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Medical Biochemistry

2019

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Full-Text Articles in Medicine and Health Sciences

The Histone Deacetylase Inhibitor Tubacin Mitigates Endothelial Dysfunction By Up-Regulating The Expression Of Endothelial Nitric Oxide Synthase., Jihui Chen, Jian Zhang, Noor F. Shaik, Bing Yi, Xin Wei, Xiao-Feng Yang, Ulhas P. Naik, Ross Summer, Guijun Yan, Xinyun Xu, Jianxin Sun Dec 2019

The Histone Deacetylase Inhibitor Tubacin Mitigates Endothelial Dysfunction By Up-Regulating The Expression Of Endothelial Nitric Oxide Synthase., Jihui Chen, Jian Zhang, Noor F. Shaik, Bing Yi, Xin Wei, Xiao-Feng Yang, Ulhas P. Naik, Ross Summer, Guijun Yan, Xinyun Xu, Jianxin Sun

Center for Translational Medicine Faculty Papers

Endothelial nitric oxide (NO) synthase (eNOS) plays a critical role in the maintenance of blood vessel homeostasis. Recent findings suggest that cytoskeletal dynamics play an essential role in regulating eNOS expression and activation. Here, we sought to test whether modulation of cytoskeletal dynamics through pharmacological regulation of histone deacetylase 6 (HDAC6)-mediated tubulin deacetylation affects eNOS expression and endothelial function in vitro and in vivo.Wefound that tubulin acetylation inducer (tubacin), a compound that appears to selectively inhibit HDAC6 activity, dramatically increased eNOS expression in several different endothelial cell lines, as determined by both immunoblotting and NO production assays. Mechanistically, we found …


Gasdermins In Apoptosis: New Players In An Old Game., Corey Rogers, Emad S. Alnemri Dec 2019

Gasdermins In Apoptosis: New Players In An Old Game., Corey Rogers, Emad S. Alnemri

Department of Biochemistry and Molecular Biology Faculty Papers

Apoptosis is a form of programmed cell death (PCD) that plays critical physiological roles in removing superfluous or dangerous cell populations that are unneeded or threatening to the health of the host organism. Although the molecular pathways leading to activation of the apoptotic program have been extensively studied and characterized starting in the 1970s, new evidence suggests that members of the gasdermin superfamily are novel pore-forming proteins that augment apoptosis by permeabilizing the mitochondria and participate in the final stages of the apoptotic program by inducing secondary necrosis/pyroptosis. These findings may explain outstanding questions in the field such as why …


An In-Depth Review Of Retinitis Pigmentosa Development And Pathologies Overtime In Patients, Abdul Harris Dec 2019

An In-Depth Review Of Retinitis Pigmentosa Development And Pathologies Overtime In Patients, Abdul Harris

Honors College Theses

Retinitis Pigmentosa is a disease which can cause blindness and affects around 2.5 million people worldwide. It is a disorder that has a multitude of ways of being inherited, such as autosomal dominant, autosomal recessive as well as X-linked and mitochondrial linked disorder. While some versions of RP may be syndromic (20%-30%), a majority of cases are in fact non-syndromic. The majority of non-syndromic cases inherited via autosomal dominant RP having RHO gene mutations, and X-linked means of inheritance having majority of patients with RPGR gene mutations. Ushers Syndrome, a syndromic version of retinitis pigmentosa and autosomal recessive RP having …


Alzheimer's And Amyloid Beta: Amyloidogenicity And Tauopathy Via Dyshomeostatic Interactions Of Amyloid Beta, Jordan Tillinghast Dec 2019

Alzheimer's And Amyloid Beta: Amyloidogenicity And Tauopathy Via Dyshomeostatic Interactions Of Amyloid Beta, Jordan Tillinghast

Senior Honors Theses

This paper reviews functions of Amyloid-β (Aβ) in healthy individuals compared to the consequences of aberrant Aβ in Alzheimer’s disease (AD). As extraneuronal Aβ accumulation and plaque formation are characteristics of AD, it is reasonable to infer a pivotal role for Aβ in AD pathogenesis. Establishing progress of the disease as well as the mechanism of neurodegeneration from AD have proven difficult (Selkoe, 1994). This thesis provides evidence suggesting the pathogenesis of AD is due to dysfunctional neuronal processes involving Aβ’s synaptic malfunction, abnormal interaction with tau, and disruption of neuronal homeostasis. Significant evidence demonstrates that AD symptoms are partially …


Allele-Specific Rna Interference Prevents Neuropathy In Charcot-Marie-Tooth Disease Type 2d Mouse Models., Kathryn H Morelli, Laurie B Griffin, Nettie K Pyne, Lindsay M Wallace, Allison M Fowler, Stephanie N Oprescu, Ryuichi Takase, Na Wei, Rebecca Meyer-Schuman, Dattatreya Mellacheruvu, Jacob O Kitzman, Samuel G Kocen, Timothy J Hines, Emily L Spaulding, James R Lupski, Alexey Nesvizhskii, Pedro Mancias, Ian J Butler, Xiang-Lei Yang, Ya-Ming Hou, Anthony Antonellis, Scott Q Harper, Robert W Burgess Dec 2019

Allele-Specific Rna Interference Prevents Neuropathy In Charcot-Marie-Tooth Disease Type 2d Mouse Models., Kathryn H Morelli, Laurie B Griffin, Nettie K Pyne, Lindsay M Wallace, Allison M Fowler, Stephanie N Oprescu, Ryuichi Takase, Na Wei, Rebecca Meyer-Schuman, Dattatreya Mellacheruvu, Jacob O Kitzman, Samuel G Kocen, Timothy J Hines, Emily L Spaulding, James R Lupski, Alexey Nesvizhskii, Pedro Mancias, Ian J Butler, Xiang-Lei Yang, Ya-Ming Hou, Anthony Antonellis, Scott Q Harper, Robert W Burgess

Department of Biochemistry and Molecular Biology Faculty Papers

Gene therapy approaches are being deployed to treat recessive genetic disorders by restoring the expression of mutated genes. However, the feasibility of these approaches for dominantly inherited diseases - where treatment may require reduction in the expression of a toxic mutant protein resulting from a gain-of-function allele - is unclear. Here we show the efficacy of allele-specific RNAi as a potential therapy for Charcot-Marie-Tooth disease type 2D (CMT2D), caused by dominant mutations in glycyl-tRNA synthetase (GARS). A de novo mutation in GARS was identified in a patient with a severe peripheral neuropathy, and a mouse model precisely recreating the mutation …


Discovery Of Novel Mechanisms Regulating Cancer Extravasation In The Chorioallantoic Membrane Model, Yohan Kim Nov 2019

Discovery Of Novel Mechanisms Regulating Cancer Extravasation In The Chorioallantoic Membrane Model, Yohan Kim

Electronic Thesis and Dissertation Repository

Cancer metastasis is a multistep process that begins with the invasion of tumour cells into the stroma and migration towards the blood vessels. Tumour cells that have entered the bloodstream must then survive and leave by a process known as extravasation. Finally, extravasated cells proliferate and establish the secondary site in the metastatic cascade. Although extravasation encompasses key events during cancer cell invasion to aid in the development of effective treatments, an in vivo model that rapidly, reproducibly and economically recapitulates cancer cell extravasation is needed. Therefore, the objectives of my research were to 1) establish and validate an in …


Phenylethynyl-Substituted Benzenes And Heterocycles For The Treatment Of Cancer, David S. Watt, Chunming Liu, Vitaliy M. Sviripa, Wen Zhang, Markos Leggas Oct 2019

Phenylethynyl-Substituted Benzenes And Heterocycles For The Treatment Of Cancer, David S. Watt, Chunming Liu, Vitaliy M. Sviripa, Wen Zhang, Markos Leggas

Molecular and Cellular Biochemistry Faculty Patents

Halogenated phenylethynyl-substituted heterocycles that possess either an N-alkylamino or N,N-dialkylamino group attached to the heterocycle or halogenated phenylethynyl-substituted benzenes that a nitrogen-containing heterocycle attached to the benzene inhibit the proliferation cancer cells and are useful antineoplastic agents.


Characterization Of Resistance To A Potent D-Peptide Hiv Entry Inhibitor., Amanda R Smith, Matthew T Weinstock, Amanda E Siglin, Frank G Whitby, J Nicholas Francis, Christopher P Hill, Debra M Eckert, Michael J Root, Michael S Kay Oct 2019

Characterization Of Resistance To A Potent D-Peptide Hiv Entry Inhibitor., Amanda R Smith, Matthew T Weinstock, Amanda E Siglin, Frank G Whitby, J Nicholas Francis, Christopher P Hill, Debra M Eckert, Michael J Root, Michael S Kay

Department of Biochemistry and Molecular Biology Faculty Papers

BACKGROUND: PIE12-trimer is a highly potent D-peptide HIV-1 entry inhibitor that broadly targets group M isolates. It specifically binds the three identical conserved hydrophobic pockets at the base of the gp41 N-trimer with sub-femtomolar affinity. This extremely high affinity for the transiently exposed gp41 trimer provides a reserve of binding energy (resistance capacitor) to prevent the viral resistance pathway of stepwise accumulation of modest affinity-disrupting mutations. Such modest mutations would not affect PIE12-trimer potency and therefore not confer a selective advantage. Viral passaging in the presence of escalating PIE12-trimer concentrations ultimately selected for PIE12-trimer resistant populations, but required an extremely …


Structural And Functional Analysis Of Parameters Governing Tankyrase-1 Interaction With Telomeric Repeat-Binding Factor 1 And Gdp-Mannose 4,6-Dehydratase., Travis Eisemann, Marie-France Langelier, John M. Pascal Oct 2019

Structural And Functional Analysis Of Parameters Governing Tankyrase-1 Interaction With Telomeric Repeat-Binding Factor 1 And Gdp-Mannose 4,6-Dehydratase., Travis Eisemann, Marie-France Langelier, John M. Pascal

Department of Biochemistry and Molecular Biology Faculty Papers

Human tankyrase-1 (TNKS) is a member of the poly(ADPribose) polymerase (PARP) superfamily of proteins that posttranslationally modify themselves and target proteins with ADP-ribose (termed PARylation). The TNKS ankyrin repeat domain mediates interactions with a growing number of structurally and functionally diverse binding partners, linking TNKS activity to multiple critical cell processes, including Wnt signaling, Golgi trafficking, and telomere maintenance. However, some binding partners can engage TNKS without being modified, suggesting that separate parameters influence TNKS interaction and PARylation. Here, we present an analysis of the sequence and structural features governing TNKS interactions with two model binding partners: The PARylated partner …


Antisense Oligonucleotide Modulators Of Serotonin Receptor 2c And Uses Thereof, Stefan Stamm, Manli Shen, Serene Josiah Sep 2019

Antisense Oligonucleotide Modulators Of Serotonin Receptor 2c And Uses Thereof, Stefan Stamm, Manli Shen, Serene Josiah

Molecular and Cellular Biochemistry Faculty Patents

The present invention provides, among other things, oligonucleotide modulators of human 5′-HT2C receptor (HTR2C) and improved methods and composition for treating HTR2C-related diseases, disorders or conditions based on such modulators. In particular, oligonucleotides modulators according to the invention target specific regions in the Exon V/Intron V junction of the human HTR2C pre-mRNA and drive expression of HTR2C Vb splice isoform, leading to increased generation of non-edited strong HTR2C receptor and enhanced serotonin receptor activity.


Eugenics In The 21st Century, Jessica Linn Chin Sep 2019

Eugenics In The 21st Century, Jessica Linn Chin

Dissertations, Theses, and Capstone Projects

Eugenics is the science of enhancing the human population through the management of breeding and hereditary traits. This thesis explores the history of eugenics and shows how eugenic practices continue in the 21st century with advancements in technology and positive eugenic goals that can result in adverse effects on the human body and society. When Sir Francis Galton coined the term eugenics in 1883, he intended to improve British society with the use of positive eugenics. Galton used positive eugenics to encourage people with good mental and physical qualities to produce more children. He avoided negative eugenics, which involved …


Ip3 Receptor Isoforms Differently Regulate Er-Mitochondrial Contacts And Local Calcium Transfer, Adam Bartok, David Weaver, Tünde Golenár, Zuzana Nichtova, Máté Katona, Száva Bánsághi, Kamil J. Alzayady, V. Kaye Thomas, Hideaki Ando, Katsuhiko Mikoshiba, Suresh K. Joseph, David I. Yule, György Csordás, György Hajnóczky Aug 2019

Ip3 Receptor Isoforms Differently Regulate Er-Mitochondrial Contacts And Local Calcium Transfer, Adam Bartok, David Weaver, Tünde Golenár, Zuzana Nichtova, Máté Katona, Száva Bánsághi, Kamil J. Alzayady, V. Kaye Thomas, Hideaki Ando, Katsuhiko Mikoshiba, Suresh K. Joseph, David I. Yule, György Csordás, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Contact sites of endoplasmic reticulum (ER) and mitochondria locally convey calcium signals between the IP3 receptors (IP3R) and the mitochondrial calcium uniporter, and are central to cell survival. It remains unclear whether IP3Rs also have a structural role in contact formation and whether the different IP3R isoforms have redundant functions. Using an IP3R-deficient cell model rescued with each of the three IP3R isoforms and an array of super-resolution and ultrastructural approaches we demonstrate that IP3Rs are required for maintaining ER-mitochondrial contacts. This role is independent of calcium fluxes. We also show that, while each isoform can support contacts, type …


Nuclear Magnetic Resonance Solution Structure And Functional Behavior Of The Human Proton Channel, Monika Bayrhuber, Innokentiy Maslennikov, Witek Kwiatkowski, Alexander Sobol, Christoph Wierschem, Cédric Eichmann, Lukas Frey, Roland Riek Jul 2019

Nuclear Magnetic Resonance Solution Structure And Functional Behavior Of The Human Proton Channel, Monika Bayrhuber, Innokentiy Maslennikov, Witek Kwiatkowski, Alexander Sobol, Christoph Wierschem, Cédric Eichmann, Lukas Frey, Roland Riek

Pharmacy Faculty Articles and Research

The human voltage-gated proton channel [Hv1(1) or VSDO(2)] plays an important role in the human innate immune system. Its structure differs considerably from those of other cation channels. It is built solely of a voltage-sensing domain and thus lacks the central pore domain, which is essential for other cation channels. Here, we determined the solution structure of an N- and C-terminally truncated human Hv1 (Δ-Hv1) in the resting state by nuclear magnetic resonance (NMR) spectroscopy. Δ-Hv1 comprises the typical voltage-sensing antiparallel four-helix bundle (S1–S4) preceded by an amphipathic helix (S0). The solution structure corresponds to an intermediate …


Myc-Mediated Transcriptional Regulation Of The Mitochondrial Chaperone Trap1 Controls Primary And Metastatic Tumor Growth., Ekta Agarwal, Brian J. Altman, Jae Ho Seo, Jagadish C. Ghosh, Andrew V Kossenkov, Hsin-Yao Tang, Shiv Ram Krishn, Lucia R. Languino, Dmitry I. Gabrilovich, David W. Speicher, Chi V. Dang, Dario C. Altieri Jul 2019

Myc-Mediated Transcriptional Regulation Of The Mitochondrial Chaperone Trap1 Controls Primary And Metastatic Tumor Growth., Ekta Agarwal, Brian J. Altman, Jae Ho Seo, Jagadish C. Ghosh, Andrew V Kossenkov, Hsin-Yao Tang, Shiv Ram Krishn, Lucia R. Languino, Dmitry I. Gabrilovich, David W. Speicher, Chi V. Dang, Dario C. Altieri

Department of Cancer Biology Faculty Papers

The role of mitochondria in cancer continues to be debated, and whether exploitation of mitochondrial functions is a general hallmark of malignancy or a tumor- or context-specific response is still unknown. Using a variety of cancer cell lines and several technical approaches, including siRNA-mediated gene silencing, ChIP assays, global metabolomics and focused metabolite analyses, bioenergetics, and cell viability assays, we show that two oncogenic Myc proteins, c-Myc and N-Myc, transcriptionally control the expression of the mitochondrial chaperone TNFR-associated protein- 1 (TRAP1) in cancer. In turn, this Myc-mediated regulation preserved the folding and function of mitochondrial oxidative phosphorylation (OXPHOS) complex II …


Towards Stable Electrochemical Sensing For Wearable Wound Monitoring, Sohini Roychoudhury Jul 2019

Towards Stable Electrochemical Sensing For Wearable Wound Monitoring, Sohini Roychoudhury

FIU Electronic Theses and Dissertations

Wearable biosensing has the tremendous advantage of providing point-of-care diagnosis and convenient therapy. In this research, methods to stabilize the electrochemical sensing response from detection of target biomolecules, Uric Acid (UA) and Xanthine, closely linked to wound healing, have been investigated. Different kinds of materials have been explored to address such detection from a wearable, healing platform. Electrochemical sensing modalities have been implemented in the detection of purine metabolites, UA and Xanthine, in the physiologically relevant ranges of the respective biomarkers. A correlation can be drawn between the concentrations of these bio-analytes and wound severity, thus offering probable quantitative insights …


Study Of Blood Viscosity With Added Sodium Nitrate And Temperature Variance: A Potential Therapy To Regulate Blood Flow After Induced Hypothermia, Brianna Munnich Jul 2019

Study Of Blood Viscosity With Added Sodium Nitrate And Temperature Variance: A Potential Therapy To Regulate Blood Flow After Induced Hypothermia, Brianna Munnich

Pence-Boyce STEM Student Scholarship

The human body has natural systems for vasodilation which are fueled by nitric oxide production, but in cases of cardiac disfunction and stress nitric oxide can be inhibited. In this study, nitric oxide was studied as a mediator for the blood rush experienced from the warming after induced hypothermia. Nitric oxide (NO) was introduced through sodium nitrate, which was aimed to reduce the speed and turbulence of blood flow through interaction between NO and the active site of hemoglobin. A viscometer was used to examine the rate of blood flow, while the temperature was varied to simulate the conditions of …


Modulation Of Inflammation Driven Wound Healing After Glaucoma Surgery, James J. Armstrong Jun 2019

Modulation Of Inflammation Driven Wound Healing After Glaucoma Surgery, James J. Armstrong

Electronic Thesis and Dissertation Repository

Dysregulated wound healing contributes to most currently unanswered ophthalmological morbidity. Opacification and structure altering contractures compromise the delicate ocular anatomy upon which ocular function and healthy vision are reliant. Glaucoma filtration surgery, corneal stromal injury, proliferative vitreoretinopathy and age-related macular degeneration are major contributors to ocular morbidity – all with myofibroblast transdifferentiation and pathognomonic scarring activity at their core.

This thesis aims to revaluate the means by which dysregulated ocular wound healing is combated with evidence describing a novel strategy to mitigate its effects. A translational approach was used. An initial retrospective analysis of over ten thousand glaucoma surgeries found …


Integration Of Random Forest Classifiers And Deep Convolutional Neural Networks For Classification And Biomolecular Modeling Of Cancer Driver Mutations, Steve Agajanian, Odeyemi Oluyemi, Gennady M. Verkhivker Jun 2019

Integration Of Random Forest Classifiers And Deep Convolutional Neural Networks For Classification And Biomolecular Modeling Of Cancer Driver Mutations, Steve Agajanian, Odeyemi Oluyemi, Gennady M. Verkhivker

Mathematics, Physics, and Computer Science Faculty Articles and Research

Development of machine learning solutions for prediction of functional and clinical significance of cancer driver genes and mutations are paramount in modern biomedical research and have gained a significant momentum in a recent decade. In this work, we integrate different machine learning approaches, including tree based methods, random forest and gradient boosted tree (GBT) classifiers along with deep convolutional neural networks (CNN) for prediction of cancer driver mutations in the genomic datasets. The feasibility of CNN in using raw nucleotide sequences for classification of cancer driver mutations was initially explored by employing label encoding, one hot encoding, and embedding to …


Small‐Molecule Activators Of Glucose‐6‐Phosephate Dehydrogenase (G6pd) Bridging The Dimer Interface, Andrew G. Raub, Sunhee Hwang, Naoki Horikoshi, Anna D. Cunningham, Simin Rahighi, Soichi Wakatsuki, Daria Mochly-Rosen Jun 2019

Small‐Molecule Activators Of Glucose‐6‐Phosephate Dehydrogenase (G6pd) Bridging The Dimer Interface, Andrew G. Raub, Sunhee Hwang, Naoki Horikoshi, Anna D. Cunningham, Simin Rahighi, Soichi Wakatsuki, Daria Mochly-Rosen

Pharmacy Faculty Articles and Research

We have recently identified AG1, a small-molecule activator that functions by promoting oligomerization of glucose-6- phosphate dehydrogenase (G6PD) to the catalytically competent forms. Biochemical experiments indicate activation of G6PD by the original hit molecule (AG1) is noncovalent and that one C2-symmetric region of the G6PD homodimer is important for ligand function. Consequently, the disulfide in AG1 is not required for activation of G6PD and a number of analogs were prepared without this reactive moiety. Our Study supports a mechanism of action whereby AG1 bridges the dimer interface at the structural nicotinamide adenine dinucleotide phosphate (NADP+)-binding sites of two interacting G6PD …


Mutations In The Human Follicle Stimulating Hormone Receptor Caveolin Interaction Motif Cause Increased Basal Activation, Elizabeth Altman Jun 2019

Mutations In The Human Follicle Stimulating Hormone Receptor Caveolin Interaction Motif Cause Increased Basal Activation, Elizabeth Altman

Honors Theses

Over twelve percent of women aged fifteen to forty-five in America suffer from infertility and/or impaired fecundity and over seven million women have used infertility services, such as intrauterine insemination and in vitro fertilization. Some cases of infertility may be due to dysfunctional human follicle stimulating hormone (hFSH) signaling. hFSH plays a role in spermatogenesis in males, as well as follicle maturation and estrogen production in females. Problems with either hFSH or the hFSH receptor (hFSHR) decrease fertility in males and cause complete infertility in females. As part of the hypothalamic-pituitary-gonadal axis, hFSH is released from the pituitary gland and …


A Proline Insertion-Deletion In The Spike Glycoprotein Fusion Peptide Of Mouse Hepatitis Virus Strongly Alters Neuropathology., Manmeet Singh, Abhinoy Kishore, Dibyajyoti Maity, Punnepalli Sunanda, Bankala Krishnarjuna, Sreeparna Vappala, Srinivasarao Raghothama, Lawrence C. Kenyon, Debnath Pal, Jayasri Das Sarma May 2019

A Proline Insertion-Deletion In The Spike Glycoprotein Fusion Peptide Of Mouse Hepatitis Virus Strongly Alters Neuropathology., Manmeet Singh, Abhinoy Kishore, Dibyajyoti Maity, Punnepalli Sunanda, Bankala Krishnarjuna, Sreeparna Vappala, Srinivasarao Raghothama, Lawrence C. Kenyon, Debnath Pal, Jayasri Das Sarma

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Fusion peptides (FPs) in spike proteins are key players mediating early events in cell-to-cell fusion, vital for intercellular viral spread. A proline residue located at the central FP region has often been suggested to have a distinctive role in this fusion event. The spike glycoprotein from strain RSA59 (PP) of mouse hepatitis virus (MHV) contains two central, consecutive prolines in the FP. Here, we report that deletion of one of these proline residues, resulting in RSA59 (P), significantly affected neural cell syncytia formation and viral titers postinfection in vitro. Transcranial inoculation of C57Bl/6 mice with RSA59 (PP) or RSA59 (P) …


A Unique Role For Clathrin Light Chain A In Cell Spreading And Migration., Oxana M. Tsygankova, James H. Keen May 2019

A Unique Role For Clathrin Light Chain A In Cell Spreading And Migration., Oxana M. Tsygankova, James H. Keen

Department of Biochemistry and Molecular Biology Faculty Papers

Clathrin heavy chain is the structural component of the clathrin triskelion, but unique functions for the two distinct and highly conserved clathrin light chains (CLCa and CLCb, also known as CLTA and CLTB, respectively) have been elusive. Here, we show that following detachment and replating, CLCa is uniquely responsible for promoting efficient cell spreading and migration. Selective depletion of CLCa, but not of CLCb, reduced the initial phase of isotropic spreading of HeLa, H1299 and HEK293 cells by 60-80% compared to siRNA controls, and wound closure and motility by ∼50%. Surface levels of β1-integrins were unaffected by CLCa depletion. However, …


Hit And Run Versus Long-Term Activation Of Parp-1 By Its Different Domains Fine-Tunes Nuclear Processes., Colin Thomas, Md, Yingbiao Ji, Chao Wu, Haily Datz, Cody Boyle, Brett Macleod, Shri Patel, Michelle Ampofo, Michelle Currie, Jonathan Harbin, Kate Pechenkina, Niraj Lodhi, Sarah J. Johnson, Alexei V. Tulin May 2019

Hit And Run Versus Long-Term Activation Of Parp-1 By Its Different Domains Fine-Tunes Nuclear Processes., Colin Thomas, Md, Yingbiao Ji, Chao Wu, Haily Datz, Cody Boyle, Brett Macleod, Shri Patel, Michelle Ampofo, Michelle Currie, Jonathan Harbin, Kate Pechenkina, Niraj Lodhi, Sarah J. Johnson, Alexei V. Tulin

Department of Medicine Faculty Papers

Poly(ADP-ribose) polymerase 1 (PARP-1) is a multidomain multifunctional nuclear enzyme involved in the regulation of the chromatin structure and transcription. PARP-1 consists of three functional domains: the N-terminal DNA-binding domain (DBD) containing three zinc fingers, the automodification domain (A), and the C-terminal domain, which includes the protein interacting WGR domain (W) and the catalytic (Cat) subdomain responsible for the poly(ADP ribosyl)ating reaction. The mechanisms coordinating the functions of these domains and determining the positioning of PARP-1 in chromatin remain unknown. Using multiple deletional isoforms of PARP-1, lacking one or another of its three domains, as well as consisting of only …


Chemically Modified Variants Of Fenofibrate With Antiglioblastoma Potential, J Stalinska, E Zimolag, N. A. Pianovich, A Zapata, A Lassak, M Rak, M Dean, D Ucar-Bilyeu, D Wyczechowska, F Culicchia, L Marrero, Luis Del Valle, J Sarkaria, F Peruzzi, B. S. Jursic, K. Reiss May 2019

Chemically Modified Variants Of Fenofibrate With Antiglioblastoma Potential, J Stalinska, E Zimolag, N. A. Pianovich, A Zapata, A Lassak, M Rak, M Dean, D Ucar-Bilyeu, D Wyczechowska, F Culicchia, L Marrero, Luis Del Valle, J Sarkaria, F Peruzzi, B. S. Jursic, K. Reiss

School of Medicine Faculty Publications

Anticancer effects of a common lipid-lowering drug, fenofibrate, have been described in the literature for a quite some time; however, fenofibrate has not been used as a direct anticancer therapy. We have previously reported that fenofibrate in its unprocessed form (ester) accumulates in the mitochondria, inhibits mitochondrial respiration, and triggers a severe energy deficit and extensive glioblastoma cell death. However, fenofibrate does not cross the blood brain barrier and is quickly processed by blood and tissue esterases to form the PPARα agonist fenofibric acid, which is practically ineffective effective in triggering cancer cell death. To address these issues, we have …


Rgs16, A Novel P53 And Prb Cross-Talk Candidate Inhibits Migration And Invasion Of Pancreatic Cancer Cells, Miranda B. Carper, James Denvir, Goran Boskovic, Donald A. Primerano, Pier Paolo Claudio May 2019

Rgs16, A Novel P53 And Prb Cross-Talk Candidate Inhibits Migration And Invasion Of Pancreatic Cancer Cells, Miranda B. Carper, James Denvir, Goran Boskovic, Donald A. Primerano, Pier Paolo Claudio

Pier P. Claudio

Data collected since the discovery of p53 and pRb/RB1 suggests these tumor suppressors cooperate to inhibit tumor progression. Patients who have mutations in both p53 and RB1 genes have increased tumor reoccurrence and decreased survival compared to patients with only one tumor suppressor gene inactivated. It remains unclear how p53 and pRb cooperate toward inhibiting tumorigenesis. Using RNA expression profiling we identified 179 p53 and pRb cross-talk candidates in normal lung fibroblasts (WI38) cells exogenously coexpressing p53 and pRb. Regulator of G protein signaling 16 (RGS16) was among the p53 and pRb cross-talk candidates and has been implicated in inhibiting …


Rgs16, A Novel P53 And Prb Cross-Talk Candidate Inhibits Migration And Invasion Of Pancreatic Cancer Cells, Miranda B. Carper, James Denvir, Goran Boskovic, Donald A. Primerano, Pier Paolo Claudio May 2019

Rgs16, A Novel P53 And Prb Cross-Talk Candidate Inhibits Migration And Invasion Of Pancreatic Cancer Cells, Miranda B. Carper, James Denvir, Goran Boskovic, Donald A. Primerano, Pier Paolo Claudio

Donald A. Primerano

Data collected since the discovery of p53 and pRb/RB1 suggests these tumor suppressors cooperate to inhibit tumor progression. Patients who have mutations in both p53 and RB1 genes have increased tumor reoccurrence and decreased survival compared to patients with only one tumor suppressor gene inactivated. It remains unclear how p53 and pRb cooperate toward inhibiting tumorigenesis. Using RNA expression profiling we identified 179 p53 and pRb cross-talk candidates in normal lung fibroblasts (WI38) cells exogenously coexpressing p53 and pRb. Regulator of G protein signaling 16 (RGS16) was among the p53 and pRb cross-talk candidates and has been implicated in inhibiting …


Rgs16, A Novel P53 And Prb Cross-Talk Candidate Inhibits Migration And Invasion Of Pancreatic Cancer Cells, Miranda B. Carper, James Denvir, Goran Boskovic, Donald A. Primerano, Pier Paolo Claudio May 2019

Rgs16, A Novel P53 And Prb Cross-Talk Candidate Inhibits Migration And Invasion Of Pancreatic Cancer Cells, Miranda B. Carper, James Denvir, Goran Boskovic, Donald A. Primerano, Pier Paolo Claudio

James Denvir

Data collected since the discovery of p53 and pRb/RB1 suggests these tumor suppressors cooperate to inhibit tumor progression. Patients who have mutations in both p53 and RB1 genes have increased tumor reoccurrence and decreased survival compared to patients with only one tumor suppressor gene inactivated. It remains unclear how p53 and pRb cooperate toward inhibiting tumorigenesis. Using RNA expression profiling we identified 179 p53 and pRb cross-talk candidates in normal lung fibroblasts (WI38) cells exogenously coexpressing p53 and pRb. Regulator of G protein signaling 16 (RGS16) was among the p53 and pRb cross-talk candidates and has been implicated in inhibiting …


Hiv-1 Integrase Multimerization By Quinoline Based Drugs, Samer Beauti May 2019

Hiv-1 Integrase Multimerization By Quinoline Based Drugs, Samer Beauti

Honors Theses

Human Immunodeficiency Virus Type 1 (HIV-1), a single stranded RNA retrovirus, affects over 30,000,000 people world-wide1. The virus works by infecting and promoting destruction of CD4 immune cells. and thus, suppressing proper immune functions2. Contrary to DNA viruses, the absence of extensive proofreading mechanisms in RNA viruses makes HIV latency a major obstacle in the discovery of long-term, effective treatments. Moreover, the importance of exploring novel therapeutic targets and designing complimentary inhibitory molecules remains steadfast in HIV research3 Recently, HIV-1 Integrase (IN) multimerization, the core enzyme used for integration of the viral DNA into an invaded host chromosome, has been …


Effect Of Tyrosine On The Productivity Of Pc12 Cells By Measuring Extracellular Atp Release, Sabrina Burkholder, Mary Rapmund, David Fogel, Jon Flees May 2019

Effect Of Tyrosine On The Productivity Of Pc12 Cells By Measuring Extracellular Atp Release, Sabrina Burkholder, Mary Rapmund, David Fogel, Jon Flees

Student Scholar Symposium Abstracts and Posters

Given the challenge to “reverse-engineer the brain”, our group tried to address the problems of a lack of long term focus and attention span. Tyrosine was determined to aid in mental focus and brain productivity as it is a precursor to the neurotransmitter Dopamine. Given that Tyrosine is naturally occurring in the body, it is preferable to add to the body, whereas a substance like Adderall has negative effects, including increased heart rate that, over time, can cause cardiovascular damage. Drawing connections between in increase ATP and an increased ability to focus and perform under stress, extracellular ATP secretion of …


Trna Methylation Is A Global Determinant Of Bacterial Multi-Drug Resistance., Isao Masuda, Ryuma Matsubara, Thomas Christian, Enrique R. Rojas, Srujana S. Yadavalli, Lisheng Zhang, Mark Goulian, Leonard J. Foster, Kerwyn Casey Huang, Ya-Ming Hou Apr 2019

Trna Methylation Is A Global Determinant Of Bacterial Multi-Drug Resistance., Isao Masuda, Ryuma Matsubara, Thomas Christian, Enrique R. Rojas, Srujana S. Yadavalli, Lisheng Zhang, Mark Goulian, Leonard J. Foster, Kerwyn Casey Huang, Ya-Ming Hou

Department of Biochemistry and Molecular Biology Faculty Papers

Gram-negative bacteria are intrinsically resistant to drugs because of their double-membrane envelope structure that acts as a permeability barrier and as an anchor for efflux pumps. Antibiotics are blocked and expelled from cells and cannot reach high-enough intracellular concentrations to exert a therapeutic effect. Efforts to target one membrane protein at a time have been ineffective. Here, we show that m 1 G37-tRNA methylation determines the synthesis of a multitude of membrane proteins via its control of translation at proline codons near the start of open reading frames. Decreases in m 1 G37 levels in Escherichia coli and Salmonella impair …