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The Role Of Exosomes In Prostate Field Cancerization, Julie Nguyen 2017 Chapman University

The Role Of Exosomes In Prostate Field Cancerization, Julie Nguyen

Student Scholar Symposium Abstracts and Posters

Field cancerization is formally defined as the presence of molecular alterations in structurally normal tissues adjacent to tumors. Currently, the etiology of prostate field cancerization is still unknown. We hypothesize that exosomes (vesicles excreted by cells that may contain protein, lipids, or RNA) are released by tumors and are endocytosed by adjacent normal cells converting them into abnormal cells, thereby aiding cancer progression. The following biomarkers have been associated with field cancerization: MIC-1, PDGF-A, FASN, and EGR-1, while markers for exosomes are CD-9, CD-63, and PSMA. To test this hypothesis, exosomes were isolated from human prostate cancer cell models LNCaP …


Hydrogen Peroxide Inhibition Of Bicupin Oxalate Oxidase, John M. Goodwin, Hassan Rana, Joan Ndungu, Gaurab Chakrabarti, Ellen W. Moomaw 2017 Kennesaw State University

Hydrogen Peroxide Inhibition Of Bicupin Oxalate Oxidase, John M. Goodwin, Hassan Rana, Joan Ndungu, Gaurab Chakrabarti, Ellen W. Moomaw

Faculty Articles

Oxalate oxidase is a manganese containing enzyme that catalyzes the oxidation of oxalate to carbon dioxide in a reaction that is coupled with the reduction of oxygen to hydrogen peroxide. Oxalate oxidase from Ceriporiopsis subvermispora (CsOxOx) is the first fungal and bicupin enzyme identified that catalyzes this reaction. Potential applications of oxalate oxidase for use in pancreatic cancer treatment, to prevent scaling in paper pulping, and in biofuel cells have highlighted the need to understand the extent of the hydrogen peroxide inhibition of the CsOxOx catalyzed oxidation of oxalate. We apply a membrane inlet mass spectrometry (MIMS) assay to directly …


I) Hv1, Lbp And Lcf Reconstitution In Liposomes Ii) Signed, Sealed, And Delivered: Cpp Technology Delivers Active Protein Cargo, Aaron I. Ledet 2017 Kennesaw State University

I) Hv1, Lbp And Lcf Reconstitution In Liposomes Ii) Signed, Sealed, And Delivered: Cpp Technology Delivers Active Protein Cargo, Aaron I. Ledet

Master of Science in Chemical Sciences Theses

The first half of this thesis focuses on bioluminescence within the Lingulodinium polyedrum dinoflagellates. In this species, the organelle termed “scintillon” houses the components involved in bioluminescence: Luciferin Binding Protein (LBP), Luciferase (LCF), voltage-gated proton channel (Hv1), as well as the substrate Luciferin (LH2). Bioluminescence is triggered by an internal drop in pH of the scintillon initiated by the voltage activation of Hv1 in the membrane. The first focus of this study is to use a synthetic scintillon—a liposome that contains the purified proteins and substrate—to mimic the observed system. Liposomes containing LCF, LBP, and LH2 had …


Mutant Tdp-43 Does Not Impair Mitochondrial Bioenergetics In Vitro And In Viv, Hibiki Kawamata, Pablo Peixoto, Csaba Konrad, Gloria Palomo, Kirsten Bredvik, Meri Gerges, Federica Valsecchi, Leonard Petrucelli, John M. Ravits, Anatoly Starkov, Giovanni Manfredi 2017 Weill Cornell Medical College

Mutant Tdp-43 Does Not Impair Mitochondrial Bioenergetics In Vitro And In Viv, Hibiki Kawamata, Pablo Peixoto, Csaba Konrad, Gloria Palomo, Kirsten Bredvik, Meri Gerges, Federica Valsecchi, Leonard Petrucelli, John M. Ravits, Anatoly Starkov, Giovanni Manfredi

Publications and Research

Background: Mitochondrial dysfunction has been linked to the pathogenesis of amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). Functional studies of mitochondrial bioenergetics have focused mostly on superoxide dismutase 1 (SOD1) mutants, and showed that mutant human SOD1 impairs mitochondrial oxidative phosphorylation, calcium homeostasis, and dynamics. However, recent reports have indicated that alterations in transactivation response element DNA-binding protein 43 (TDP-43) can also lead to defects of mitochondrial morphology and dynamics. Furthermore, it was proposed that TDP-43 mutations cause oxidative phosphorylation impairment associated with respiratory chain defects and that these effects were caused by mitochondrial localization of the mutant …


Altered Na, K- Atpase Isoform Expression In Artemia Franciscana In Response To Hypersaline Environments, Jessica Drenth 2017 Illinois State University

Altered Na, K- Atpase Isoform Expression In Artemia Franciscana In Response To Hypersaline Environments, Jessica Drenth

Theses and Dissertations

The Na,K-ATPase (NKA) is an essential membrane pump that helps to establish cell ion gradients, and regulate intracellular salt in many organisms. One such species, Artemia franciscana (brine shrimp), extreme halophiles which live in hypersaline environments, expresses 2 distinct α-catalytic subunits of the NKA. One of these subunits, α2-(KK), has two key lysine substitutions located within the cation binding sites. Prior work has demonstrated this specific subunit may be directly involved in brine shrimp adaptation to their extreme environments. However, the precise molecular and physiological effects of α2-(KK) have not been entirely elucidated. I determined through immunohistochemistry that my initial …


Aberrant Glycosylation In Pancreatic Cancer Progression, Seema Chugh 2017 University of Nebraska Medical Center

Aberrant Glycosylation In Pancreatic Cancer Progression, Seema Chugh

Theses & Dissertations

Aberrant changes in O-glycosylation patterns underlie pancreatic ductal adenocarcinoma (PDAC) progression and metastasis. Glycosylation is a post-translational modification in which carbohydrate moieties are attached to the protein substrate. My dissertation is focused on mucin-type O-glycosylation, which is the predominant form of O-glycosylation and is regulated by a myriad of glycosyltransferases.

PDAC is one of the most lethal diseases and the mechanistic involvement of aberrant O-glycosylation in its progression and metastasis is unknown. The aberrant glycosylation refers to the appearance of unusual carbohydrate structures such as truncated carbohydrate antigens, often referred to as tumor-associated carbohydrate antigens.

In this dissertation, my goal …


The Rise And Fall Of The Bovine Corpus Luteum, Heather Talbott 2017 University of Nebraska Medical Center

The Rise And Fall Of The Bovine Corpus Luteum, Heather Talbott

Theses & Dissertations

This dissertation describes a study of the mechanisms regulating the genesis and subsequent involution of the temporary endocrine structure, the corpus luteum (CL), through the use of a bovine model. The CL is essential for maintaining a suitable uterine environment for embryo implantation and early development through secretion of the steroid hormone progesterone. The “Rise and Fall” of the CL occurs within each estrous cycle whereby the CL must form from the ruptured follicle, secrete sufficient progesterone for uterine maturation, and at the end of the cycle (or pregnancy) regress to allow new follicular development. During the rise of the …


Effects Of The Microenvironment Surrounding Cys433 In Arabidopsis Β-Amylase-1 And -3 On The Sensitivity To Glutathionylation By Nitrosoglutathione, Matthew R. Kohler 2017 James Madison University

Effects Of The Microenvironment Surrounding Cys433 In Arabidopsis Β-Amylase-1 And -3 On The Sensitivity To Glutathionylation By Nitrosoglutathione, Matthew R. Kohler

Senior Honors Projects, 2010-2019

Glutathionylation is a reversible post-translational modification of proteins involving the transfer of glutathione to the thiols of specific cysteine residues. While the mechanism behind glutathionylation is known, the specificity of cysteine glutathionylation is not understood. It is known, however, that the two main factors affecting the susceptibility to glutathionylation are the reactivity and accessibility of cysteines in proteins, which is determined by the microenvironment. Using β-amylases (BAMs) 1 and 3 from Arabidopsis thaliana, which have different sensitivities to nitrosoglutathione (GSNO), as a model, I attempted to provide insight into why some cysteines are glutathionylated by GSNO and others are …


Obscurin Acts As A Variable Force Resistor, Aidan M. Willey 2017 James Madison University

Obscurin Acts As A Variable Force Resistor, Aidan M. Willey

Senior Honors Projects, 2010-2019

Obscurin (800-900 kDa) is a giant cytoskeletal protein important to muscle cell maintenance and organization. One of its functions is to connect distal regions within the cell. The protein architecture suggests this role; obscurin consists of dozens of individually-folded domains linked together. Given obscurin’s shape and position in the cell, it likely responds to cell motion and stretch by itself stretching and compressing. One outstanding question is how obscurin accomplishes this. Here, we begin to probe the molecular mechanism and outcomes of obscurin stretch resistance. We hypothesize that obscurin could either act like a rope, only resisting stretch when fully …


Studies Into The Structure And Function Of Various Domains Of Obscurin And Titin, Rachel A. Policke 2017 James Madison University

Studies Into The Structure And Function Of Various Domains Of Obscurin And Titin, Rachel A. Policke

Senior Honors Projects, 2010-2019

Muscles give our bodies the ability to move by stretching and contracting. While contraction is accomplished by the well-known actin-myosin interaction, not much is known about stretch. Two integral muscle proteins involved in stretch are titin and obscurin; both are long rope-like protein molecules that seem to act as molecular springs. Mutations in these two proteins can lead to diseases such as hypertrophic cardiomyopathy and muscular dystrophy, as well as a variety of cancers. In an effort to understand muscle stretch and signaling on a more fundamental level, here we present the high resolution structure of obscurin Ig59, a domain …


The Role Of Semaphorin 5a In Pancreatic Cancer Progression And Metastasis, Sugandha Saxena Dr. 2017 University of Nebraska Medical Center

The Role Of Semaphorin 5a In Pancreatic Cancer Progression And Metastasis, Sugandha Saxena Dr.

Theses & Dissertations

Pancreatic cancer (PC) is an aggressive disease with an overall 5-year survival rate of less than 7%, statistics that have not changed in almost five decades. Metastasis is one of the leading causes of mortality in PC. Accumulating evidence suggests that axon guidance molecules, such as semaphorins, are involved in cancer progression, invasion, and metastasis. Recent genomic characterization of pancreatic ductal adenocarcinoma revealed aberration in axon guidance pathway genes as well. Previous reports from our laboratory have identified one such molecule Semaphorin5A (SEMA5A) as a putative cell adhesion molecule which is involved in organ-specific homing during PC metastasis. My dissertation …


Epigenetic Regulation Of Salicylic Acid-Mediated Plant Defense, Phillip Key 2017 University of South Carolina

Epigenetic Regulation Of Salicylic Acid-Mediated Plant Defense, Phillip Key

Senior Theses

Plant pathogens remain a significant threat to the stability of modern agricultural systems, and the investigation of mechanisms to improve the security of food resources has led to the partial characterization of plant immune response. With this progress, there is a newfound ability to analyze the relative pathogen resistance capability of specifically modified organisms, and in doing so, it is possible to identify individual alterations that might play a role in creating a more robust immune response. In this study, ten Arabidopsis thaliana mutants were infiltrated with Pseudomonas syringae pv. morsprunorum alongside positive and negative control Col-0 Wild-Type and npr1-2. …


Paper Microzone Plates As Analytical Tools For Studying Enzyme Stability: A Case Study On The Stabilization Of Horseradish Peroxidase Using Trehalose And Su-8 Epoxy Novolac Resin, Kirsten A. Ganaja, Cory Chaplan, Jingyi Zhang, Nathaniel W. Martinez, Andres W. Martinez 2017 California Polytechnic State University, San Luis Obispo

Paper Microzone Plates As Analytical Tools For Studying Enzyme Stability: A Case Study On The Stabilization Of Horseradish Peroxidase Using Trehalose And Su-8 Epoxy Novolac Resin, Kirsten A. Ganaja, Cory Chaplan, Jingyi Zhang, Nathaniel W. Martinez, Andres W. Martinez

Chemistry and Biochemistry

Paper microzone plates in combination with a noncontact liquid handling robot were demonstrated as tools for studying the stability of enzymes stored on paper. The effect of trehalose and SU-8 epoxy novolac resin (SU-8) on the stability of horseradish peroxidase (HRP) was studied in both a short-term experiment, where the activity of various concentrations of HRP dried on paper were measured after 1 h, and a long-term experiment, where the activity of a single concentration of HRP dried and stored on paper was monitored for 61 days. SU-8 was found to stabilize HRP up to 35 times more than trehalose …


Protocols And Pitfalls In Obtaining Fatty Acid-Binding Proteins For Biophysical Studies Of Ligand-Protein And Protein-Protein Interactions, Qian Wang, Samar Rizk, Cédric Bernard, May Poh Lai, David Kam, Judith Storch, Ruth E. Stark 2017 CUNY Graduate Center

Protocols And Pitfalls In Obtaining Fatty Acid-Binding Proteins For Biophysical Studies Of Ligand-Protein And Protein-Protein Interactions, Qian Wang, Samar Rizk, Cédric Bernard, May Poh Lai, David Kam, Judith Storch, Ruth E. Stark

Publications and Research

Adipocyte fatty acid-binding protein (AFABP: FABP4) is a member of the intracellular lipid-binding protein family that is thought to target long-chain fatty acids to nuclear receptors such as peroxisome proliferatoractivated receptor gamma (PPARγ), which in turn plays roles in insulin resistance and obesity. A molecular understanding of AFABP function requires robust isolation of the protein in liganded and free forms as well as characterization of its oligomerization state(s) under physiological conditions. We report development of a protocol to optimize the production of members of this protein family in pure form, including removal of their bound lipids by mixing with hydrophobically …


Organ-Specific Transcriptome Profiling Of Metabolic And Pigment Biosynthesis Pathways In The Floral Ornamental Progenitor Species Anthurium Amnicola Dressler, Jon Suzuki, Teresita D. Amore, Bernarda Calla, Nathan A. Palmer, Erin D. Scully, Scott E. Sattler, Gautam Sarath, Joanne S. Lichty, Roxanna Y. Myers, Lisa M. Keith, Tracie K. Matsumoto, Scott M. Geib 2017 USDA-ARS

Organ-Specific Transcriptome Profiling Of Metabolic And Pigment Biosynthesis Pathways In The Floral Ornamental Progenitor Species Anthurium Amnicola Dressler, Jon Suzuki, Teresita D. Amore, Bernarda Calla, Nathan A. Palmer, Erin D. Scully, Scott E. Sattler, Gautam Sarath, Joanne S. Lichty, Roxanna Y. Myers, Lisa M. Keith, Tracie K. Matsumoto, Scott M. Geib

United States Department of Agriculture-Agricultural Research Service / University of Nebraska-Lincoln: Faculty Publications

Anthurium amnicola Dressler possesses a number of desirable and novel ornamental traits such as a purple-colored upright spathe, profuse flowering, and floral scent, some of which have been introgressed into modern Anthurium cultivars. As a first step in identifying genes associated with these traits, the transcriptome from root, leaf, spathe, and spadix from an accession of A. amnicola was assembled, resulting in 28,019 putative transcripts representing 19,458 unigenes. Genes involved in pigmentation, including those for the metabolism of chlorophyll and the biosynthesis of carotenoids, phenylpropanoids, and flavonoids were identified. The expression levels of one MYB transcription factor was highly …


Mri Applications In Tissue Engineering, Shadi Othman 2017 University of the Pacific

Mri Applications In Tissue Engineering, Shadi Othman

Science Seminar Series

Shadi Othman of the School of Engineering and Computer Science Bioengineering Program, will speak on his research on MRI applications in tissue engineering.


Genetic Metabolic Complementation Establishes A Requirement For Gdp-Fucose In Leishmania, Hongjie Guo, Natalia M. Novozhilova, Giulia Bandini, Salvatore J. Turco, Michael A. L. Ferguson, Stephen M. Beverley 2017 Washington University in St. Louis

Genetic Metabolic Complementation Establishes A Requirement For Gdp-Fucose In Leishmania, Hongjie Guo, Natalia M. Novozhilova, Giulia Bandini, Salvatore J. Turco, Michael A. L. Ferguson, Stephen M. Beverley

Molecular and Cellular Biochemistry Faculty Publications

To survive in its sand fly vector, the trypanosomatid protozoan parasite Leishmania first attaches to the midgut to avoid excretion, but eventually it must detach for transmission by the next bite. In Leishmania major strain Friedlin, this is controlled by modifications of the stage-specific adhesin lipophosphoglycan (LPG). During differentiation to infective metacyclics, d-arabinopyranose (d-Arap) caps the LPG side-chain galactose residues, blocking interaction with the midgut lectin PpGalec, thereby leading to parasite detachment and transmission. Previously, we characterized two closely related L. major genes (FKP40 and AFKP80) encoding bifunctional proteins with kinase/pyrophosphorylase activities required for salvage and …


Mechanism Of Lck Activation In Driving Leukemia Cell Proliferation, Hannah E. Dobson 2017 University of Rhode Island

Mechanism Of Lck Activation In Driving Leukemia Cell Proliferation, Hannah E. Dobson

Senior Honors Projects

Leukemia is a type of cancer that develops in blood-forming tissues of the immune system. These tissues can include the bone marrow or sites within the lymphatic system such as the lymph nodes. Leukemia progresses from a mutational event within a white blood cell. Often this mutation alters the cell’s normal life cycle, resulting in uninhibited cell division and growth. With this uncontrolled cell proliferation, mutated white blood cells accumulate and begin interfering with the functioning of healthy cells.

Scientists are unsure of the exact mechanisms required for leukemia development. However, recently scientists identified four characteristic mutations in the protein …


Transcriptomic Effects Of Dispersed Oil In A Non-Model Decapod Crustacean, Hernan Vazquez-Miranda, Brent Thoma, Juliet Wong, Darryl Felder, Keith A. Crandall, Heather Bracken-Grissom 2017 George Washington University

Transcriptomic Effects Of Dispersed Oil In A Non-Model Decapod Crustacean, Hernan Vazquez-Miranda, Brent Thoma, Juliet Wong, Darryl Felder, Keith A. Crandall, Heather Bracken-Grissom

Computational Biology Institute

Background. Oil spills are major environmental disasters. Dispersants help control spills, as they emulsify oil into droplets to speed bioremediation. Although dispersant toxicity is controversial, the genetic consequences and damages of dispersed oil exposure are poorly understood. We used RNA-seq to measure gene expression of flatback mudcrabs (Eurypanopeus depressus, Decapoda, Brachyura, Panopeidae) exposed to dispersed oil.

Methods. Our experimental design included two control types, oil-only, and oil-dispersant treatments with three replicates each. We prepared 100 base pair-ended libraries from total RNA and sequenced them in one Illumina HiSeq2000 lane. We assembled a reference transcriptome with all replicates per treatment, …


Mapping The Interaction Between Lrrc59 And Cip2a Oncoprotein, Tamika C. Reed 2017 Rowan University

Mapping The Interaction Between Lrrc59 And Cip2a Oncoprotein, Tamika C. Reed

Graduate School of Biomedical Sciences Theses and Dissertations

The oncogene cancerous inhibitor of protein phosphatase 2A (CIP2A) has been shown to promote oncogenesis through numerous protein-protein interactions. CIP2A was initially found to be a direct inhibitor of the PP2A tumor suppressor protein; however, new research has demonstrated that CIP2A can act independently of PP2A through protein-protein interactions resulting in deregulation of the cell cycle and the development of therapeutic drug resistance, tumorigenesis, and cell proliferation. It has been shown that leucine rich repeat containing 59 protein (LRRC59) binds to and is required for the nuclear translocation of CIP2A, thereby making this interaction a target for drug therapy. Thus, …


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