Fluorescence-Based Reporter For Gauging Cyclic Di-Gmp Levels In Pseudomonas Aeruginosa,
2012
University of Copenhagen
Fluorescence-Based Reporter For Gauging Cyclic Di-Gmp Levels In Pseudomonas Aeruginosa, Morten T. Rybtke, Bradley R. Borlee, Keiji Murakami, Yasuhiko Irie, Morten Hentzer, Thomas E. Nielsen, Michael Givskov, Matthew R. Parsek, Tim Tolker-Nielsen
Biology Faculty Publications
The increased tolerance toward the host immune system and antibiotics displayed by biofilm-forming Pseudomonas aeruginosa and other bacteria in chronic infections such as cystic fibrosis bronchopneumonia is of major concern. Targeting of biofilm formation is believed to be a key aspect in the development of novel antipathogenic drugs that can augment the effect of classic antibiotics by decreasing antimicrobial tolerance. The second messenger cyclic di-GMP is a positive regulator of biofilm formation, and cyclic di-GMP signaling is now regarded as a potential target for the development of antipathogenic compounds. Here we describe the development of fluorescent monitors that can gauge …
Syntaxin 6- And Microtubule- Mediated Intracellular Trafficking Contributes To Golgi And Nuclear Translocation Of Egfr,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Syntaxin 6- And Microtubule- Mediated Intracellular Trafficking Contributes To Golgi And Nuclear Translocation Of Egfr, Yi Du
Dissertations and Theses (Open Access)
Receptor-mediated endocytosis is well known for its degradation and recycling trafficking. Recent evidence shows that these cell surface receptors translocate from cell surface to different cellular compartments, including the Golgi, mitochondria, endoplasmic reticulum (ER), and the nucleus to regulate physiological and pathological functions. Although some trafficking mechanisms have been resolved, the mechanism of intracellular trafficking from cell surface to the Golgi is not yet completed understood. Here we report a mechanism of Golgi translocation of EGFR in which EGF-induced EGFR travels to the Golgi via microtubule (MT)-dependent movement by interacting with dynein and fuses with the Golgi through syntaxin 6 …
Identification And Characterization Of Distinct Populations Of Clonogenic Bone Marrow Stromal Cells Capable Of Transferring The Hematopoietic Microenvironment In Vivo And Supporting Lt-Hscs In Vitro,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Identification And Characterization Of Distinct Populations Of Clonogenic Bone Marrow Stromal Cells Capable Of Transferring The Hematopoietic Microenvironment In Vivo And Supporting Lt-Hscs In Vitro, Colby Suire
Dissertations and Theses (Open Access)
Bone marrow (BM) stromal cells are ascribed two key functions, 1) stem cells for non-hematopoietic tissues (MSC) and 2) as components of the hematopoietic stem cell niche. Current approaches studying the stromal cell system in the mouse are complicated by the low yield of clonogenic progenitors (CFU-F). Given the perivascular location of MSC in BM, we developed an alternative methodology to isolate MSC from mBM. An intact ‘plug’ of bone marrow is expelled from bones and enzymatically disaggregated to yield a single cell suspension. The recovery of CFU-F (1917.95+199) reproducibly exceeds that obtained using the standard BM flushing technique (14.32+1.9) …
Induced-Pluripotent Stem-Derived Neuronal Progenitor Cells As A Novel Treatment For Neurodegenerative Diseases,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Induced-Pluripotent Stem-Derived Neuronal Progenitor Cells As A Novel Treatment For Neurodegenerative Diseases, Dennisse A. Gonzalez-Romero
Dissertations and Theses (Open Access)
Cellular therapies, as neuronal progenitor (NP) cells grafting, are promising therapies for patients affected with neurodegenerative diseases like Creutzfeldt-Jakob Disease (CJD). At this time there is no effective treatment or cure for CJD. The disease is inevitably fatal and affected people usually die within months of the appearance of the first clinical symptoms. Compelling evidence indicate that the hallmark event in the disease is the conversion of the normal prion protein (termed PrPC) into the disease-associated, misfolded form (called PrPSc). Thus, a reasonable therapeutic target would be to prevent PrP misfolding and prion replication. This strategy …
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase, Kedryn K. Baskin
Dissertations and Theses (Open Access)
The degradation of proteins by the ubiquitin proteasome system is essential for cellular homeostasis in the heart. An important regulator of metabolic homeostasis is AMP-activated protein kinase (AMPK). During nutrient deprivation, AMPK is activated and intracellular proteolysis is enhanced through the ubiquitin proteasome system (UPS). Whether AMPK plays a role in protein degradation through the UPS in the heart is not known. Here I present data in support of the hypothesis that AMPK transcriptionally regulates key players in the UPS, which, under extreme conditions can be detrimental to the heart. The ubiquitin ligases MAFbx /Atrogin-1 and MuRF1, key regulators of …
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase, Kedryn K. Baskin, Kedryn K. Baskin
Dissertations and Theses (Open Access)
The degradation of proteins by the ubiquitin proteasome system is essential for cellular homeostasis in the heart. An important regulator of metabolic homeostasis is AMP-activated protein kinase (AMPK). During nutrient deprivation, AMPK is activated and intracellular proteolysis is enhanced through the ubiquitin proteasome system (UPS). Whether AMPK plays a role in protein degradation through the UPS in the heart is not known. Here I present data in support of the hypothesis that AMPK transcriptionally regulates key players in the UPS, which, under extreme conditions can be detrimental to the heart. The ubiquitin ligases MAFbx /Atrogin-1 and MuRF1, key regulators of …
Internalization Of F-Actin Monomers Into 3t3 Fibroblasts Via Thermal Inkjet Printing For Investigation Of Cytoskeleton Incorporation And Mechanics,
2012
Clemson University
Internalization Of F-Actin Monomers Into 3t3 Fibroblasts Via Thermal Inkjet Printing For Investigation Of Cytoskeleton Incorporation And Mechanics, Stephen Shuford
All Theses
ABSTRACT
We will review the conversion of a standard thermal inkjet printer into a bioprinting system and the effects of printing F-actin monomers with cells. The use of any printing system along with biological material or for biological or medical use has been termed bioprinting. Bioprinting has been used in vascular grafts, scaffold design, gene transfection, micro patterning and many other applications and is very diverse. Specifically we will look at the internalization of F-actin monomers into 3T3 fibroblasts as a result of cell membrane disruption from thermal inkjet printing. If the actin monomers were internalized and then incorporated into …
Genome-Wide Identification Of Conditionally Essential Genes In Salmonella Typhimurium Using Tn-Seq Method,
2012
University of Arkansas, Fayetteville
Genome-Wide Identification Of Conditionally Essential Genes In Salmonella Typhimurium Using Tn-Seq Method, Anita Khatiwara
Graduate Theses and Dissertations
ABSTRACT
As more whole genome sequences become available, there is an increasing need for high-throughput methods that link genes to phenotypes and facilitate discovery of new gene functions. The objective of this study was to develop a high-throughput method to study gene functions in bacteria and use this method to study gene functions of S. enterica serotype Typhimurium (S. Typhimurium) under various environmental conditions encountered during its life cycle. Chapter I of this dissertation reviews the history and evolution of functional genomics in bacteria with focus on Salmonella, along with the recent techniques available. Chapter II, deals with the development …
Molecular Analysis And Localization Of A Novel Dictyostelium Discoideum Rab Protein, Rabs,
2012
University of Arkansas Little Rock
Molecular Analysis And Localization Of A Novel Dictyostelium Discoideum Rab Protein, Rabs, Katherine V. Maringer
Theses and Dissertations
Functional analysis and localization of the small GTPase RabS in the slime mold, Dictyostelium discoideum, was explored using cell lines that over-express a GFP tagged RabS protein. Based on homology to Rab1, Golgi association was explored. Immunofluoresence analysis of the intracellular localization of this GFP tagged protein revealed that this GFP-Rab had a partial co-localization with the contractile vacuole organelle system. Additionally, when the over-expressed RabS cell lines were exposed to selective biochemical inhibitors, the GFP-Tagged Rab localized with what can be assumed is the Golgi network. This dual localization of Golgi and CV may support a previously proposed connection …
Analysis Of The Effects And Current Treatments Of Laminin Deficiency,
2012
Liberty University
Analysis Of The Effects And Current Treatments Of Laminin Deficiency, Joshua Mark Reynolds
Senior Honors Theses
Laminin (LM) is a network of proteins that functions as a connective framework of most cells in the body. It is composed of multiple different subunits and therefore has many different variations. It is a trimeric protein, meaning that it is composed primarily of ⍺, β, and γ chains. The differentiation of these subunits is what gives the different variants their functions. In addition, although LM is the primary molecule in scope, the network of other connective proteins involved in LM-associated diseases will also be covered in lesser detail because molecules like dystrophin, dystroglycan, collagen, and integrin are vital to …
Viral Receptor Trafficking Regulated By Gabarap,
2012
The University of San Francisco
Viral Receptor Trafficking Regulated By Gabarap, Cendy Valle Oseguera, Carolyn C. Tu, Jie Sun, Kathleen Arnolds, Juliet V. Spencer
Creative Activity and Research Day - CARD
Human cytomegalovirus (HCMV) is a widespread pathogen that can be life-threatening to immune-compromised patients but rarely causes disease in healthy individuals. Previous work using the yeast two-hybrid system found that GABARAP (γ-aminobutyric-acid-receptor-associated-protein) binds to HCMV US27. US27 is similar to human chemokine receptors, but is localized intracellularly instead of on the surface. Here, we examined the US27-GABARAP interaction in human cells and identified a four amino acid motif (WXXL) that mediates GABARAP binding to US27 and its localization to endosomal compartments. Since GABARAP regulates cellular receptor trafficking, these results show that viral US27 is also controlled by a cellular protein.
A Fap46 Mutant Provides New Insights Into The Function And Assembly Of The C1d Complex Of The Ciliary Central Apparatus,
2012
University of Massachusetts Medical School
A Fap46 Mutant Provides New Insights Into The Function And Assembly Of The C1d Complex Of The Ciliary Central Apparatus, Jason M. Brown, Christen G. Dipetrillo, Elizabeth F. Smith, George B. Witman
Dartmouth Scholarship
Virtually all motile eukaryotic cilia and flagella have a '9+2' axoneme in which nine doublet microtubules surround two singlet microtubules. Associated with the central pair of microtubules are protein complexes that form at least seven biochemically and structurally distinct central pair projections. Analysis of mutants lacking specific projections has indicated that each may play a unique role in the control of flagellar motility. One of these is the C1d projection previously shown to contain the proteins FAP54, FAP46, FAP74 and FAP221/Pcdp1, which exhibits Ca(2+)-sensitive calmodulin binding. Here we report the isolation and characterization of a Chlamydomonas reinhardtii null mutant for …
Cloning And Characterization Of The Cell Wall Acting Enzyme Cd1034 From The Pathogen Clostridium Difficile,
2012
Bryant University
Cloning And Characterization Of The Cell Wall Acting Enzyme Cd1034 From The Pathogen Clostridium Difficile, Zachary Suter
Honors Projects in Science and Technology
The manifestation of multidrug resistance in bacteria over the past several decades has resulted in one of the foremost challenges in the management of infectious diseases. The question arises, “How do we address this growing problem?” One solution to stem the growing rise in antimicrobial resistance is to investigate new targets, while another approach is to re-examine classical antibacterial targets with a fresh perspective. The aim of this paper is to begin the process of antibacterial development for the pathogen Clostridium difficile by characterizing the cell wall acting glucosaminidase CD1034. It is inunderstanding how CD1034 functions biochemically that it can …
Using Comparative Genomics For Inquiry-Based Learning To Dissect Virulence Of Escherichia Coli O157:H7 And Yersinia Pestis,
2012
University of Wisconsin-Madison
Using Comparative Genomics For Inquiry-Based Learning To Dissect Virulence Of Escherichia Coli O157:H7 And Yersinia Pestis, David J. Baumler, Lois M. Banta, Kai F. Hung, Jodi A. Schwarz, Eric L. Cabot, Jeremy D. Glasner, Nicole T. Perna
Faculty Research & Creative Activity
Genomics and bioinformatics are topics of increasing interest in undergraduate biological science curricula. Many existing exercises focus on gene annotation and analysis of a single genome. In this paper, we present two educational modules designed to enable students to learn and apply fundamental concepts in comparative genomics using examples related to bacterial pathogenesis. Students first examine alignments of genomes of Escherichia coli O157:H7 strains isolated from three food-poisoning outbreaks using the multiple-genome alignment tool Mauve. Students investigate conservation of virulence factors using the Mauve viewer and by browsing annotations available at the A Systematic Annotation Package for Community Analysis of …
Nano- And Micro-Second Electrical Pulsing Of B16-F10 Mouse Melanoma Cells: Plasma Membrane And Sub-Cellular Organelle Changes,
2012
Old Dominion University
Nano- And Micro-Second Electrical Pulsing Of B16-F10 Mouse Melanoma Cells: Plasma Membrane And Sub-Cellular Organelle Changes, Yiling Chen
Theses and Dissertations in Biomedical Sciences
High electric field-treated cells are permeable to molecular dye through either opening of pores in the plasma membrane or other unknown processes which can disturb the membrane in an organized way. However, direct morphological evidence is lacking and responses of intracellular organelles are not clear. We used traditional chemical fixatives and biochemical techniques to capture cell membrane and organelle changes immediately after pulsing with high voltage electric field application. Different pulse durations, nanosecond (ns) and microsecond (µs), and field magnitudes, 60 kV/cm and 1.2 kV/cm, were applied to mouse melanoma B16-F10 cells. Two different ns durations (60 and 300 ns) …
Treatment Of Aortic Heart Valve Conduit With Glutamine And Heat Shock As A Means To Deter The Constituent Cellular Population From Becoming Apoptotic,
2012
Old Dominion University
Treatment Of Aortic Heart Valve Conduit With Glutamine And Heat Shock As A Means To Deter The Constituent Cellular Population From Becoming Apoptotic, Alyce Marie Linthurst Jones
Theses and Dissertations in Biomedical Sciences
Cryopreserved allograft heart valves represent the best solution for a patient with a failing heart valve. However, the constituent cells become apoptotic and within months of transplant the heart valve becomes acellular and the recipient's cells do not repopulate the allograft (3, 51). A strategy to prevent this situation would be to minimize or prevent apoptosis from occurring by strategically altering steps during heart valve processing. Recently it has been demonstrated that: 1) Heat shock protein 70 is a negative modulator of the apoptotic cascade; 2) Cells in culture exposed to hypothermic conditions produce heat shock protein 70 upon rewarming; …
Nonosecond Pulsed Electric Field Induced Changes In Dielectric Properties Of Biological Cells,
2012
Old Dominion University
Nonosecond Pulsed Electric Field Induced Changes In Dielectric Properties Of Biological Cells, Jie Zhuang
Electrical & Computer Engineering Theses & Dissertations
Nanosecond pulsed electric field induced biological effects have been a focus of research interests since the new millennium. Promising biomedical applications, e.g. tumor treatment and wound healing, are emerging based on this principle. Although the exact mechanisms behind the nanosecond pulse-cell interactions are not completely understood yet, it is generally believed that charging along the cell membranes (including intracellular membranes) and formation of membrane pores trigger subsequent biological responses, and the number and quality of pores are responsible for the cell fate. The immediate charging response of a biological cell to a nanosecond pulsed electric field exposure relies on the …
Studies On Enzyme Functional Evolution In The Sabath Multigene Family Using Phylogenetic And Biochemical Approaches,
2012
Western Michigan University
Studies On Enzyme Functional Evolution In The Sabath Multigene Family Using Phylogenetic And Biochemical Approaches, Ruiqi Huang
Masters Theses
Gene duplication is believed to be the major source for providing genetic materials for the innovation and diversification of protein functions; natural selection and/or neutral drift then works on these genetic materials to guide their evolutionary directions. Here, I used the salicylic acid/benzoic acid/theobromine (SABATH) multigene family to study how natural selection acted on duplicated genes to prompt functional diversification. Members in this family methylate plant secondary metabolites by transferring the methyl group from S-adenosyl-L-methionine (SAM) to the carboxyl group or ring nitrogen of the substrates. In the Apocynaceae and Solanaceae lineage of this family, I documented three putative gene …
Neurodegeneration - A Means To An End,
2012
University of Dayton
Neurodegeneration - A Means To An End, Amit Singh
Biology Faculty Publications
Cell death, a global phenomenon found throughout the animal kingdom, is a mechanism to maintain tissue homeostasis and for adaptation to changes in the environment [1,2]. Millions of cells die in our body daily- they succumb to stress and commit suicide by a mechanism referred to as cell death or apoptosis [2-4]. Under normal conditions cells are continuously replaced by new cells from the stemor progenitor- cells. For example, an optimum balance in shedding of dead cells from the skin and their replenishment by new ones maintain our health and hygiene. In this context, apoptosis is a mechanism to eliminate …
Alteration In 5ht1a Receptor Activity From A Prenatal Exposure To Dexamethasone In A Stressed And Non-Stressed Adult Male Rat,
2012
Bucknell University
Alteration In 5ht1a Receptor Activity From A Prenatal Exposure To Dexamethasone In A Stressed And Non-Stressed Adult Male Rat, Darshan S. Shah
Honors Theses
Synthetic glucocorticoids (GC) are used as a clinical therapeutic to stimulate lung development in fetuses that present the risk of preterm delivery. Previous studies have shown that a prenatal exposure to Dexamethasone (DEX) causes a disturbance in normal GC mediation of neuritic outgrowth, cell signaling, and serotonergic systems. Our hypothesis is that a prenatal exposure to DEX during the third trimester of pregnancy alters 5HT1A receptor function. Pregnant dams were injected daily with 150μg/ml/kg of DEX from gestation day 14 through 19. Control dams were treated with and equal volume of saline. Swim stress followed by elevated plus maze testing …
