Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biochemistry (110)
- Molecular Biology (61)
- Physical Sciences and Mathematics (52)
- Chemistry (43)
- Medicine and Health Sciences (32)
-
- Microbiology (19)
- Cell and Developmental Biology (16)
- Biology (15)
- Medical Sciences (13)
- Biotechnology (12)
- Other Biochemistry, Biophysics, and Structural Biology (11)
- Genetics and Genomics (9)
- Bioinformatics (8)
- Cell Biology (8)
- Immunology and Infectious Disease (7)
- Physiology (7)
- Biophysics (6)
- Cancer Biology (6)
- Chemicals and Drugs (6)
- Medical Specialties (6)
- Oncology (6)
- Genetics (5)
- Oceanography and Atmospheric Sciences and Meteorology (5)
- Plant Sciences (5)
- Amino Acids, Peptides, and Proteins (4)
- Cellular and Molecular Physiology (4)
- Earth Sciences (4)
- Ecology and Evolutionary Biology (4)
- Institution
-
- University of Nebraska - Lincoln (39)
- Old Dominion University (13)
- Brigham Young University (12)
- Virginia Commonwealth University (9)
- California Polytechnic State University, San Luis Obispo (8)
-
- Technological University Dublin (7)
- University of Central Florida (7)
- Wayne State University (6)
- Western University (6)
- Munster Technological University (5)
- University of Missouri, St. Louis (5)
- Wright State University (5)
- Chapman University (4)
- Portland State University (4)
- University of Kentucky (4)
- University of the Pacific (4)
- Central Washington University (3)
- Clemson University (3)
- Montclair State University (3)
- University of Texas at El Paso (3)
- Aga Khan University (2)
- Dominican University of California (2)
- East Tennessee State University (2)
- George Fox University (2)
- Grand Valley State University (2)
- Linfield University (2)
- Marshall University (2)
- San Jose State University (2)
- Seton Hall University (2)
- Syracuse University (2)
- Keyword
-
- Biochemistry (5)
- Department of Biochemistry and Molecular Biology (5)
- Escherichia coli (5)
- Models (5)
- Models, Molecular (5)
-
- Animals (4)
- Biological Sciences (4)
- Molecular (4)
- DNA (3)
- Dimerization (3)
- Humans (3)
- Hydrolysis (3)
- Mice (3)
- Molecular Sequence Data (3)
- P53 (3)
- Protein Binding (3)
- Protein Structure (3)
- Protein Subunits (3)
- Amino acid (2)
- Aminoacyl-tRNA synthetase (2)
- Apoptosis (2)
- Aquaporins (2)
- Base Sequence (2)
- Calcium (2)
- Cancer (2)
- Carrier Proteins (2)
- Catalytic Domain (2)
- Cell Death (2)
- Cell Nucleus (2)
- Cell migration (2)
- Publication
-
- Department of Biochemistry: Faculty Publications (20)
- Theses and Dissertations (17)
- Vadim Gladyshev Publications (14)
- Electronic Theses and Dissertations (11)
- Chemistry and Biochemistry (8)
-
- Faculty Publications (8)
- Articles (7)
- Biochemistry Publications (6)
- Theses and Dissertations in Biomedical Sciences (6)
- Browse all Theses and Dissertations (5)
- Chemistry & Biochemistry Faculty Works (5)
- Biochemistry and Molecular Biology Faculty Publications (4)
- Chemistry Faculty Publications and Presentations (4)
- Theses (4)
- All Dugoni School of Dentistry Faculty Articles (3)
- All Faculty Scholarship for the College of the Sciences (3)
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (3)
- Open Access Theses & Dissertations (3)
- Theses, Dissertations and Culminating Projects (3)
- All Dissertations (2)
- Biochemistry and Microbiology (2)
- Bioelectrics Publications (2)
- Chemistry and Biochemistry Faculty Publications (2)
- Department of Biological & Biomedical Sciences (2)
- Faculty Publications - Department of Biological & Molecular Science (2)
- Faculty Publications, Chemistry (2)
- Honors Capstones (2)
- Molecular and Cellular Biochemistry Faculty Publications (2)
- Natural Sciences and Mathematics | Faculty Scholarship (2)
- Renée Crown University Honors Thesis Projects - All (2)
- Publication Type
Articles 61 - 90 of 210
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Ion Permeation Through Membrane Channels: Molecular Dynamics Simulations Studies, Morad Mustafa
Ion Permeation Through Membrane Channels: Molecular Dynamics Simulations Studies, Morad Mustafa
Theses and Dissertations
Molecular dynamics simulation was used to study ion permeation through different membrane proteins embedded in a lipid bilayer (DMPC) with different saline solutions. The potential of mean force (PMF) for ion transport was obtained by umbrella sampling simulations. A revised MacKerell force field for tryptophan residues was studied using gramicidin A (gA) channel as a test model. The revised force field contribution to the Na+ PMF was consonant with the prediction from the experimental results, but in stark contrast to the prediction of the CHARMM force field, version 22, for the tryptophan side-chain. A new grid-based correction map algorithm by …
Sumoylation Regulates Lamin A Function And Is Lost In Lamin A Mutants Associated With Familial Cardiomyopathies, Yu-Qian Zhang, Kevin D. Sarge
Sumoylation Regulates Lamin A Function And Is Lost In Lamin A Mutants Associated With Familial Cardiomyopathies, Yu-Qian Zhang, Kevin D. Sarge
Molecular and Cellular Biochemistry Faculty Publications
Lamin A mutations cause many diseases, including cardiomyopathies and Progeria Syndrome. The covalent attachment of small ubiquitin-like modifier (SUMO) polypeptides regulates the function of many proteins. Until now, no examples of human disease-causing mutations that occur within a sumoylation consensus sequence and alter sumoylation were known. We show that lamin A is sumoylated at lysine 201 and that two lamin A mutants associated with familial dilated cardiomyopathy, E203G and E203K, exhibit decreased sumoylation. E203 occupies the conserved +2 position in the sumoylation consensus Psi KXE. Lamin A mutants E203G, E203K, and K201R all exhibit a similar aberrant subcellular localization and …
Computational Design Of Orthogonal Ribosomes, Lon Chubiz, Christopher Rao
Computational Design Of Orthogonal Ribosomes, Lon Chubiz, Christopher Rao
Biology Department Faculty Works
Orthogonal ribosomes (o-ribosomes), also known as specialized ribosomes, are able to selectively translate mRNA not recognized by host ribosomes. As a result, they are powerful tools for investigating translational regulation and probing ribosome structure. To date, efforts directed towards engineering o-ribosomes have involved random mutagenesisbased approaches. As an alternative, we present here a computational method for rationally designing o-ribosomes in bacteria. Working under the assumption that base-pair interactions between the 16S rRNA and mRNA serve as the primary mode for ribosome binding and translational initiation, the algorithm enumerates all possible extended recognition sequences for 16S rRNA and then chooses those …
Probing The Functional Tolerance Of The B Subunit Of Escherichia Coli Atp Synthase For Sequence Manipulation Through A Chimera Approach., Yumin Bi, Joel C Watts, Pamela Krauss Bamford, Lee-Ann K Briere, Stanley D Dunn
Probing The Functional Tolerance Of The B Subunit Of Escherichia Coli Atp Synthase For Sequence Manipulation Through A Chimera Approach., Yumin Bi, Joel C Watts, Pamela Krauss Bamford, Lee-Ann K Briere, Stanley D Dunn
Biochemistry Publications
A dimer of 156-residue b subunits forms the peripheral stator stalk of eubacterial ATP synthase. Dimerization is mediated by a sequence with an unusual 11-residue (hendecad) repeat pattern, implying a right-handed coiled coil structure. We investigated the potential for producing functional chimeras in the b subunit of Escherichia coli ATP synthase by replacing parts of its sequence with corresponding regions of the b subunits from other eubacteria, sequences from other polypeptides having similar hendecad patterns, and sequences forming left-handed coiled coils. Replacement of positions 55-110 with corresponding sequences from Bacillus subtilis and Thermotoga maritima b subunits resulted in fully functional …
Aminoacyl-Trna Synthetase Complexes: Molecular Multitasking Revealed, Corinne D. Hausmann, Michael Ibba
Aminoacyl-Trna Synthetase Complexes: Molecular Multitasking Revealed, Corinne D. Hausmann, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
The accurate synthesis of proteins, dictated by the corresponding nucleotide sequence encoded in mRNA, is essential for cell growth and survival. Central to this process are the aminoacyl-tRNA synthetases (aaRSs), which provide amino acid substrates for the growing polypeptide chain in the form of aminoacyl-tRNAs. The aaRSs are essential for coupling the correct amino acid and tRNA molecules, but are also known to associate in higher order complexes with proteins involved in processes beyond translation. Multiprotein complexes containing aaRSs are found in all three domains of life playing roles in splicing, apoptosis, viral assembly, and regulation of transcription and translation. …
Electron Crystallography Of Aquaporins, Simeon Andrews, Steve Reichow, Tamir Gonen
Electron Crystallography Of Aquaporins, Simeon Andrews, Steve Reichow, Tamir Gonen
Chemistry Faculty Publications and Presentations
Aquaporins are a family of ubiquitous membrane proteins that form a pore for the permeation of water. Both electron and X-ray crystallography played major roles in determining the atomic structures of a number of aquaporins. This review focuses on electron crystallography, and its contribution to the field of aquaporin biology. We briefly discuss electron crystallography and the two-dimensional crystallization process. We describe features of aquaporins common to both electron and X-ray crystallographic structures; as well as some structural insights unique to electron crystallography, including aquaporin junction formation and lipid-protein interactions.
Sphingolipid Long-Chain Base Hydroxylation Is Important For Growth And Regulation Of Sphingolipid Content And Composition In Arabidopsis, Ming Chen, Jennifer E. Markham, Charles R. Dietrich, Jan G. Jaworski, Edgar B. Cahoon
Sphingolipid Long-Chain Base Hydroxylation Is Important For Growth And Regulation Of Sphingolipid Content And Composition In Arabidopsis, Ming Chen, Jennifer E. Markham, Charles R. Dietrich, Jan G. Jaworski, Edgar B. Cahoon
Department of Biochemistry: Faculty Publications
Sphingolipids are structural components of endomembranes and function through their metabolites as bioactive regulators of cellular processes such as programmed cell death. A characteristic feature of plant sphingolipids is their high content of trihydroxy long-chain bases (LCBs) that are produced by the LCB C-4 hydroxylase. To determine the functional significance of trihydroxy LCBs in plants, T-DNA double mutants and RNA interference suppression lines were generated for the two Arabidopsis thaliana LCB C-4 hydroxylase genes Sphingoid Base Hydroxylase1 (SBH1) and SBH2. These plants displayed reductions in growth that were dependent on the content of trihydroxy LCBs in sphingolipids. …
Promoter Library Designed For Fine-Tuned Gene Expression In Pichia Pastoris, Franz S. Hartner, Claudia Ruth, David Langenegger, Sabrina N. Johnson, Petr Hyka, Geoff P. Lin-Cereghino, Joan Lin-Cereghino, Karin Kovar, James Cregg, Anton Glieder
Promoter Library Designed For Fine-Tuned Gene Expression In Pichia Pastoris, Franz S. Hartner, Claudia Ruth, David Langenegger, Sabrina N. Johnson, Petr Hyka, Geoff P. Lin-Cereghino, Joan Lin-Cereghino, Karin Kovar, James Cregg, Anton Glieder
College of the Pacific Faculty Articles
Although frequently used as protein production host, there is only a limited set of promoters available to drive the expression of recombinant proteins in Pichia pastoris. Fine-tuning of gene expression is often needed to maximize product yield and quality. However, for efficient knowledge-based engineering, a better understanding of promoter function is indispensable. Consequently, we created a promoter library by deletion and duplication of putative transcription factor-binding sites within the AOX1 promoter (PAOX1) sequence. This first library initially spanned an activity range between ∼6% and >160% of the wild-type promoter activity. After characterization of the promoter library employing …
Nanosecond Pulsed Electric Fields Induce A Mitochondria-Independent Apoptosis In B16f10 Melanoma Cells In Vitro, Wentia Elissa Ford
Nanosecond Pulsed Electric Fields Induce A Mitochondria-Independent Apoptosis In B16f10 Melanoma Cells In Vitro, Wentia Elissa Ford
Theses and Dissertations in Biomedical Sciences
Nanosecond pulsed electric fields (nsPEFs) are ultra-short pulses that induce direct electric field and biological effects that initiate apoptosis. Here the application of ten 300ns pulses ranging in electric fields from 12kV/cm-60kV/cm was administered to determine the effects on B16F10 melanoma cells evaluated by in vitro studies. Initial application of nsPEFs demonstrated apoptosis induction in an electric field- and pulse number-dependent manner measured by caspase activation that correlated with decrease in cell viability 24hr post pulse. In addition caspase activity was shown to be independent of calcium mobilization though ions may play a part in other aspects of apoptosis. The …
In Vivo Murine Melanoma Tumor Responses To Nanosecond Pulsed Electric Field Treatment, Xinhua Chen
In Vivo Murine Melanoma Tumor Responses To Nanosecond Pulsed Electric Field Treatment, Xinhua Chen
Theses and Dissertations in Biomedical Sciences
High intensity nanosecond pulsed electric fields (nsPEF) were applied to melanoma tumors to observe functional and structural biological changes and to investigate the possible molecular mechanisms responsible. An animal model was set up by injecting B16F10 mouse melanoma cells into SKH-1 mice. A treatment (Tx) of 100 pulses: 300 nanosecond duration; 40 kV/cm field strength; at 0.5 Hz rate were delivered to melanoma tumors in 120 mice. The nsPEF Txcaused tumor self-destruction with sharply decreased cell volumes and shrunken nuclei. The apoptotic biochemical tests confirmed nsPEF Tx induced apoptosis in a time-dependent manner. Examination of gross vessel and micro-vessel density …
Pge2 Receptor Subsets Mediate Hcg Regulation Of The Plasminogen Activator/Plasmin System In Primate Periovulatory Follicles, Nune Markosyan
Pge2 Receptor Subsets Mediate Hcg Regulation Of The Plasminogen Activator/Plasmin System In Primate Periovulatory Follicles, Nune Markosyan
Theses and Dissertations in Biomedical Sciences
Elevated follicular prostaglandin E2 (PGE2) levels are necessary for follicle rupture during ovulation. As the degradation of the follicle wall requires proteolysis, it was hypothesized that regulation of proteolysis by gonadotropins is PGE2 mediated.
There are four PGE2 receptors: EP1, EP2, EP3 and EP4. To determine which PGE2 receptors are present in monkey periovulatory follicles, granulosa cells and whole ovaries were collected 0, 12, 24, and 36 hours after administration of an ovulatory dose of human chorionic gonadotropin (hCG), or 36 hours after hCG from monkeys that received the prostaglandin (PG) synthesis inhibitor celecoxib. All EP receptor mRNAs were present …
Evolution Of Metal(Loid) Binding Sites In Transcriptional Regulators, Efrén Ordóñez, Saravanamuthu Thiyagarajan, Jeremy D. Cook, Timothy L. Stemmler, José A. Gil., Luís M. Mateos, Barry P. Rosen
Evolution Of Metal(Loid) Binding Sites In Transcriptional Regulators, Efrén Ordóñez, Saravanamuthu Thiyagarajan, Jeremy D. Cook, Timothy L. Stemmler, José A. Gil., Luís M. Mateos, Barry P. Rosen
Biochemistry and Molecular Biology Faculty Publications
Expression of the genes for resistance to heavy metals and metalloids is transcriptionally regulated by the toxic ions themselves. Members of the ArsR/SmtB family of small metalloregulatory proteins respond to transition metals, heavy metals and metalloids, including As(III), Sb(III), Cd(II), Pb(II), Zn(II), Co(II) and Ni(II). These homodimeric repressors bind to DNA in absence of inducing metal(loid) ion and dissociate from the DNA when inducer is bound. The regulatory sites are often three- or four-coordinate metal binding sites composed of cysteine thiolates. Surprisingly, in two different As(III)-responsive regulators, the metalloid binding sites were in different locations in the repressor, and the …
The Role Of Upstream Sequences In Selecting The Reading Frame On Tmrna, Allen R. Buskirk, Mickey R. Miller, David W. Healey, Jonathan D. Dewey, Stephen G. Robison
The Role Of Upstream Sequences In Selecting The Reading Frame On Tmrna, Allen R. Buskirk, Mickey R. Miller, David W. Healey, Jonathan D. Dewey, Stephen G. Robison
Faculty Publications
tmRNA acts first as a tRNA and then as an mRNA to rescue stalled ribosomes in eubacteria. Two unanswered questions about tmRNA function remain: how does tmRNA, lacking an anticodon, bypass the decoding machinery and enter the ribosome? Secondly, how does the ribosome choose the proper codon to resume translation on tmRNA? According to the -1 triplet hypothesis, the answer to both questions lies in the unique properties of the three nucleotides upstream of the first tmRNA codon. These nucleotides assume an A-form conformation that mimics the codon-anticodon interaction, leading to recognition by the decoding center and choice of the …
Platyhelminth Mitochondrial And Cytosolic Redox Homeostasis Is Controlled By A Single Thioredoxin Glutathione Reductase And Dependent On Selenium And Glutathione, Mariana Bonilla, Ana Denicola, Sergey V. Novoselov, Anton A. Turanov, Anna Protasio, Darwin Izmendi, Vadim N. Gladyshev, Gustavo Salinas
Platyhelminth Mitochondrial And Cytosolic Redox Homeostasis Is Controlled By A Single Thioredoxin Glutathione Reductase And Dependent On Selenium And Glutathione, Mariana Bonilla, Ana Denicola, Sergey V. Novoselov, Anton A. Turanov, Anna Protasio, Darwin Izmendi, Vadim N. Gladyshev, Gustavo Salinas
Vadim Gladyshev Publications
Platyhelminth parasites are a major health problem in developing countries. In contrast to their mammalian hosts, platyhelminth thiol-disulfide redox homeostasis relies on linked thioredoxin-glutathione systems, which are fully dependent on thioredoxin-glutathione reductase (TGR), a promising drug target. TGR is a homodimeric enzyme comprising a glutaredoxin domain and thioredoxin reductase (TR) domains with a C-terminal redox center containing selenocysteine (Sec). In this study, we demonstrate the existence of functional linked thioredoxin-glutathione systems in the cytosolic and mitochondrial compartments of Echinococcus granulosus, the platyhelminth responsible for hydatid disease. The glutathione reductase (GR) activity of TGR exhibited hysteretic behavior regulated by the …
The Response Of Hn4 Cells To Porphyromonas Gingivalis Dna, Cheyanne Warren
The Response Of Hn4 Cells To Porphyromonas Gingivalis Dna, Cheyanne Warren
Theses and Dissertations
Periodontal disease is one of the most common human diseases. Bacteria trigger the onset and progression of the disease and among them Porphyromonas gingivalis has been demonstrated to be a major etiologic agent. Although the interaction of the bacterium with the host is of major importance for the understanding of the disease mechanisms, both the host as well as the pathogen components involved in the interaction remain poorly understood. One of the bacterial components capable of eliciting a host response is unmethylated CpG DNA motifs found in bacteria. Thus, the first aim was to determine the response of oral epithelial …
Critical Involvement Of The Atm-Dependent Dna Damage Response In The Apoptotic Demise Of Hiv-1-Elicited Syncytia, Jean-Luc Perfettini, Roberta Nardacci, Mehdi Bourouba, Frederic Subra, Laurent Gros, Claire Séror, Gwenola Manic, Filippo Rosselli, Alessandra Amendola, Peggy Masdehors, Luciana Chessa, Giuseppe Novelli, David M. Ojcius, Jan Konrad Siwicki, Magdalena Chechlinska, Christian Auclair, Jose R. Regueiro, Hughes De Thé, Marie-Lise Gougeon, Mauro Piacentini, Guido Kroemer
Critical Involvement Of The Atm-Dependent Dna Damage Response In The Apoptotic Demise Of Hiv-1-Elicited Syncytia, Jean-Luc Perfettini, Roberta Nardacci, Mehdi Bourouba, Frederic Subra, Laurent Gros, Claire Séror, Gwenola Manic, Filippo Rosselli, Alessandra Amendola, Peggy Masdehors, Luciana Chessa, Giuseppe Novelli, David M. Ojcius, Jan Konrad Siwicki, Magdalena Chechlinska, Christian Auclair, Jose R. Regueiro, Hughes De Thé, Marie-Lise Gougeon, Mauro Piacentini, Guido Kroemer
All Dugoni School of Dentistry Faculty Articles
DNA damage can activate the oncosuppressor protein ataxia telangiectasia mutated (ATM), which phosphorylates the histone H2AX within characteristic DNA damage foci. Here, we show that ATM undergoes an activating phosphorylation in syncytia elicited by the envelope glycoprotein complex (Env) of human immunodeficiency virus-1 (HIV-1) in vitro. This was accompanied by aggregation of ATM in discrete nuclear foci that also contained phospho-histone H2AX. DNA damage foci containing phosphorylated ATM and H2AX were detectable in syncytia present in the brain or lymph nodes from patients with HIV-1 infection, as well as in a fraction of blood leukocytes, correlating with viral status. Knockdown …
Structural And Functional Mapping Of The Archaeal Multi-Aminoacyl-Trna Synthetase Complex, Corinne D. Hausmann, Michael Ibba
Structural And Functional Mapping Of The Archaeal Multi-Aminoacyl-Trna Synthetase Complex, Corinne D. Hausmann, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Methanothermobacter thermautotrophicus contains a multi-aminoacyl-tRNA synthetase complex (MSC) of LysRS, LeuRS and ProRS. Elongation factor (EF) 1A also associates to the MSC, with LeuRS possibly acting as a core protein. Analysis of the MSC revealed that LysRS and ProRS specifically interact with the idiosyncratic N- and C- termini of LeuRS, respectively. EF-1A instead interacts with the inserted CP1 proofreading domain, consistent with models for post-transfer editing by class I synthetases such as LeuRS. Together with previous genetic data, these findings show that LeuRS plays a central role in mediating interactions within the archaeal MSC by acting as a core scaffolding …
A Cytosolic Iron Chaperone That Delivers Iron To Ferritin, Haifeng Shi, Krisztina Z. Bencze, Timothy L. Stemmler, Caroline C. Philpott
A Cytosolic Iron Chaperone That Delivers Iron To Ferritin, Haifeng Shi, Krisztina Z. Bencze, Timothy L. Stemmler, Caroline C. Philpott
Biochemistry and Molecular Biology Faculty Publications
Ferritins are the main iron storage proteins found in animals, plants and bacteria. The capacity to store iron in ferritin is essential for life in mammals, but the mechanism by which cytosolic iron is delivered to ferritin is unknown. Human ferritins expressed in yeast contain little iron. The human Poly r(C)-Binding Protein 1 (PCBP1) increased the amount of iron loaded into ferritin when expressed in yeast. PCBP1 bound to ferritin in vivo, and bound iron and facilitated iron loading into ferritin in vitro. Depletion of PCBP1 in human cells inhibited ferritin iron loading and increased cytosolic iron pools. Thus, PCBP1 …
Atf4 Is An Oxidative Stress–Inducible, Prodeath Transcription Factor In Neurons In Vitro And In Vivo, Philipp Lange, Juan Chavez, John T. Pinto, Giovanni Coppola, Chiao-Wang Sun, Tim Townes, Rajiv Ratan
Atf4 Is An Oxidative Stress–Inducible, Prodeath Transcription Factor In Neurons In Vitro And In Vivo, Philipp Lange, Juan Chavez, John T. Pinto, Giovanni Coppola, Chiao-Wang Sun, Tim Townes, Rajiv Ratan
NYMC Faculty Publications
Oxidative stress is pathogenic in neurological diseases, including stroke. The identity of oxidative stress-inducible transcription factors and their role in propagating the death cascade are not well known. In an in vitro model of oxidative stress, the expression of the bZip transcription factor activating transcription factor 4 (ATF4) was induced by glutathione depletion and localized to the promoter of a putative death gene in neurons. Germline deletion of ATF4 resulted in a profound reduction in oxidative stress-induced gene expression and resistance to oxidative death. In neurons, ATF4 modulates an early, upstream event in the death pathway, as resistance to oxidative …
Structural And Biochemical Investigation Of The Molecular Mechanisms Of Dna Response And Repair In Humans And Escherichia Coli., Steven Michael Shell
Structural And Biochemical Investigation Of The Molecular Mechanisms Of Dna Response And Repair In Humans And Escherichia Coli., Steven Michael Shell
Electronic Theses and Dissertations
The genomes of all living cells are under constant attack from both endogenous and exogenous agents that damage DNA. In order to maintain genetic integrity a variety of response pathways have evolved to recognize and eliminate DNA damage. Replication protein A (RPA), the eukaryotic single-stranded DNA (ssDNA) binding protein, is a required factor for all major DNA metabolisms. Although much work has been done to elucidate the nature of the interaction between RPA and ssDNA currently there is no structural information on how the full-length protein binds to ssDNA. This study presents a novel examination of the full nucleoprotein complex …
Tendinopathy Discrimination By Use Of Spatial Frequency Parameters In Ultrasound B-Mode Images, Gregory R. Bashford, Nicholas Tomsen, Shruti Arya, Judith M. Burnfield, Kornelia Kulig
Tendinopathy Discrimination By Use Of Spatial Frequency Parameters In Ultrasound B-Mode Images, Gregory R. Bashford, Nicholas Tomsen, Shruti Arya, Judith M. Burnfield, Kornelia Kulig
Biomedical Imaging and Biosignal Analysis Laboratory
The structural characteristics of a healthy tendon are related to the anisotropic speckle patterns observed in ultrasonic images. This speckle orientation is disrupted upon damage to the tendon structure as observed in patients with tendinopathy. Quantification of the structural appearance of tendon shows promise in creating a tool for diagnosing, prognosing, or measuring changes in tendon organization over time. The current work describes a first step taken towards this goal—classification of Achilles tendon images into tendinopathy and control categories. Eight spatial frequency parameters were extracted from regions of interest on tendon images, filtered and classified using linear discriminant analysis. Resulting …
Collagen 11a1 Is Indirectly Activated By Lymphocyte Enhancer-Binding Factor 1 (Lef1) And Negatively Regulates Osteoblast Maturation, Rachel A. Kahler, Sorcha M.C. Yingst, Luke H. Hoeppner, Eric D. Jensen, David Krawczak, Julia T. Oxford, Jennifer J. Westendorf
Collagen 11a1 Is Indirectly Activated By Lymphocyte Enhancer-Binding Factor 1 (Lef1) And Negatively Regulates Osteoblast Maturation, Rachel A. Kahler, Sorcha M.C. Yingst, Luke H. Hoeppner, Eric D. Jensen, David Krawczak, Julia T. Oxford, Jennifer J. Westendorf
Biomedical Research Institute Publications and Presentations
Alpha 1 (XI) collagen (Col11a1) is essential for normal skeletal development. Mutations in Col11a1 cause Marshall and Stickler syndromes, characterized by craniofacial abnormalities, nearsightedness and hearing abnormalities. Despite its link to human diseases, few studies have characterized the factors that control Col11a1 transcription. We previously identified Col11a1 as a differentially expressed gene in Lef1-suppressed MC3T3 preosteoblasts. Here we report that Lef1 activates the Col11a1 promoter. This activation is dependent upon the DNA binding domain of Lef1, but does not require the ß-catenin interaction domain, suggesting that it is not responsive to Wnt signals. Targeted deletion of Col11a1 with an antisense …
Optimization Of Expression And Purification Of Acetoacetyl-Coa Thiolase From Sunflower, Anthony Muriithi Maina
Optimization Of Expression And Purification Of Acetoacetyl-Coa Thiolase From Sunflower, Anthony Muriithi Maina
Theses, Dissertations and Culminating Projects
The [beta]-oxidation system in sunflower (Helianthus annuus L.) cotyledons is distinguished by the existence of two different thiolase isoforms, Thiolase I (acetoacetyl-CoA thiolase, EC 2.3.1.9 AACT) and Thiolase II (3-oxoacyl-CoA thiolase, EC 2.3.1.16 OACT). Glyoxysomal AACT is the last enzyme in the p-oxidation of fatty acids in plant glyoxysomes. Glyoxysomal AACT has been successfully cloned, expressed and purified from sunflower cotyledons (Dyer et al., 2006). In this paper we investigate the optimal conditions for both expression and purification. These include the choice of vector, the growth conditions and the purification parameters for the maximum possible yield of AACT protein.
Influence Of Carbonate On The Binding Of Carboplatin To Dna, Robert S. Sorokanich
Influence Of Carbonate On The Binding Of Carboplatin To Dna, Robert S. Sorokanich
Renée Crown University Honors Thesis Projects - All
The reaction of aged carboplatin (reaction of carboplatin in 24 mM NaHCO3 for 45 h, 37o C, pH 8.6) with pBR322 DNA for 0 ≤ r ≤ 2.8, where r = [drug]/[DNA-bp], in 24 mM HEPES buffer, pH 7.4, for 24 h followed by agarose gel electrophoresis showed DNA mobility changes consistent with unwinding closed circular DNA. However, identical experiments conducted in a two buffer system, 24mM HEPES plus 24mM carbonate, showed no DNA mobility changes, indicating that carbonate blocks formation of the 1,2-intrastrand crosslink on DNA. Studies with aged carboplatin and with cisplatin carried out with 2.0 …
Expressing A Mammalian Signaling Protein In E. Coli, Soyika A. Richardson
Expressing A Mammalian Signaling Protein In E. Coli, Soyika A. Richardson
Renée Crown University Honors Thesis Projects - All
Much of what is currently known about GPCR structure was based on X-ray crystallographic measurements of rhodopsin. Furthermore, due to its inexpensiveness and the availability of simple methods to purify it in large quantities from cow eyes, bovine rhodopsin has been successfully used in obtaining diffraction-quality three-dimensional crystals. In our experiment, the bovine rhodopsin protein was cloned into the commercially available E. coli expression plasmid, pBAD TOPO®, using forward and reverse PCR primers designed in our lab. Plasmid DNA from these cells was purified in order to analyze the direction of the inserted gene. The purified plasmid DNA …
Hypochlorous Acid Mediated Damage Of Chromatin, Joseph Insugn Kang
Hypochlorous Acid Mediated Damage Of Chromatin, Joseph Insugn Kang
Loma Linda University Electronic Theses, Dissertations & Projects
Hypochlorous acid (HOCl), the primary product of activated neutrophils at sites of inflammation, can damage both DNA and associated histone proteins. HOCl damage to cytosine bases in DNA generates the chlorination damage products 5-chlorocytosine (ClC) and 5-chlorouracil (ClU) as well as the oxidation damage products 5- hydroxycytosine (HOC) and 5-hydroxyuracil (HOU). Histone damage by HOCl can be measured by quantitation of 3-chlorotyrosine and 3,5-dichlorotyrosine, stable and unique markers of protein damage caused by HOCl. The studies presented here investigate how and where these damage products occur and what implications they might have in the correlation between chronic inflammation and carcinogenesis. …
Detritus Type Alters The Outcome Of Interspecific Competition Between Aedes Aegypti And Aedes Albopictus (Diptera : Culicidae), Ebony G. Murrell, Steven A. Juliano
Detritus Type Alters The Outcome Of Interspecific Competition Between Aedes Aegypti And Aedes Albopictus (Diptera : Culicidae), Ebony G. Murrell, Steven A. Juliano
Faculty Publications – Biological Sciences
Many studies of interspecific competition between Aedes albopictus (Skuse) and Aedes aegypti (L.) (Diptera: Culicidae) larvae show that Ae. albopictus are superior resource competitors to Ae. aegypti. Single-species studies indicate that growth and survival of Ae. albopictus and Ae. aegypti larvae are affected by the type of detritus present in containers, which presumably affects the amount and quality of microorganisms that the mosquito larvae consume. We tested whether different detritus types alter the intensity of larval competition by raising 10 different density/species combinations of Ae. albopictus and Ae. aegypti larvae under standard laboratory conditions, with one of four detritus types …
Lipid Aldehydes Are Substrates And Transcriptional Regulators Of Cytochromes P450., Immaculate Amunom
Lipid Aldehydes Are Substrates And Transcriptional Regulators Of Cytochromes P450., Immaculate Amunom
Electronic Theses and Dissertations
4-hydroxy-2-nonenal (4-HNE) and propene-2-al (acrolein) are highly reactive á,â-unsaturated aldehydes. 4-HNE and acrolein are generated in vivo as products of lipid peroxidation. These aldehydes are implicated in the onset of several diseases including atherosclerosis and neurodegenerative disease. They also react with nucleophilic cellular macromolecules including proteins, DNA and phospholipids. Some of these reactions in vivo lead to inhibition of enzyme activities, depletion of glutathione and oxidative stress. Because of their pathophysiological relevance, attention has focused during the last decade on the ability of mammals to metabolize these lipid aldehydes. The purpose of this study was therefore to determine the role …
Identification Of Metallo-Ss-Lactamase Inhibitors Via Enzyme Assay And Hplc-Ms Monitoring, Peggy Ann Sanchez
Identification Of Metallo-Ss-Lactamase Inhibitors Via Enzyme Assay And Hplc-Ms Monitoring, Peggy Ann Sanchez
Theses, Dissertations and Culminating Projects
The vast overuse of antibiotics along with extrachromosomal gene insertion between different bacterial species has led to the Darwinian consequence of antibiotic resistance. Amongst the contributing factors to the rise of bacterial resistances are the production of ß-lactamases, which pose a major impediment to treatment with ß-lactam drugs such as penicillins and carbapenems. SPM-1 is a metallo-ß-lactamase (MBL) that confers antibiotic resistance to bacteria through zinc-mediated hydrolysis of ß-lactams. Bacteria that express the SPM-1 metalloenzyme show reduced sensitivity to ß-lactam drugs. One method to defeat this form of resistance is to administer a ß-lactam antibiotic with a potent ß-lactamase inhibitor …
Expression Analysis Of Plant Defense Responses During The Establishment Of Biotrophy And Role Of Abiotic Stress In The Infection Of Dyer’S Woad (Isatis Tinctoria) By Puccinia Thlaspeos, Elizabeth Thomas
All Graduate Theses and Dissertations, Spring 1920 to Summer 2023
The kinetics and amplitude of the salicylic acid-responsive pathogenesis-related (PR) genes and the cytochrome P450 gene ItCYP79B2 in the compatible interaction between Puccinia thlaspeos and dyer’s woad (Isatis tinctoria) during the first 72 hours of inoculation were examined. Immediately following penetration of the host by the rust pathogen, there was a modest up-regulation of PR genes but a significant down-regulation of ItCYP79B2 expression. During haustoria formation, a significant pathogen-mediated suppression of PR genes was observed with a corresponding up-regulation of ItCYP79B2. This potentially facilitates haustoria formation by P. thlaspeos. After haustoria formation, a more …