adhesive Matrix Molecules (MSCRAMMs) are a family of cell-wall anchored proteins that target molecules like fibronectin and fibrinogen. The Serine-aspartate repeat (Sdr) proteins are a subset of staphylococcal MSCRAMMs that share similar domain organization. Interestingly, …


Ampa Receptor Allosterism: Measurement Of The Conformational Changes In The Ligand Binding Domain Of A Functional Receptor, Jennifer Gonzalez-Mcgehee May 2010

Ampa Receptor Allosterism: Measurement Of The Conformational Changes In The Ligand Binding Domain Of A Functional Receptor, Jennifer Gonzalez-Mcgehee

Dissertations and Theses (Open Access)

Ionotropic glutamate receptors are important excitatory neurotransmitter receptors in the mammalian central nervous system that have been implicated in a number of neuropathologies such as epilepsy, ischemia, and amyotrophic lateral sclerosis. Glutamate binding to an extracellular ligand binding domain initiates a series of structural changes that leads to the formation of a cation selective transmembrane channel, which consequently closes due to desensitization of the receptor. The crystal structures of the AMPA subtype of the glutamate receptor have been particularly useful in providing initial insight into the conformational changes in the ligand binding domain; however, these structures are limited by crystallographic …


Developmental Changes In The Structure And Composition Of The Postsynaptic Density, Matthew T. Swulius May 2010

Developmental Changes In The Structure And Composition Of The Postsynaptic Density, Matthew T. Swulius

Dissertations and Theses (Open Access)

The development of the brain and its underlying circuitry is dependent on the formation of trillions of chemical synapses, which are highly specialized contacts that regulate the flow of information from one neuron to the next. It is through these synaptic connections that neurons wire together into networks capable of performing specific tasks, and activity-dependent changes in their structural and physiological state is one way that the brain is thought to adapt and store information. At the ultrastructural level, developmental and activity-dependent changes in the size and shape of dendritic spines have been well documented, and it is widely believed …


The Ubiquitin Ligase Ube4b Is Required For Efficient Epidermal Growth Factor Receptor Degradation, Natalie Sirisaengtaksin May 2010

The Ubiquitin Ligase Ube4b Is Required For Efficient Epidermal Growth Factor Receptor Degradation, Natalie Sirisaengtaksin

Dissertations and Theses (Open Access)

The length of time that integral membrane proteins reside on the plasma membrane is regulated by endocytosis, a process that can inactivate these proteins by removing them from the membrane and may ultimately result in their degradation. Proteins are internalized and pass through multiple distinct intracellular compartments where targeting decisions determine their fate. Membrane proteins initially enter early endosomes, and subsequently late endosomes/multivesicular bodies (MVBs), before being degraded in the lysosome. The MVB is a subset of late endosomes characterized by the appearance of small vesicles in its luminal compartment. These vesicles contain cargo proteins sorted from the limiting membrane …


Genetic And Biochemical Studies Of Plasmid Pir52-1 In Lactobacillus Helveticus, Cody Alexander Tramp May 2010

Genetic And Biochemical Studies Of Plasmid Pir52-1 In Lactobacillus Helveticus, Cody Alexander Tramp

Undergraduate Honors Capstone Projects

Lactobacillus helveticus is a species of lactic acid bacteria. These bacteria, which produce lactic acid as a major product of carbohydrate metabolism, are used industrially to produce cheese and other fermented dairy products (Ebringer et al., 2008). Many species of lactic acid bacteria also possess probiotic characteristics and when ingested potentially confer increased immune function, regulate gut microbiota, and improve digestion in the host (Reid, 2008). Genetic studies of these probiotic effects and other characteristics of L. helveticus and related species have been hindered by the lack of stably replicating plasmid vectors. Plasmid vectors for several Lactobacillus species have been …


A Guide To The Continuing Investigation Of The Relationship Between The Cytoskeleton And Cell Wall In Developing Buds Of Physcomitrella Patens, Derek Brockman May 2010

A Guide To The Continuing Investigation Of The Relationship Between The Cytoskeleton And Cell Wall In Developing Buds Of Physcomitrella Patens, Derek Brockman

Senior Honors Projects

Persistent questions in biology address the nature of tissue organization and how information encoded in the genome can be manifested as a physical form. While the ‘final’ product of gene expression is a protein, science has yet to elucidate how those proteins are able to interact with other cellular components and external forces to generate a specific cell shape. This complex process is critical in determining not only the shape of an individual cell but also that of an entire organ. In plants, cell shape is controlled by cellulose microfibrils of the cell wall, which are typically oriented perpendicular to …