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Morphoregulatory Functions Of The Rna-Binding Motif Protein 3 In Cell Spreading, Polarity And Migration, J. Pilotte, W. Kiosses, S. W. Chan, H. P. Makarenkova, Esther E. Dupont-Versteegden, P. W. Vanderklish 2018 The Scripps Research Institute

Morphoregulatory Functions Of The Rna-Binding Motif Protein 3 In Cell Spreading, Polarity And Migration, J. Pilotte, W. Kiosses, S. W. Chan, H. P. Makarenkova, Esther E. Dupont-Versteegden, P. W. Vanderklish

Physical Therapy Faculty Publications

RNA-binding proteins are emerging as key regulators of transitions in cell morphology. The RNA-binding motif protein 3 (RBM3) is a cold-inducible RNA-binding protein with broadly relevant roles in cellular protection, and putative functions in cancer and development. Several findings suggest that RBM3 has morphoregulatory functions germane to its roles in these contexts. For example, RBM3 helps maintain the morphological integrity of cell protrusions during cell stress and disease. Moreover, it is highly expressed in migrating neurons of the developing brain and in cancer invadopodia, suggesting roles in migration. We here show that RBM3 regulates cell polarity, spreading and migration. RBM3 …


Serum Lipidomics Of Bovine Paratuberculosis: Disruption Of Choline-Containing Glycerophospholipids And Sphingolipids, Paul L. Wood, Erdal Erol, Glen F. Hoffsis, Margaret Steinman, Jeroen DeBuck 2018 Lincoln Memorial University

Serum Lipidomics Of Bovine Paratuberculosis: Disruption Of Choline-Containing Glycerophospholipids And Sphingolipids, Paul L. Wood, Erdal Erol, Glen F. Hoffsis, Margaret Steinman, Jeroen Debuck

Veterinary Science Faculty Publications

Objectives: Bovine paratuberculosis is a devastating infection with Mycobacterium avium subspecies paratuberculosis that ultimately results in death from malnutrition. While the infection is characterized by a long (2–4 years) subclinical phase with immune activation, ultimately host defense mechanisms fail and the bacteria spread from the small intestine to other organs. Since both the gastrointestinal tract and liver are essential for the biosynthesis of structural glycerophospholipids, we investigated the circulating levels of these lipids in field infections and experimentally infected cattle.

Methods: Serum lipidomics of control and M. avium subspecies paratuberculosis–infected cattle were performed utilizing high-resolution mass spectrometry.

Results: In …


Cdk5 Inhibition Resolves Pka/Camp-Independent Activation Of Creb1 Signaling In Glioma Stem Cells, Subhas Mukherjee, Carol Tucker-Burden, Emily Kaissi, Austin Newsam, Hithardhi Duggireddy, Monica Chau, Changming Zhang, Bhakti Diwedi, Manali Rupji, Sandra Seby, Jeanne Kowalski, Jun Kong, Renee Read, Daniel J. Brat 2018 Northwestern University

Cdk5 Inhibition Resolves Pka/Camp-Independent Activation Of Creb1 Signaling In Glioma Stem Cells, Subhas Mukherjee, Carol Tucker-Burden, Emily Kaissi, Austin Newsam, Hithardhi Duggireddy, Monica Chau, Changming Zhang, Bhakti Diwedi, Manali Rupji, Sandra Seby, Jeanne Kowalski, Jun Kong, Renee Read, Daniel J. Brat

Neurology Faculty Publications

Cancer stem cells promote neoplastic growth, in part by deregulating asymmetric cell division and enhancing self-renewal. To uncover mechanisms and potential therapeutic targets in glioma stem cell (GSC) self-renewal, we performed a genetic suppressor screen for kinases to reverse the tumor phenotype of our Drosophila brain tumor model and identified dCdk5 as a critical regulator. CDK5, the human ortholog of dCdk5 (79% identity), is aberrantly activated in GBMs and tightly aligned with both chromosome 7 gains and stem cell markers affecting tumor-propagation. Our investigation revealed that pharmaceutical inhibition of CDK5 prevents GSC self-renewal in vitro and in xenografted tumors, at …


Synaptic Phospholipids As A New Target For Cortical Hyperexcitability And E/I Balance In Psychiatric Disorders, Carine Thalman, Guilherme Horta, Lianyong Qiao, Heiko Endle, Irmgard Tegeder, Hong Cheng, Gregor Laube, Torfi Sigurdsson, Maria Jelena Hauser, Stefan Tenzer, Ute Distler, Junken Aoki, Andrew J. Morris, Gerd Geisslinger, Jochen Röper, Sergei Kirischuk, Heiko J. Luhmann, Konstantin Radyushkin, Robert Nitsch, Johannes Vogt 2018 Johannes Gutenberg-University, Germany

Synaptic Phospholipids As A New Target For Cortical Hyperexcitability And E/I Balance In Psychiatric Disorders, Carine Thalman, Guilherme Horta, Lianyong Qiao, Heiko Endle, Irmgard Tegeder, Hong Cheng, Gregor Laube, Torfi Sigurdsson, Maria Jelena Hauser, Stefan Tenzer, Ute Distler, Junken Aoki, Andrew J. Morris, Gerd Geisslinger, Jochen Röper, Sergei Kirischuk, Heiko J. Luhmann, Konstantin Radyushkin, Robert Nitsch, Johannes Vogt

Internal Medicine Faculty Publications

Lysophosphatidic acid (LPA) is a synaptic phospholipid, which regulates cortical excitation/inhibition (E/I) balance and controls sensory information processing in mice and man. Altered synaptic LPA signaling was shown to be associated with psychiatric disorders. Here, we show that the LPA-synthesizing enzyme autotaxin (ATX) is expressed in the astrocytic compartment of excitatory synapses and modulates glutamatergic transmission. In astrocytes, ATX is sorted toward fine astrocytic processes and transported to excitatory but not inhibitory synapses. This ATX sorting, as well as the enzymatic activity of astrocyte-derived ATX are dynamically regulated by neuronal activity via astrocytic glutamate receptors. Pharmacological and genetic ATX inhibition …


Capecitabine And Temozolomide In Neuroendocrine Tumor Of Unknown Primary, Aman Chauhan, Zainab Farooqui, LeAundra Murray, Heidi L. Weiss, Zin W. Myint, Arun Kumar A. Raajasekar, B. Mark Evers, Susanne M. Arnold, Lowell B. Anthony 2018 University of Kentucky

Capecitabine And Temozolomide In Neuroendocrine Tumor Of Unknown Primary, Aman Chauhan, Zainab Farooqui, Leaundra Murray, Heidi L. Weiss, Zin W. Myint, Arun Kumar A. Raajasekar, B. Mark Evers, Susanne M. Arnold, Lowell B. Anthony

Internal Medicine Faculty Publications

Incidence of low grade well-differentiated neuroendocrine tumors (NET) is on the rise. The North American Neuroendocrine Tumor Society estimates that the United States has more than 150,000 gastroenteropancreatic NET patients. About 10% of metastatic NETs can be unknown primary, and due to their rarity, dedicated treatment algorithms and regimens are not defined. Combination of capecitabine and temozolomide (CAPTEM) is one of the systemic treatments used in gastroenteropancreatic NETs. We explored clinical activity of CAPTEM in NET of unknown primary. Methods. Retrospective review of NET of unknown primary managed at the University of Kentucky over the past five years (2012–2016). …


Abcg5 And Abcg8: More Than A Defense Against Xenosterols, Shailendra B. Patel, Gregory A. Graf, Ryan E. Temel 2018 University of Cincinnati

Abcg5 And Abcg8: More Than A Defense Against Xenosterols, Shailendra B. Patel, Gregory A. Graf, Ryan E. Temel

Pharmaceutical Sciences Faculty Publications

The elucidation of the molecular basis of the rare disease, sitosterolemia, has revolutionized our mechanistic understanding of how dietary sterols are excreted and how cholesterol is eliminated from the body. Two proteins, ABCG5 and ABCG8, encoded by the sitosterolemia locus, work as obligate dimers to pump sterols out of hepatocytes and enterocytes. ABCG5/ABCG8 are key in regulating whole-body sterol trafficking, by eliminating sterols via the biliary tree as well as the intestinal tract. Importantly, these transporters keep xenosterols from accumulating in the body. The sitosterolemia locus has been genetically associated with lipid levels and downstream atherosclerotic disease, as well as …


Development Of Novel Dual Inhibitor Of Chemokine Receptor 4 And Mcl-1 Against Multiple Myeloma, Kuntal Bhowmick, Kristy K. Patel, Suman Pathi, Subash Jonnalagadda, Tulin Budak-Alpdogan, Manoj K. Pandey 2018 Rowan University

Development Of Novel Dual Inhibitor Of Chemokine Receptor 4 And Mcl-1 Against Multiple Myeloma, Kuntal Bhowmick, Kristy K. Patel, Suman Pathi, Subash Jonnalagadda, Tulin Budak-Alpdogan, Manoj K. Pandey

Rowan-Virtua Research Day

Multiple myeloma (MM) is a neoplastic plasma-cell disorder. This is characterized by clonal proliferation of malignant plasma cells in the bone-marrow (BM) microenvironment, monoclonal protein in blood or urine, and associated organ dysfunction. The treatment options approved by FDA are immune-modulatory agents, proteasome inhibitors, and autologous stem cell transplantation (ASCT). Unfortunately, MM remains uniformly fatal owing to intrinsic or acquired drug resistance and the median survival time is 3 to 5 years. Thus, there is a great need for novel strategies to combat MM.

The intimate relationship of myeloma cells to BM microenvironment is “hallmark of myeloma”. The homing of …


Dexmedetomidine (Precedex) Induced Fever, Patrick DeAlmeida, Michael Matrale 2018 Rowan University SOM

Dexmedetomidine (Precedex) Induced Fever, Patrick Dealmeida, Michael Matrale

Rowan-Virtua Research Day

Precedex is an intravenous, α-2 receptor agonist broadly used for analgesia, maintenance of sedation, and alcohol withdrawal treatment in the intensive care unit (ICU).

The most commonly reported adverse effects associated with precedex are hypotension and bradycardia1.

Fever has been reported with a 5-7% incidence rate. Our case shows a very impressive pyrexia in a 49 year old patient most likely associated to Precedex. When compared to the previously three reported cases his fever reached the largest value (T= 107ºF).

As its use becomes more and more common in the ICU, clinicians should be aware of this adverse effect especially …


Matrix Metalloproteinase-Mediated Blood-Brain Barrier Dysfunction In Epilepsy, Ralf G. Rempe, Anika M. S. Hartz, Emma L. B. Soldner, Brent S. Sokola, Satya R. Alluri, Erin L. Abner, Richard J. Kryscio, Anton Pekcec, Juli Schlichtiger, Björn Bauer 2018 University of Kentucky

Matrix Metalloproteinase-Mediated Blood-Brain Barrier Dysfunction In Epilepsy, Ralf G. Rempe, Anika M. S. Hartz, Emma L. B. Soldner, Brent S. Sokola, Satya R. Alluri, Erin L. Abner, Richard J. Kryscio, Anton Pekcec, Juli Schlichtiger, Björn Bauer

Pharmaceutical Sciences Faculty Publications

The blood-brain barrier is dysfunctional in epilepsy, thereby contributing to seizure genesis and resistance to antiseizure drugs. Previously, several groups reported that seizures increase brain glutamate levels, which leads to barrier dysfunction. One critical component of barrier dysfunction is brain capillary leakage. Based on our preliminary data, we hypothesized that glutamate released during seizures mediates an increase in matrix-metalloproteinase (MMP) expression and activity levels, thereby contributing to barrier leakage. To test this hypothesis, we exposed isolated brain capillaries from male Sprague Dawley rats to glutamate ex vivo and used an in vivo/ex vivo approach of isolated brain capillaries …


Dissecting Structure-Encoded Determinants Of Allosteric Cross-Talk Between Post-Translational Modification Sites In The Hsp90 Chaperones, Gabrielle Stetz, Amanda Tse, Gennady M. Verkhivker 2018 Chapman University

Dissecting Structure-Encoded Determinants Of Allosteric Cross-Talk Between Post-Translational Modification Sites In The Hsp90 Chaperones, Gabrielle Stetz, Amanda Tse, Gennady M. Verkhivker

Mathematics, Physics, and Computer Science Faculty Articles and Research

Post-translational modifications (PTMs) represent an important regulatory instrument that modulates structure, dynamics and function of proteins. The large number of PTM sites in the Hsp90 proteins that are scattered throughout different domains indicated that synchronization of multiple PTMs through a combinatorial code can be invoked as an important mechanism to orchestrate diverse chaperone functions and recognize multiple client proteins. In this study, we have combined structural and coevolutionary analysis with molecular simulations and perturbation response scanning analysis of the Hsp90 structures to characterize functional role of PTM sites in allosteric regulation. The results reveal a small group of conserved PTMs …


Effects Of Mitochondrial Nadp+-Dependent Isocitrate Dehydrogenase Deficiency On Fructose-Induced Obesity In Mice, Allison Michelle Montalbano, Kaleigh Elizabeth Beane 2018 University of Arkansas, Fayetteville

Effects Of Mitochondrial Nadp+-Dependent Isocitrate Dehydrogenase Deficiency On Fructose-Induced Obesity In Mice, Allison Michelle Montalbano, Kaleigh Elizabeth Beane

Human Nutrition and Hospitality Management Undergraduate Honors Theses

Obesity prevalence in the United States continues to increase and is associated with health consequences such as type 2 diabetes, hypertension, atherosclerosis, and hyperlipidemia. Among many contributing factors to obesity, fructose may be one of the major reasons as it disrupts the antioxidant system thereby resulting in an accumulation of reactive oxidative species and leading to obese conditions. The enzyme, isocitrate dehydrogenase 2 (IDH2), reduces nicotinamide adenine dinucleotide phosphate from the TCA Cycle, hence might be implicated with not only energy metabolism but also cellular redox homeostasis. Therefore, the hypothesis was that IDH2 deficiency in mice would exacerbate hepatic lipid …


Transplantation Of Thioredoxin-1 Exosomes In A Murine Model Of Hind-Limb Ischemia: A Novel Therapeutic Approach, Shubham Kanake 2018 University of Connecticut

Transplantation Of Thioredoxin-1 Exosomes In A Murine Model Of Hind-Limb Ischemia: A Novel Therapeutic Approach, Shubham Kanake

Honors Scholar Theses

Peripheral artery disease is one of the most prevalent cardiovascular diseases in the United States and worldwide. It is estimated that over 8 million people in the United States are affected with peripheral artery disease, and up to 40% of people over 80 years old may have some degree of the disease. Peripheral artery disease can increase one’s chances for having other cardiovascular co-morbidities such as coronary artery disease, among others. Current interventional strategies are endovascular treatments such as transluminal angioplasty and stenting, or in more advanced cases peripheral artery bypass grafting. Medical interventions focus on managing symptoms and treating …


Total Synthesis Of 6,7-Dimethyl-N-Methyl Aziridinomitosene, Thaaer N. Muhammed 2018 Boise State University

Total Synthesis Of 6,7-Dimethyl-N-Methyl Aziridinomitosene, Thaaer N. Muhammed

Boise State University Theses and Dissertations

Mitomycin C (MC) is a naturally occurring antitumor agent isolated from a soil bacterium. MC is effective against solid hypoxic tumors that respond poorly to radiotherapy, such as colorectal, gastric, and lung tumors. Also, it has a role in the treatment of bladder, head and neck, and non-small cell lung cancers in combination with other chemotherapeutic.

MC and other members of the mitomycin family of antitumor agents fight cancer by forming DNA interstrand crosslinks (ICLs), which leads to apoptosis. In order to form ICLs, MC requires a reductive activation step that produces reactive oxygen species. This activation step is proposed …


Potent And Potentially Non-Cardiotoxic Anthracyclines: Their Synthesis, Biological Evaluation, And Comparison Of Hydrozone-Mediated Reductions, Jerrett Holdaway 2018 Boise State University

Potent And Potentially Non-Cardiotoxic Anthracyclines: Their Synthesis, Biological Evaluation, And Comparison Of Hydrozone-Mediated Reductions, Jerrett Holdaway

Boise State University Theses and Dissertations

After nearly half a century since medical approval, the anthracycline doxorubicin (DOX) remains one of the most potent and clinically useful anticancer agents. In spite of its long history, however, the cytotoxic mechanisms of DOX have been debated and remain controversial. Several well-supported mechanisms will be discussed, such as the potential to intercalate DNA and induce apoptosis through topoisomerase poisoning, free radical formation, and DNA cross-linking. While DOX has substantial medical importance, it is plagued by a life-threatening dose-dependent cardiotoxic side effect associated with several structural groups. A number of modifications to DOX have been accomplished to attempt to remove …


Characterization Of The Hepatotoxicity Of Rifampicin And Isoniazid, Christopher T. Brewer 2018 University of Tennessee Health Science Center

Characterization Of The Hepatotoxicity Of Rifampicin And Isoniazid, Christopher T. Brewer

Theses and Dissertations (ETD)

In a mouse model, rifampicin and isoniazid combination treatment results in cholestatic liver injury that is associated with an increase of protoporphyrin ix (PPIX), the penultimate heme precursor. Excess PPIX is believed to bind to bile acids, precipitate in bile canaliculi, and form bile plugs leading to cholestasis fol owed by liver injury. Both ferrochelatase (FECH/Fech) and aminolevulinic acid synthase 1 (ALAS1/Alas1) are crucial enzymes in regulating heme biosynthesis. Isoniazid has recently been reported to up-regulate Alas1 but down-regulate Fech protein levels in mice; however the mechanism of isoniazid mediated heme synthesis …


Infections Not Fought: Antibiotic Resistance In Underserved Communities, Derek Lillestolen 2018 Liberty University

Infections Not Fought: Antibiotic Resistance In Underserved Communities, Derek Lillestolen

Senior Honors Theses

In 1928, the profound effects of penicillin were discovered and antibiotic treatments became extremely popular. Broad-spectrum antibiotics, like tetracyclines, have been since branded as cure-all prescriptions and used profusely in the Western World and abroad. Due to ignorance of specific biochemical mechanisms and the misuse of antibiotics these drugs inadvertently allowed the rise in prevalence of antibiotic resistant strains of certain bacteria as the century progressed. Now, the specific genetic causes and mechanisms of antibiotic resistance are being understood, but the fight against antimicrobial resistance is far from over. In the United States, thousands of fatalities are caused annually by …


The Regulation Of Dna Methylation In Mammalian Development And Cancer, Nicolas Veland 2018 The University of Texas M D Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences

The Regulation Of Dna Methylation In Mammalian Development And Cancer, Nicolas Veland

Dissertations and Theses (Open Access)

DNA methylation is an essential epigenetic modification in mammals, as it plays important regulatory roles in multiple biological processes, such as gene transcription, maintenance of chromosomal structure and genomic stability, genomic imprinting, retrotransposon silencing, and X-chromosome inactivation. Dysregulation of DNA methylation is associated with various human diseases. For example, cancer cells usually show global hypomethylation and regional hypermenthylation, which have been implicated in genomic instability and tumor suppressor silencing, respectively. Although great progress has been made in elucidating the biological functions of DNA methylation over the last several decades, how DNA methylation patterns and levels are regulated and dysregulated is …


Catalyzed And Uncatalyzed Modifications Of Nucleosides, Synthesis Of Hippadine, And Deuterated 1,2,3-Triazoles, Hari K. Akula 2018 CUNY Graduate Center

Catalyzed And Uncatalyzed Modifications Of Nucleosides, Synthesis Of Hippadine, And Deuterated 1,2,3-Triazoles, Hari K. Akula

Dissertations, Theses, and Capstone Projects

The C4 amide carbonyl of O-t-butyldimethylsilyl-protected thymidine, 2’-deoxyuridine, and 3’-azidothymidine (AZT) was activated by reaction with (benzotriazol-1-yloxy)tris(dimethylamino) phosphonium hexafluorophosphate (BOP) and 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) in THF as solvent. This led to the formation of corresponding O4-(benzotriazol-1-yl) derivatives, which are reactive intermediates. Substitution at the C4 position was then carried out by reactions with alkyl and aryl amines, and thiols. Typically, reactions were conducted as a two-step, one-pot transformation, and also as a one-step conversion. After examining the reactions, the formation of 1-(4-pyrimidinyl)-1H-benzotriazole-3-oxide derivatives from the pyrimidine nucleosides was identified. However, these too underwent conversion to …


Linear Ubiquitin Chain-Binding Domains, Lilian Fennell, Simin Rahighi, Fumiyo Ikeda 2018 Vienna BioCenter

Linear Ubiquitin Chain-Binding Domains, Lilian Fennell, Simin Rahighi, Fumiyo Ikeda

Pharmacy Faculty Articles and Research

Ubiquitin modification (ubiquitination) of target proteins can vary with respect to chain lengths, linkage type, and chain forms, such as homologous, mixed, and branched ubiquitin chains. Thus, ubiquitination can generate multiple unique surfaces on a target protein substrate. Ubiquitin‐binding domains (UBDs) recognize ubiquitinated substrates, by specifically binding to these unique surfaces, modulate the formation of cellular signaling complexes and regulate downstream signaling cascades. Among the eight different homotypic chain types, Met1‐linked (also termed linear) chains are the only chains in which linkage occurs on a non‐Lys residue of ubiquitin. Linear ubiquitin chains have been implicated in immune responses, cell death …


A Cytotoxic Evaluation Of A Chalcone Derivative Library On A549 Cells, Mary Elaine Kuo 2018 Bellarmine University

A Cytotoxic Evaluation Of A Chalcone Derivative Library On A549 Cells, Mary Elaine Kuo

Undergraduate Theses

Chalcones, a precursor to flavonoids, are chemical compounds found naturally in plants. The chalcones’ structure consists of a ketone bridge attached to two aromatic rings. Varying substituents on the aromatic rings allow for different affects, including anti-cancer properties. As a Michael acceptor, chalcones interact with pathways that cause inhibition of the initiation, promotion, and progression of cancer tumors. We have screened 32 compounds for growth inhibition in lung cells that vary the flexibility and confirmation of the 3 carbon bridge between the two aromatic rings as well as the effects of electronic modifications to the aromatic ring. We have found …


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