Combined Metformin And Resveratrol Confers Protection Against Uvc-Induced Dna Damage In A549 Lung Cancer Cells Via Modulation Of Cell Cycle Checkpoints And Dna Repair,
2016
New York Medical College
Combined Metformin And Resveratrol Confers Protection Against Uvc-Induced Dna Damage In A549 Lung Cancer Cells Via Modulation Of Cell Cycle Checkpoints And Dna Repair, Yong-Syu Lee, Barbara B. Doonan, Joseph M. Wu, Tze-Chen Hsieh
NYMC Faculty Publications
Aging in humans is a multi-factorial cellular process that is associated with an increase in the risk of numerous diseases including diabetes, coronary heart disease and cancer. Aging is linked to DNA damage, and a persistent source of DNA damage is exposure to ultraviolet (UV) radiation. As such, identifying agents that confer protection against DNA damage is an approach that could reduce the public health burden of age-related disorders. Metformin and resveratrol have both shown effectiveness in preventing several age-related diseases; using human A549 cells, we investigated whether metformin or resveratrol, alone or combined, prevent UVC-induced DNA damage. We found …
The Role Of Daf-19 In Non-Ciliated Neurons: How Is Neural Development Regulated By Different Daf-19 Isoforms?,
2016
Lawrence University
The Role Of Daf-19 In Non-Ciliated Neurons: How Is Neural Development Regulated By Different Daf-19 Isoforms?, Zabdiel Ek Vazquez
Lawrence University Honors Projects
A degenerative disease-like phenotype, specifically reduction in synaptic protein levels in adult worms, is correlated with loss-of-function of the only RFX transcription factor gene, daf-19, in C. elegans. This gene encodes four known transcription factor isoforms, two of which are correlated with particular functions. The DAF-19C isoform activates genes responsible for cilia development, while DAF-19M is needed for cilia specification in males. A comparison of the transcriptome of daf-19 null and isogenic wild type adult worms suggests both positive and negative regulation of gene expression is correlated with the presence of DAF-19 proteins. We have assessed DAF-19 regulation …
Influencing Pathways That Cause Metastasis And Stemness In Epithelial Ovarian Cancer,
2016
California State University - San Bernardino
Influencing Pathways That Cause Metastasis And Stemness In Epithelial Ovarian Cancer, Alyse Lynn Huisken-Hill
Electronic Theses, Projects, and Dissertations
Ovarian cancer is the fifth leading cause of cancer death in women between the ages of 35 and 74. With 22 thousand new cases and 15 thousand deaths annually ovarian cancer is among the most deadly cancers with a death to incidence ratio of 68%. With 70% of cases High Grade Serous Ovarian Carcinoma (HGSOC) is the most common type of ovarian cancer and causes 90% of ovarian cancer deaths. 80% of patients have reoccurrence within five years and only 15-30% of patients with recurrent metastatic ovarian cancer respond to current therapies, chemotherapy and surgery. One reason for the high …
Purification, Optimization, And Growth Of New Delhi Metallo-Β-Lactamase-1 Protein Crystals Mixed With Nz218 Inhibitor,
2016
Augustana College, Rock Island Illinois
Purification, Optimization, And Growth Of New Delhi Metallo-Β-Lactamase-1 Protein Crystals Mixed With Nz218 Inhibitor, Brandon M. Wills
Celebration of Learning
New Delhi metallo-β-lactamase-1 is a problematic gene found in certain strains of bacteria that cause them to become antibiotic resistant to nearly all known antibiotics. While some antibiotics are available to treat patients with a bacterial infection, most are toxic or do not have 100% success rates. With that being said, it is imperative that we search for a molecule that is successfully able to inhibit the effects of this gene every time. Such a discovery would help tremendously with new antibiotic drug development and also prevent further damage by these dangerous bacteria. In this presentation, I will describe the …
Hiv Vaccines: Progress, Limitations And A Crispr/Cas9 Vaccine,
2016
Augustana College, Rock Island Illinois
Hiv Vaccines: Progress, Limitations And A Crispr/Cas9 Vaccine, Omar A. Garcia Martinez
Biology: Student Scholarship & Creative Works
ABSTRACT: The HIV-1 pandemic continues to thrive due to ineffective HIV-1 vaccines. Historically, the world’s most infectious diseases, such as polio and smallpox, have been eradicated or have come close to eradication due to the advent of effective vaccines. Highly active antiretroviral therapy is able to delay the onset of AIDS but can neither rid the body of HIV-1 proviral DNA nor prevent further transmission. A prophylactic vaccine that prevents the various mechanisms HIV-1 has to evade and attack our immune system is needed to end the HIV-1 pandemic. Recent advances in engineered nuclease systems, like the CRISPR/Cas9 system, have …
Translation Control Of Swarming Proficiency In Bacillus Subtilis By 5-Amino-Pentanolylated Elongation Factor P,
2016
The Ohio State University
Translation Control Of Swarming Proficiency In Bacillus Subtilis By 5-Amino-Pentanolylated Elongation Factor P, Andrei Rajkovic, Katherine R. Hummels, Anne Witzky, Sarah Erickson, Philip R. Gafken, Julian P. Whitelegge, Kym F. Faull, Daniel B. Kearns, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Elongation factor P (EF-P) accelerates diprolyl synthesis and requires a posttranslational modification to maintain proteostasis. Two phylogenetically distinct EF-P modification pathways have been described and are encoded in the majority of Gram-negative bacteria, but neither is present in Gram-positive bacteria. Prior work suggested that the EF-P-encoding gene (efp) primarily supports Bacillus subtilis swarming differentiation, whereas EF-P in Gram-negative bacteria has a more global housekeeping role, prompting our investigation to determine whether EF-P is modified and how it impacts gene expression in motile cells. We identified a 5-aminopentanol moiety attached to Lys32 of B. subtilis EF-P that is …
Antioxidant And Hepatoprotective Effects Of Procyanidins Fromwild Grape (Vitis Amurensis) Seeds In Ethanol-Induced Cells And Rats,
2016
Inje University
Antioxidant And Hepatoprotective Effects Of Procyanidins Fromwild Grape (Vitis Amurensis) Seeds In Ethanol-Induced Cells And Rats, Min Ji Bak, Van-Long Truong, Se-Yeon Ko, Xuan Ngan Giang Nguyen, Pajaree Ingkasupart, Mira Jun, Jin Young Shin, Woo-Sik Jeong
Publications and Research
In the present study, we characterized the antioxidant and hepatoprotective mechanisms underlying of wild grape seed procyanidins (WGP) against oxidative stress damage in ethanol-treated HepG2 cell and Sprague-Dawley (SD)-rat models. In HepG2 cells, WGP not only diminished the ethanol (EtOH, 100 mM)-induced reactive oxygen species (ROS) formation and cytochrome P450 2E1 (CYP2E1) expression, but also renovated both the activity and expression of antioxidant enzymes including catalase, superoxide dismutase, and glutathione peroxidase. Additionally, to investigate the hepatoprotective effect of WGP, rats were orally administered 10 or 50 mg/kg WGP once daily for seven days prior to the single oral administration of …
Flow-Dependent Myosin Recruitment During Drosophila Cellularization Requires Zygotic Dunk Activity,
2016
Dartmouth College
Flow-Dependent Myosin Recruitment During Drosophila Cellularization Requires Zygotic Dunk Activity, Bing He, Adam Martin, Eric Wieschaus
Dartmouth Scholarship
Actomyosin contractility underlies force generation in morphogenesis ranging from cytokinesis to epithelial extension or invagination. In Drosophila, the cleavage of the syncytial blastoderm is initiated by an actomyosin network at the base of membrane furrows that invaginate from the surface of the embryo. It remains unclear how this network forms and how it affects tissue mechanics. Here, we show that during Drosophila cleavage, myosin recruitment to the cleavage furrows proceeds in temporally distinct phases of tension-driven cortical flow and direct recruitment, regulated by different zygotic genes. We identify the gene dunk, which we show is transiently transcribed when cellularization starts …
Multiple Quality Control Pathways Limit Non-Protein Amino Acid Use By Yeast Cytoplasmic Phenylalanyl-Trna Synthetase,
2016
The Ohio State University
Multiple Quality Control Pathways Limit Non-Protein Amino Acid Use By Yeast Cytoplasmic Phenylalanyl-Trna Synthetase, Adil Moghal, Lin Hwang, Kym F. Faull, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Non-protein amino acids, particularly isomers of the proteinogenic amino acids, present a threat to proteome integrity if they are mistakenly inserted into proteins. Quality control during aminoacyl-tRNA synthesis reduces non-protein amino acid incorporation by both substrate discrimination and proofreading. For example phenylalanyl-tRNA synthetase (PheRS) proofreads the non-protein hydroxylated phenylalanine derivative m-Tyr after its attachment to tRNAPhe. We now show in Saccharomyces cerevisiae that PheRS misacylation of tRNAPhe with the more abundant Phe oxidation product o-Tyr is limited by kinetic discrimination against o-Tyr-AMP in the transfer step followed by o-Tyr-AMP release from the synthetic …
The Sh3 Domain Of Unc-89 (Obscurin) Interacts With Paramyosin, A Coiled-Coil Protein, In Caenorhabditis Elegans Muscle,
2016
Emory University
The Sh3 Domain Of Unc-89 (Obscurin) Interacts With Paramyosin, A Coiled-Coil Protein, In Caenorhabditis Elegans Muscle, Hiroshi Qadota, Jonathan Mcmurry, Verra M. Ngwa, Et Al.
Faculty Articles
UNC-89 is a giant polypeptide located at the sarcomeric M-line of Caenorhabditis elegans muscle. The human homologue is obscurin. To understand how UNC-89 is localized and functions, we have been identifying its binding partners. Screening a yeast two-hybrid library revealed that UNC-89 interacts with paramyosin. Paramyosin is an invertebrate-specific coiled-coil dimer protein that is homologous to the rod portion of myosin heavy chains and resides in thick filament cores. Minimally, this interaction requires UNC-89’s SH3 domain and residues 294–376 of paramyosin and has a KD of ∼1.1 μM. In unc-89 loss-of-function mutants that lack the SH3 domain, paramyosin is found …
Purification And Characterization Of Antibodies Against Killifish Hif-1Α,
2016
University of New Orleans, New Orleans
Purification And Characterization Of Antibodies Against Killifish Hif-1Α, Janet Gonzalez-Rosario
LSU New Orleans Theses and Dissertations
Many fish face low oxygen concentrations (hypoxia) in their natural environments, and they respond to hypoxia through a variety of behavioral, physiological, and cellular mechanisms. Some of these responses involve changes in gene expression. In mammals, the hypoxia inducible factor (HIF) family of transcription factors are the “master regulators” of gene expression during hypoxia, but the study of HIF in fish has been hampered by the lack of reagents to detect this protein in non-mammalian vertebrates. The goals of this thesis are to affinity purify antibodies against HIF from the killifish Fundulus heteroclitus and use them to recover and quantify …
A Novel Variant In Cmah Is Associated With Blood Type Ab In Ragdoll Cats,
2016
University of Missouri
A Novel Variant In Cmah Is Associated With Blood Type Ab In Ragdoll Cats, Barbara Gandolfi, Robert Grahn, Nicholas Gustafson, Daniela Proverbio, Eva Spada, Badri Adhikari, Janling Cheng, Gordon Andrews, Leslie Lyons, Chris Helps
Computer Science Faculty Works
The enzyme cytidine monophospho-N-acetylneuraminic acid hydroxylase is associated with the production of sialic acids on cat red blood cells. The cat has one major blood group with three serotypes; the most common blood type A being dominant to type B. A third rare blood type is known as AB and has an unclear mode of inheritance. Cat blood type antigens are defined, with N-glycolylneuraminic acid being associated with type A and N-acetylneuraminic acid with type B. Blood type AB is serologically characterized by agglutination using typing reagents directed against both A and B epitopes. While a genetic characterization of blood …
Non-Canonical Roles Of Trnas And Trna Mimics In Bacterial Cell Biology,
2016
Universidad de Chile
Non-Canonical Roles Of Trnas And Trna Mimics In Bacterial Cell Biology, Assaf Katz, Sara Elgamal, Andrei Rajkovic, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Transfer RNAs (tRNAs) are the macromolecules that transfer activated amino acids from aminoacyl‐tRNA synthetases to the ribosome, where they are used for the mRNA guided synthesis of proteins. Transfer RNAs are ancient molecules, perhaps even predating the existence of the translation machinery. Albeit old, these molecules are tremendously conserved, a characteristic that is well illustrated by the fact that some bacterial tRNAs are efficient and specific substrates of eukaryotic aminoacyl‐tRNA synthetases and ribosomes. Considering their ancient origin and high structural conservation, it is not surprising that tRNAs have been hijacked during evolution for functions outside of translation. These roles beyond …
Determining The Role Of Erbeta In The Activation Of Erk1/2 By The Environmental Estrogens, Cadmium Chloride And Sodium Arsenite, In Human Lung Adenocarcinoma Cells,
2016
Bellarmine University
Determining The Role Of Erbeta In The Activation Of Erk1/2 By The Environmental Estrogens, Cadmium Chloride And Sodium Arsenite, In Human Lung Adenocarcinoma Cells, Jeffrey Hyzer
Undergraduate Theses
Estrogen is involved in the proliferation of adenocarcinoma lung cells. However, the proliferative role of two endocrine disrupters, cadmium chloride and sodium arsenite, in lung adenocarcinoma is less clear. Previous studies have shown that these two heavy metals can induce cellular proliferation and activate phosphorylation of ERK1/2 in a human lug adenocarcinoma cell line, NCI-H1793. Induced phosphorylation of ERK1/2 by these compounds is decreased in the presence of an estrogen receptor antagonist, ICI-182,780, suggesting that cadmium and arsenite stimulate these responses, in part, via a non-genomic estrogen signaling pathway. There are three known estrogen receptors, but it is unclear which …
Connecting The Physiological And Behavioral Response To Heat Stress On A Warming Planet,
2016
Chapman University
Connecting The Physiological And Behavioral Response To Heat Stress On A Warming Planet, Anastasia Kalyta
Student Scholar Symposium Abstracts and Posters
Intertidal communities are considered good models of the biological effects of climate change on ecosystems, as their resident organisms are subjected to heat spells during daytime low tides. The increasing heat exposure can elicit behavioral as well as physiological responses in intertidal organisms. We studied the relationship between these responses to heat stress in the blue-banded hermit crab, Pagurus samuelis, by inducing a “heat shock” with elevated water temperature of 29 °C for 2.5 h. The behavioral effect of heat-shock was quantified using a 30-minute feeding assay, measuring the mass of a standard squid pellet consumed by individual hermit crabs. …
Novel Cell Penetrating Peptides Effect Endosomal Escape And Deliver Protein Cargos Into Living Cells,
2016
Kennesaw State University
Novel Cell Penetrating Peptides Effect Endosomal Escape And Deliver Protein Cargos Into Living Cells, Verra M. Ngwa
Master of Science in Chemical Sciences Theses
Over the last decade a number of peptides that are rapidly internalized by mammalian cells have been discovered or designed. Cell-penetrating peptides (CPPs) are capable of mediating penetration of the plasma membrane, allowing delivery of macromolecular cargoes to the cell interior. We have developed a novel CPP-adaptor protein technology that allows any user-defined cargo delivery and release into the cytoplasm. Our hypothesis is that a CPP-adaptor with a moiety allowing high-affinity but reversible non-covalent cargo binding would lead to more efficient penetration and release than current CPP delivery strategies. Delivery of proteins to the interiors of cells has many applications. …
Searching For Potential Binding Partners Of Arabidopsis Β-Amylase2 Using Yeast 2-Hybridization,
2016
James Madison University
Searching For Potential Binding Partners Of Arabidopsis Β-Amylase2 Using Yeast 2-Hybridization, Megan E. Hines
Senior Honors Projects, 2010-2019
BAM2 is a chloroplast-targeted member of the β-amylase gene family that currently has an unknown function in starch hydrolysis. Previous research indicated that BAM2 did not have significant catalytic activity, but, because the gene is highly conserved and there is a starch-excess phenotype in older plants lacking BAM2, it was hypothesized that BAM2 may instead have a regulatory function. Many regulatory proteins function by interacting with other proteins, so we wanted to test for potential protein binding partners for BAM2 using the yeast two-hybrid system. A plasmid containing the BAM2 gene from Arabidopsis thaliana was co-transformed into Y190-strain yeast ( …
The Purification And Characterization Of Beta-Amylase6 In Arabidopsis Thaliana,
2016
James Madison University
The Purification And Characterization Of Beta-Amylase6 In Arabidopsis Thaliana, Catherine E. Torres
Senior Honors Projects, 2010-2019
Experimental evidence indicates that the family of beta-amylase (BAM) proteins is largely responsible for the hydrolysis of starch in land plants. In Arabidopsis thaliana there are nine BAM genes, six of which are targeted to the chloroplast, but only four of those are presumed to be catalytically active: BAM1, -2, -3, and -6. Currently, little is known about the expression, characterization, or function of BAM6. Our study of starch accumulation in Arabidopsis indicates that BAM6 may be playing a role in older plants, although it has a minimal role in young plants. To further investigate the function of BAM6 we …
Epigenetic Characterization Of Human Retina Cells,
2016
James Madison University
Epigenetic Characterization Of Human Retina Cells, Nicholas R. Dunham
Senior Honors Projects, 2010-2019
DNA methylation is an epigenetic modifier that modulates gene expression in plant and vertebrate genomes. The aim of this study was to characterize the role of DNA methylation in the human retina, particularly within rod and cone photoreceptor retinal neurons. Previous studies investigating DNA methylation in murine retinal cells and retina-derived human retinoblastoma immortalized cell culture lines demonstrate an inverse relationship between DNA methylation and transcriptional activity. Here, we used gene-specific bisulfite pyrosequencing analysis to measure DNA methylation in the genomes of human ocular cells in an effort to characterize the role of this important epigenetic modifier. These results can …
Molecular Mechanisms Regulating Myc And Pgc1Β Expression In Colon Cancer,
2016
University of Nebraska Medical Center
Molecular Mechanisms Regulating Myc And Pgc1Β Expression In Colon Cancer, Jamie L. Mccall
Theses & Dissertations
Identification and characterization of pathways specific to tumor cell survival, but absent in normal tissues, provide opportunities to develop effective cancer therapies with reduced toxicity to the patient. Kinase suppressor of Ras 1 (KSR1) is required for the survival of colorectal cancer (CRC) cells, but dispensable in normal cells. Using KSR1 as a reference standard, we identified EPH (erythropoietin-producing hepatocellular carcinoma) receptor (EPHB4) as a KSR1 functional analog.
We show here that, like KSR1, EPHB4 is aberrantly overexpressed in human CRC cells and selectively required for their survival. Both KSR1 and EPHB4 support tumor cell survival by promoting the expression …
