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Biochemistry, Biophysics, and Structural Biology Commons

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2014

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Articles 331 - 360 of 647

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Stress Responses And Energy Storage In Drosophila Melanogaster Selected For Resistance To A Gram-Positive Bacillus Cereus Spores, Zhen Hu Apr 2014

Stress Responses And Energy Storage In Drosophila Melanogaster Selected For Resistance To A Gram-Positive Bacillus Cereus Spores, Zhen Hu

School of Biological Sciences: Dissertations, Theses, and Student Research

A survival response study was carried out by using D. melanogaster and the opportunistic pathogen B. cereus as the agent of selection. The spores of B. cereus, a gram-positive bacteria that can cause the human pathogen disease, were applied in our artificial laboratory selection. Selected lines were treated with B. cereus spores. Wound control lines were punctured with a needle dipped into sterile H2O. Control lines did not apply any treatment. Three different environmental treatments were used within each line type (autoclaved spores of B.cereus, sterile H2O and no treatment). The autoclaved spores were …


Comparison Of Two Separation Methods For Biological Particles: Field-Flow Fractionation (Fff) And Sucrose Density Gradients, Cody E. Garrison Apr 2014

Comparison Of Two Separation Methods For Biological Particles: Field-Flow Fractionation (Fff) And Sucrose Density Gradients, Cody E. Garrison

OES Theses and Dissertations

Sucrose gradient centrifugation and Field-flow fractionation (FFF) are two different particle separation methods that overcome the problems of similar size microorganisms clumping together during standard filtration methods. FFF separates particles based on size and density via the parabolic velocity profile of laminar flow in a ribbon-like channel. The sucrose method separates particles via centrifugation in a density gradient. Both techniques worked well in separating eukaryotic from prokaryotic microbes, with the preferred method depending on the type and relative abundance of organisms to be separated. Minicells were separated from mother cells in transformed Escherichia coli cultures, heterotrophic flagellates (e.g., Diplonema papillatum …


Pathogenic Mechanisms And Signaling Pathways In Plasmodium Falciparum, Jennifer L. Sedillo Mar 2014

Pathogenic Mechanisms And Signaling Pathways In Plasmodium Falciparum, Jennifer L. Sedillo

USF Tampa Graduate Theses and Dissertations

Plasmodium falciparum is a human intracellular parasite that is the causative agent of a deadly form of malaria. This species alone is responsible for 200 million cases of malaria annually resulting in over 1 million deaths worldwide. The excessive mortality due to P. falciparum infection is due to its ability to cause severe pathogenesis through hyperparasitemia and cytoadherence defined as the ability of infected red blood cells to adhere to host vasculature. Cytoadherence is mediated through the export of parasite proteins to the surface of the infected red blood cell (RBC). Exported proteins have been identified but the pathway for …


Molecular Evidence For Vector Implication Of Onchocerca Lupi In Los Angeles County, Ca, Shanna June Bolcen Mar 2014

Molecular Evidence For Vector Implication Of Onchocerca Lupi In Los Angeles County, Ca, Shanna June Bolcen

USF Tampa Graduate Theses and Dissertations

Onchocerca is a genus of roundworm most commonly associated with the human infection onchocerciasis, or river blindness. While typically a zoonotic infection of ungulate populations, canine cases (Onchocerca lupi) have been identified in the United States and Greece. In 2012, Los Angeles County, Veterinary Public Health Program identified 3 cases of Onchocerca spp. infections in domestic canines. Samples from the ensuing blackfly collections were sent to the Global Health Infectious Disease Research Unnasch Laboratory for parasite isolation and vector species identification. Species-specific primers were designed and optimized for O. lupi using a non- specific cytochrome oxidase (COI) gene target (689bp) …


Sigma Factor N: A Novel Regulator Of Acid Resistance And Locus Of Enterocyte Effacement In Escherichia Coli O157:H7, Avishek Mitra Mar 2014

Sigma Factor N: A Novel Regulator Of Acid Resistance And Locus Of Enterocyte Effacement In Escherichia Coli O157:H7, Avishek Mitra

USF Tampa Graduate Theses and Dissertations

In enterohemorrhagic E. coli (EHEC) sigma factor N (σN) regulates glutamate-dependent acid resistance (GDAR) and the locus of enterocyte effacement (LEE), discrete genetic systems required for transmission and virulence of this intestinal pathogen. Regulation of these systems requires nitrogen regulatory protein C, NtrC, and is a consequence of NtrC/σN-dependent reduction in the activity of sigma factor S (σS). This study elucidates pathway components and stimuli for σN-directed regulation of GDAR and the LEE in EHEC. Deletion of fliZ, the product of which reduces σS activity, phenocopies rpoNN) …


Transcriptional Control Of Toxoplasma Development, Joshua Byran Radke Mar 2014

Transcriptional Control Of Toxoplasma Development, Joshua Byran Radke

USF Tampa Graduate Theses and Dissertations

Toxoplasma gondii is an obligate intracellular protozoan parasite of animals and man. The asexual life cycle of Toxoplasma involves three very distinct, but tightly coordinated developmental stages. In nature, the sporozoite (contained within an oocyst) and bradyzoite (contained within a tissue cyst) initiate infection of the intermediate host, followed by rapid differentiation into the actively replicating tachyzoite. When countered by an effective host response, the tachyzoite differentiates back into the latent bradyzoite and this unique ability of Toxoplasma to interconvert between the replicating tachyzoite and the latent bradyzoite within a single host is the cause of life long infection. The …


Exploration Of Mutations In Erythroid 5-Aminolevulinate Synthase That Lead To Increased Porphyrin Synthesis, Erica Jean Fratz Mar 2014

Exploration Of Mutations In Erythroid 5-Aminolevulinate Synthase That Lead To Increased Porphyrin Synthesis, Erica Jean Fratz

USF Tampa Graduate Theses and Dissertations

5-Aminolevulinate synthase (ALAS; EC 2.3.1.37) is a pyridoxal 5'-phosphate (PLP)-dependent enzyme that catalyzes the first committed step of heme biosynthesis in animals, the condensation of glycine and succinyl-CoA yielding 5-aminolevuliante (ALA), CoA, and CO2. Murine erythroid-specific ALAS (mALAS2) variants that cause high levels of PPIX accumulation provide a new means of targeted, and potentially enhanced, photosensitization. Transfection of HeLa cells with expression plasmids for mALAS2 variants, specifically for those with mutated mitochondrial presequences and a mutation in the active site loop, caused significant cellular accumulation of PPIX, particularly in the membrane. Light treatment of HeLa cells expressing mALAS2 variants revealed …


Detection, Characterization And Evolution Of Internal Repeats In Chitinases Of Known 3-D Structure, Manigandan Sivaji, Vinoth Sadasivam, Jayabalan Narayanasamy, Selvaraj Samuel, Chuanzhu Fan Mar 2014

Detection, Characterization And Evolution Of Internal Repeats In Chitinases Of Known 3-D Structure, Manigandan Sivaji, Vinoth Sadasivam, Jayabalan Narayanasamy, Selvaraj Samuel, Chuanzhu Fan

Biological Sciences Faculty Research Publications

Chitinase proteins have evolved and diversified almost in all organisms ranging from prokaryotes to eukaryotes. During evolution, internal repeats may appear in amino acid sequences of proteins which alter the structural and functional features. Here we deciphered the internal repeats from Chitinase and characterized the structural similarities between them. Out of 24 diverse Chitinase sequences selected, six sequences (2CJL, 2DSK, 2XVP, 2Z37, 3EBV and 3HBE) did not contain any internal repeats of amino acid sequences. Ten sequences contained repeats of length <50, and the remaining 8 sequences contained repeat length between 50 and 100 residues. Two Chitinase sequences, 1ITX and 3SIM, were found to be structurally similar when analyzed using secondary structure of Chitinase from secondary and 3-Dimensional structure database of Protein Data Bank. Internal repeats of 3N17 and 1O6I were also involved in the ligand-binding site of those Chitinase proteins, respectively. Our analyses enhance our understanding towards the identification of structural characteristics of internal repeats in Chitinase proteins.


Stoichiometries And Affinities Of Interacting Proteins From Concentration Series Of Solution Scattering Data: Decomposition By Least Squares And Quadratic Optimization, Himanshu Chandola, Tim E. Williamson, Bruce A. Craig, Alan M. Friedman, Chris Bailey-Kellogg Mar 2014

Stoichiometries And Affinities Of Interacting Proteins From Concentration Series Of Solution Scattering Data: Decomposition By Least Squares And Quadratic Optimization, Himanshu Chandola, Tim E. Williamson, Bruce A. Craig, Alan M. Friedman, Chris Bailey-Kellogg

Dartmouth Scholarship

In studying interacting proteins, complementary insights are provided by analyzing both the association model (the stoichiometry and affinity constants of the intermediate and final complexes) and the quaternary structure of the resulting complexes. Many current methods for analyzing protein interactions either give a binary answer to the question of association and no information about quaternary structure or at best provide only part of the complete picture. Presented here is a method to extract both types of information from X-ray or neutron scattering data for a series of equilibrium mixtures containing the initial components at different concentrations. The method determines the …


Combined Metal-Enhanced Fluorescence-Surface Acoustic Wave (Mef-Saw) Biosensor, Samuel Morrill Mar 2014

Combined Metal-Enhanced Fluorescence-Surface Acoustic Wave (Mef-Saw) Biosensor, Samuel Morrill

USF Tampa Graduate Theses and Dissertations

Immunofluorescence assays are capable of both detecting the amount of a protein and the location of the protein within a cell or tissue section. Unfortunately, the traditional technique is not capable of detecting concentrations on the nanoscale. Also, the technique suffers from non-specific attachment, which can cause false-positives, as well as photobleaching when detecting lower concentrations is attempted. There is also a time constraint problem since the technique can take from many hours to a few days in some cases.

In this work, metal-enhanced fluorescence (MEF) is used to lower the detection limit and reduce photobleaching. Unfortunately, MEF also increases …


Desorption Electrospray Ionization Mass Spectrometry Imaging: Instrumentation, Optimization And Capabilities, Manan Dhunna Mar 2014

Desorption Electrospray Ionization Mass Spectrometry Imaging: Instrumentation, Optimization And Capabilities, Manan Dhunna

Theses and Dissertations

Desorption Electrospray Ionization Mass spectrometry Imaging (DESI-MSI) is an area of great interest and a promising tool in the field of chemical imaging. It is a powerful, label-free technique, which can determine, map and visualize different molecular compounds on a sample surface. The amount of information acquired in a single DESI-MSI experiment is enormous compared to other techniques, as it can simultaneously detect different compounds with their spatial distribution on the surface. The experiment can be used to produce two-dimensional and three-dimensional images. Chapter 2 focuses on the design and optimization of the setup for performing DESI-MS imaging on various …


Facile Synthesis And Characterization Of A Thermally Stable Silica-Doped Alumina With Tunable Surface Area, Porosity, And Acidity, Maryam Khosravi Mardkhe Mar 2014

Facile Synthesis And Characterization Of A Thermally Stable Silica-Doped Alumina With Tunable Surface Area, Porosity, And Acidity, Maryam Khosravi Mardkhe

Theses and Dissertations

Mesoporous γ-Al2O3 is one of the most widely used catalyst supports for commercial catalytic applications. The performance of a catalyst strongly depends on the combination of textural, chemical and physical properties of the support. Pore size is essential since each catalytic system requires a unique pore size for optimal catalyst loading, diffusion and selectivity. In addition, high surface area and large pore volume usually result in higher catalyst loading, which increases the number of catalytic reaction sites and decreases reaction time. Therefore, determination of surface area and porosity of porous supports is critical for the successful design and optimization of …


An Optogenetic Gene Expression System With Rapid Activation And Deactivation Kinetics, Laura B. Motta-Mena, Anna Reade, Michael J. Mallory, Spencer Glantz, Orion D. Weiner, Kristen W. Lynch, Kevin H. Gardner Mar 2014

An Optogenetic Gene Expression System With Rapid Activation And Deactivation Kinetics, Laura B. Motta-Mena, Anna Reade, Michael J. Mallory, Spencer Glantz, Orion D. Weiner, Kristen W. Lynch, Kevin H. Gardner

Advanced Science Research Center

Optogenetic gene expression systems can control transcription with spatial and temporal detail unequaled with traditional inducible promoter systems. However, current eukaryotic light-gated transcription systems are limited by toxicity, dynamic range, or slow activation/deactivation. Here we present an optogenetic gene expression system that addresses these shortcomings and demonstrate its broad utility. Our approach utilizes an engineered version of EL222, a bacterial Light-Oxygen-Voltage (LOV) protein that binds DNA when illuminated with blue light. The system has a large (>100-fold) dynamic range of protein expression, rapid activation (< 10 s) and deactivation kinetics (< 50 s), and a highly linear response to light. With this system, we achieve light-gated transcription in several mammalian cell lines and intact zebrafish embryos with minimal basal gene activation and toxicity. Our approach provides a powerful new tool for optogenetic control of gene expression in space and time.


Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1, Nai-Wei Kuo, Yong-Guang Gao, Megan Schill, Nancy Isern, Cynthia Dupureur, Patricia Liwang Mar 2014

Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1, Nai-Wei Kuo, Yong-Guang Gao, Megan Schill, Nancy Isern, Cynthia Dupureur, Patricia Liwang

Chemistry & Biochemistry Faculty Works

Chemokines play important roles in the immune system, not only recruiting leukocytes to the site of infection and inflammation but also guiding cell homing and cell development. The soluble poxvirus-encoded protein viral CC chemokine inhibitor (vCCI), a CC chemokine inhibitor, can bind to human CC chemokines tightly to impair the host immune defense. This protein has no known homologs in eukaryotes and may represent a potent method to stop inflammation. Previously, our structure of the vCCI·MIP-1β (macrophage inflammatory protein-1β) complex indicated that vCCI uses negatively charged residues in β-sheet II to interact with positively charged residues in the MIP-1β N …


Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1*, Nai-Wei Kuo, Yong-Guang Gao, Megan S. Schill, Nancy Isern, Cynthia M. Dupureur, Patricia J. Liwang Mar 2014

Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1*, Nai-Wei Kuo, Yong-Guang Gao, Megan S. Schill, Nancy Isern, Cynthia M. Dupureur, Patricia J. Liwang

Educator Preparation & Leadership Faculty Works

Chemokines play important roles in the immune system, not only recruiting leukocytes to the site of infection and inflammation but also guiding cell homing and cell development. The soluble poxvirus-encoded protein viral CC chemokine inhibitor (vCCI), a CC chemokine inhibitor, can bind to human CC chemokines tightly to impair the host immune defense. This protein has no known homologs in eukaryotes and may represent a potent method to stop inflammation. Previously, our structure of the vCCI·MIP-1β (macrophage inflammatory protein-1β) complex indicated that vCCI uses negatively charged residues in β-sheet II to interact with positively charged residues in the MIP-1β …


Systems Thinking With Biology Models, Joseph Dauer Mar 2014

Systems Thinking With Biology Models, Joseph Dauer

Discipline-Based Education Research Group Speaker Series

The recent AAAS call to improve undergraduate biology education suggested university instruction should focus on teaching core concepts like matter and energy, evolution, and systems and core competences like quantitative reasoning, modeling and integrating disciplines. My research has focused on how undergraduate biology students organize their knowledge of biological systems and how they reason about the myriad interactions and potential outcomes inherent to these systems. I will report ongoing research into students’ model construction during an introductory biology course and during clinical interviews 2 years after the course. My colleagues and I have found students’ models change dramatically in both …


Structures Of The Puta Peripheral Membrane Flavoenzyme Reveal A Dynamic Substrate-Channeling Tunnel And The Quinone-Binding Site, Harkewal Singh, Benjamin W. Arentson, Donald F. Becker, John J. Tanner Mar 2014

Structures Of The Puta Peripheral Membrane Flavoenzyme Reveal A Dynamic Substrate-Channeling Tunnel And The Quinone-Binding Site, Harkewal Singh, Benjamin W. Arentson, Donald F. Becker, John J. Tanner

Department of Biochemistry: Faculty Publications

Proline utilization A (PutA) proteins are bifunctional peripheral membrane flavoenzymes that catalyze the oxidation of L-proline to L-glutamate by the sequential activities of proline dehydrogenase and aldehyde dehydrogenase domains. Located at the inner membrane of Gram-negative bacteria, PutAs play a major role in energy metabolism by coupling the oxidation of proline imported from the environment to the reduction of membrane-associated quinones. Here, we report seven crystal structures of the 1,004- residue PutA from Geobacter sulfurreducens, along with determination of the protein oligomeric state by small-angle X-ray scattering and kinetic characterization of substrate channeling and quinone reduction. The structures reveal …


Evaluation Of Novel Oral Vaccine Candidates And Validation Of A Caprine Model Of Johne’S Disease, Murray E. Hines Ii, Sue E. Turnquist, Marcia R.S. Ilha, Sreekumari Rajeev, Arthur L. Jones, Lisa Whittington, John P. Bannantine, Raul G. Barletta, Yrjö T. Gröhn, Robab Katani, Adel M. Talaat, Lingling Li, Vivek Kapur Mar 2014

Evaluation Of Novel Oral Vaccine Candidates And Validation Of A Caprine Model Of Johne’S Disease, Murray E. Hines Ii, Sue E. Turnquist, Marcia R.S. Ilha, Sreekumari Rajeev, Arthur L. Jones, Lisa Whittington, John P. Bannantine, Raul G. Barletta, Yrjö T. Gröhn, Robab Katani, Adel M. Talaat, Lingling Li, Vivek Kapur

School of Veterinary and Biomedical Sciences: Faculty Publications

Johne’s disease (JD) caused by Mycobacterium avium subspecies paratuberculosis (MAP) is a major threat to the dairy industry and possibly some cases of Crohn’s disease in humans. A MAP vaccine that reduced of clinical disease and/or reduced fecal shedding would aid in the control of JD. The objectives of this study were (1) to evaluate the efficacy of 5 attenuated strains of MAP as vaccine candidates compared to a commercial control vaccine using the protocol proposed by the Johne’s Disease Integrated Program (JDIP) Animal Model Standardization Committee (AMSC), and (2) to validate the AMSC Johne’s disease go at challenge model. …


Molecular Pap Biomarkers For Cervical Cancer Risk Assessment In Thinprep® Clinical Specimens, Jennifer Taylor Mar 2014

Molecular Pap Biomarkers For Cervical Cancer Risk Assessment In Thinprep® Clinical Specimens, Jennifer Taylor

Graduate School of Biomedical Sciences Theses and Dissertations

Approximately 500,000 patients are diagnosed with cervical cancer worldwide each year, thus making it the second most common cause of cancer-related deaths in women. Persistent high-risk human papillomavirus (HR-HPV) infections induce cervical dysplasia by increasing the expression of two viral oncogenes, E6 and E7. Utilization of the Papanicolaous smear test (Pap test) has contributed to a decrease in morbidity and mortality of cervical cancer; however, subjective analysis of cell morphology with a limited amount of cells has led to a substantial rate of false positive and false negative diagnoses. A more objective and sensitive diagnostic tool for the detection of …


Low Doses Of Colony-Stimulating Factors Lead To Resolution Of Neutropenia In Cancer Patients Through Increased Levels Of Dihydrofolate Reductase, Mohammad Perwaiz Iqbal, Ikram Ali Burney Mar 2014

Low Doses Of Colony-Stimulating Factors Lead To Resolution Of Neutropenia In Cancer Patients Through Increased Levels Of Dihydrofolate Reductase, Mohammad Perwaiz Iqbal, Ikram Ali Burney

Department of Biological & Biomedical Sciences

Low doses of granulocyte- colony stimulating factor (G-CSF) and granulocyte macrophage- colony stimulating factor (GM-CSF) have been shown to be beneficial in reducing duration of systemic antibiotic therapy and in-patient hospitalization by decreasing the period of neutropenia in cancer patients undergoing chemotherapy. Since the underlying mechanism is unclear, the aim of this study was to investigate whether the administration of G-CSF and GM-CSF in two different doses (low dose and standard dose) would result into resolution of neutropenia with concomitant increase in multiple forms of dihydrofolate reductase (DHFR, a pivotal enzyme in the pathway of de novo DNA synthesis). Thirty …


A Lipid-Rich Gestational Diet Predisposes Offspring To Nonalcoholic Fatty Liver Disease: A Potential Sequence Of Events, Alexandria N. Hughes, Julia Thom Oxford Mar 2014

A Lipid-Rich Gestational Diet Predisposes Offspring To Nonalcoholic Fatty Liver Disease: A Potential Sequence Of Events, Alexandria N. Hughes, Julia Thom Oxford

Biomedical Research Institute Publications and Presentations

Nonalcoholic fatty liver disease (NAFLD) is the hepatic manifestation of metabolic syndrome. It affects 20%–30% of the US population, and it is increasing worldwide. Recently, the role of lipid-rich maternal gestational nutrition in spurring the development of NAFLD among offspring has been indicated. Fetal predisposition to NAFLD involves numerous physiological reroutings that are initiated by increased delivery of nonesterified fatty acids to the fetal liver. Hampered ß-oxidation, uncontrolled oxidative stress, increased triacylglycerol synthesis, and the endoplasmic reticulum unfolded protein response are all implicated in sculpting a hepatic phenotype with a propensity to develop NAFLD in the postnatal state. This review …


Survivin: Regulation By Yy1 And Role In Pancreatic Cancer Combination Therapy, Nicholas R. Galloway Mar 2014

Survivin: Regulation By Yy1 And Role In Pancreatic Cancer Combination Therapy, Nicholas R. Galloway

Loma Linda University Electronic Theses, Dissertations & Projects

Despite significant clinical and basic science advancements, cancer remains a devastating disease that affects people of all ages, races, and background. Survivin, the fourth most common transcript found in cancer cells, is a protein that is thought to be involved in the enhanced proliferation, survival, and metastasis of cancer cells. Therefore understanding how this gene is regulated is potentially of vital importance to improving cancer management and therapy. Our work has identified a novel transcriptional regulator of survivin called Yin Yang 1 (YY1). YY1 is a transcription factor that has been observed to activate some gene promoters and repress others, …


Use Of Synthetic Isoprenoids To Target Protein Prenylation And Rho Gtpases In Breast Cancer Invasion, Min Chen, Teresa Knifley, Thangaiah Subramanian, H. Peter Spielmann, Kathleen L. O'Connor Feb 2014

Use Of Synthetic Isoprenoids To Target Protein Prenylation And Rho Gtpases In Breast Cancer Invasion, Min Chen, Teresa Knifley, Thangaiah Subramanian, H. Peter Spielmann, Kathleen L. O'Connor

Molecular and Cellular Biochemistry Faculty Publications

Dysregulation of Ras and Rho family small GTPases drives the invasion and metastasis of multiple cancers. For their biological functions, these GTPases require proper subcellular localization to cellular membranes, which is regulated by a series of post-translational modifications that result in either farnesylation or geranylgeranylation of the C-terminal CAAX motif. This concept provided the rationale for targeting farnesyltransferase (FTase) and geranylgeranyltransferases (GGTase) for cancer treatment. However, the resulting prenyl transferase inhibitors have not performed well in the clinic due to issues with alternative prenylation and toxicity. As an alternative, we have developed a unique class of potential anti-cancer therapeutics called …


Global Analysis Of Lysine Acetylation Suggests The Involvement Of Protein Acetylation In Diverse Biological Processes In Rice (Oryza Sativa)., Babi Ramesh Reddy Nallamilli, Mariola J. Edelmann, Xiaoxian Zhong, Feng Tan, Hana Mujahid, Jian Zhang, Bindu Nanduri, Zhaohua Peng Feb 2014

Global Analysis Of Lysine Acetylation Suggests The Involvement Of Protein Acetylation In Diverse Biological Processes In Rice (Oryza Sativa)., Babi Ramesh Reddy Nallamilli, Mariola J. Edelmann, Xiaoxian Zhong, Feng Tan, Hana Mujahid, Jian Zhang, Bindu Nanduri, Zhaohua Peng

CALS Publications

Lysine acetylation is a reversible, dynamic protein modification regulated by lysine acetyltransferases and deacetylases. Recent advances in high-throughput proteomics have greatly contributed to the success of global analysis of lysine acetylation. A large number of proteins of diverse biological functions have been shown to be acetylated in several reports in human cells, E.coli, and dicot plants. However, the extent of lysine acetylation in non-histone proteins remains largely unknown in monocots, particularly in the cereal crops. Here we report the mass spectrometric examination of lysine acetylation in rice (Oryza sativa). We identified 60 lysine acetylated sites on 44 proteins of diverse …


Single Molecule Fret Reveals Pore Size And Opening Mechanism Of A Mechano-Sensitive Ion Channel, Yong Wang, Yanxin Liu, Hannah A. Deberg, Takeshi Nomura, Melinda Tonks Hoffman, Paul R. Rohde, Klaus Schulten, Boris Martinac, Paul R. Selvin Feb 2014

Single Molecule Fret Reveals Pore Size And Opening Mechanism Of A Mechano-Sensitive Ion Channel, Yong Wang, Yanxin Liu, Hannah A. Deberg, Takeshi Nomura, Melinda Tonks Hoffman, Paul R. Rohde, Klaus Schulten, Boris Martinac, Paul R. Selvin

Physics Faculty Publications and Presentations

The mechanosensitive channel of large conductance, which serves as a model system for mechanosensitive channels, has previously been crystallized in the closed form, but not in the open form. Ensemble measurements and electrophysiological sieving experiments show that the open-diameter of the channel pore is >25 Å, but the exact size and whether the conformational change follows a helix-tilt or barrel-stave model are unclear. Here we report measurements of the distance changes on liposome-reconstituted MscL transmembrane α-helices, using a ‘virtual sorting’ single-molecule fluorescence energy transfer. We observed directly that the channel opens via the helix-tilt model and the open pore reaches …


Immature Myeloid Cells Promote Tumor Formation Via Non-Suppressive Mechanism, Myrna Lillian Ortiz Feb 2014

Immature Myeloid Cells Promote Tumor Formation Via Non-Suppressive Mechanism, Myrna Lillian Ortiz

USF Tampa Graduate Theses and Dissertations

ABSTRACT

Although there is ample evidence linking chronic inflammation with cancer, the cellular mechanisms involved in early events leading to tumor development remain unclear. Myeloid cells are an intricate part of inflammation. They consist of mature cells represented by macrophages, dendritic cells and granulocytes and a population of Immature Myeloid Cells (IMC), which in healthy individuals are cells in transition to mature cells. There is a substantial expansion of IMC in cancer and many other pathological conditions which is associated with pathologic activation of these cells. As a result, these cells acquire the ability to suppress immune responses and are …


Genome-Wide Rnai Ionomics Screen Reveals New Genes And Regulation Of Human Trace Element Metabolism, Mikalai I. Malinouski, Nesrin M. Hasan, Yan Zhang, Javier Seravalli, Jie Lin, Andrei Avanesov, Svetlana Lutsenko, Vadim N. Gladyshev Feb 2014

Genome-Wide Rnai Ionomics Screen Reveals New Genes And Regulation Of Human Trace Element Metabolism, Mikalai I. Malinouski, Nesrin M. Hasan, Yan Zhang, Javier Seravalli, Jie Lin, Andrei Avanesov, Svetlana Lutsenko, Vadim N. Gladyshev

Department of Biochemistry: Faculty Publications

Trace elements are essential for human metabolism and dysregulation of their homoeostasis is associated with numerous disorders. Here we characterize mechanisms that regulate trace elements in human cells by designing and performing a genome-wide high-throughput siRNA/ionomics screen, and examining top hits in cellular and biochemical assays. The screen reveals high stability of the ionomes, especially the zinc ionome, and yields known regulators and novel candidates. We further uncover fundamental differences in the regulation of different trace elements. Specifically, selenium levels are controlled through the selenocysteine machinery and expression of abundant selenoproteins; copper balance is affected by lipid metabolism and requires …


Computational Design Of The Affinity And Specificity Of A Therapeutic T Cell Receptor, Brian G. Pierce, Lance M. Hellman, Moushumi Hossain, Nishant K. Singh, Craig W. Vander Kooi, Zhiping Weng, Brian M. Baker Feb 2014

Computational Design Of The Affinity And Specificity Of A Therapeutic T Cell Receptor, Brian G. Pierce, Lance M. Hellman, Moushumi Hossain, Nishant K. Singh, Craig W. Vander Kooi, Zhiping Weng, Brian M. Baker

Molecular and Cellular Biochemistry Faculty Publications

T cell receptors (TCRs) are key to antigen-specific immunity and are increasingly being explored as therapeutics, most visibly in cancer immunotherapy. As TCRs typically possess only low-to-moderate affinity for their peptide/MHC (pMHC) ligands, there is a recognized need to develop affinity-enhanced TCR variants. Previous in vitro engineering efforts have yielded remarkable improvements in TCR affinity, yet concerns exist about the maintenance of peptide specificity and the biological impacts of ultra-high affinity. As opposed to in vitro engineering, computational design can directly address these issues, in theory permitting the rational control of peptide specificity together with relatively controlled increments in affinity. …


Ube3a Role In Synaptic Plasticity And Neurodevelopmental Disorders.The Lessons From Angelman Syndrome., Irina Filonova Feb 2014

Ube3a Role In Synaptic Plasticity And Neurodevelopmental Disorders.The Lessons From Angelman Syndrome., Irina Filonova

USF Tampa Graduate Theses and Dissertations

Angelman Syndrome (AS) is a severe neurodevelopmental disorder that affects 1:12000 newborns. It is characterized by mental retardation, delayed major motor and cognitive milestones, seizures, absence of speech and excessive laughter. The majority of AS cases arise from deletions or mutations of UBE3A gene located on the chromosome 15q11-13. UBE3A codes for E3-ubiquitin ligase that target specific proteins for degradation. To date, a wide variety of Ube3a substrates has been identified. The accumulation of Ube3a-dependent proteins and their effect on the multitude of signal transduction pathways are` considered the main cause of the AS pathology. While the majority of research …


Structural Dynamics Of A Mitochondrial Trna Possessing Weak Thermodynamic Stability, Hari Bhaskaran, Takaaki Taniguchi, Takeo Suzuki, Tsutomu Suzuki, John J. Perona Feb 2014

Structural Dynamics Of A Mitochondrial Trna Possessing Weak Thermodynamic Stability, Hari Bhaskaran, Takaaki Taniguchi, Takeo Suzuki, Tsutomu Suzuki, John J. Perona

Chemistry Faculty Publications and Presentations

Folding dynamics are ubiquitously involved in controlling the multivariate functions of RNAs. While the high thermodynamic stabilities of some RNAs favor purely native states at equilibrium, it is unclear whether weakly stable RNAs exist in random, partially folded states or sample well-defined, globally folded conformations. Using a folding assay that precisely tracks the formation of native aminoacylable tRNA, we show that the folding of a weakly stable human mitochondrial (hmt) leucine tRNA is hierarchical with a distinct kinetic folding intermediate. The stabilities of the native and intermediate conformers are separated by only about 1.2 kcal/mol, and the species are readily …