Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- Old Dominion University (254)
- University of Kentucky (252)
- University of South Florida (250)
- University of Arkansas, Fayetteville (232)
- Wayne State University (185)
-
- The Texas Medical Center Library (182)
- University of Central Florida (169)
- City University of New York (CUNY) (128)
- Rowan University (110)
- University of Nebraska Medical Center (97)
- Chapman University (95)
- Wright State University (92)
- University at Albany, State University of New York (88)
- Virginia Commonwealth University (74)
- University of Texas at El Paso (71)
- Thomas Jefferson University (69)
- University of Nevada, Las Vegas (65)
- Loyola University Chicago (62)
- University of Connecticut (60)
- Dartmouth College (57)
- East Tennessee State University (55)
- Clemson University (50)
- United Arab Emirates University (49)
- Purdue University (46)
- University of Denver (45)
- University of Louisville (45)
- Boise State University (44)
- Technological University Dublin (44)
- Louisiana State University (43)
- University of Richmond (42)
- Keyword
-
- Cancer (102)
- Biochemistry (93)
- Humans (90)
- Animals (89)
- Biological sciences (84)
-
- Bioinformatics (72)
- Department of Biochemistry and Molecular Biology (71)
- Apoptosis (68)
- Molecular biology (66)
- DNA (61)
- RNA (61)
- Genetics (60)
- Mice (60)
- Mitochondria (52)
- Biological Sciences (49)
- Molecular Biology (48)
- Gene expression (47)
- Inflammation (47)
- Protein (45)
- Proteomics (44)
- Breast cancer (43)
- Metabolism (42)
- Phosphorylation (41)
- Transcription (41)
- Drosophila (40)
- Epigenetics (40)
- Biology (34)
- Neurodegeneration (34)
- Saccharomyces cerevisiae (34)
- Autophagy (33)
- Publication Year
- Publication
-
- Electronic Theses and Dissertations (282)
- USF Tampa Graduate Theses and Dissertations (190)
- Graduate Theses and Dissertations (165)
- Dissertations and Theses (Open Access) (149)
- Theses and Dissertations (130)
-
- Wayne State University Dissertations (112)
- Legacy Theses & Dissertations (2009 - 2024) (82)
- Markey Cancer Center Faculty Publications (82)
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (81)
- Dissertations (76)
- Theses & Dissertations (74)
- Honors Theses (72)
- Browse all Theses and Dissertations (71)
- Dissertations, Theses, and Capstone Projects (71)
- Theses and Dissertations in Biomedical Sciences (68)
- Open Access Theses & Dissertations (60)
- Graduate School of Biomedical Sciences Theses and Dissertations (58)
- Molecular Biosciences Faculty Publications (56)
- Bioelectrics Publications (52)
- Honors Scholar Theses (50)
- Department of Biochemistry and Molecular Biology Faculty Papers (49)
- Biochemistry and Molecular Biology Faculty Publications (42)
- Master's Theses (41)
- All Dissertations (39)
- Dartmouth Scholarship (37)
- Biochemistry and Molecular Medicine Faculty Publications (36)
- Articles (35)
- Biology Faculty Publications (35)
- HIM 1990-2015 (34)
- Rowan-Virtua School of Osteopathic Medicine Departmental Research (33)
- Publication Type
- File Type
Articles 3181 - 3210 of 4534
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
1,25-Dihydroxyvitamin D Alters Lipid Metabolism And Epithelialto- Mesenchymal Transition In Metastatic Epithelial Breast Cancer Cells, Alle Nicole Barnard
1,25-Dihydroxyvitamin D Alters Lipid Metabolism And Epithelialto- Mesenchymal Transition In Metastatic Epithelial Breast Cancer Cells, Alle Nicole Barnard
Open Access Theses
Evidence suggests that high vitamin D status (marked by serum 25-hydroxyvitamin D, 25(OH)2 D) is associated with a decreased risk of breast cancer. It has been established that 1,25-dihydroxyvitamin D (1,25(OH) 2 D) can alter glycolysis and the Krebs cycle of breast cancer cells (Jiang et al., 2010; Zheng et al., 2013) but little information is available on 1,25(OH) 2 D's alterations of lipid metabolism in breast cancer cells. Thus, the current research investigates if there was an effect of 1,25(OH) 2 D on proteins that regulate lipid metabolism in MCF10A, MCF10A-ras, MCF10CA1h, and MCF10CA1a epithelial breast cancer cells. While …
The Interrelationship Of Brca1 185delag, Interleukin-1Β, And Ovarian Oncogenesis, Kamisha Woolery
The Interrelationship Of Brca1 185delag, Interleukin-1Β, And Ovarian Oncogenesis, Kamisha Woolery
USF Tampa Graduate Theses and Dissertations
While the etiology of ovarian cancer (OC) is not completely understood, evidence suggests that chronic inflammation may promote malignant transformation. However, familial history remains the strongest risk factor for developing OC and is associated with germline BRCA1 mutations, such as the 185delAG mutation. Normal human ovarian surface epithelial cells expressing the 185delAG mutant, BRAT, exhibit molecular and pathological changes that may contribute to OC oncogenesis. In the current study, I sought to determine whether BRAT could promote an inflammatory phenotype by investigating BRAT's impact on the expression of the proinflammatory cytokine, Interleukin-1β (IL-1β). Using a culture model system of normal …
Rna Detection Technology For Applications In Marine Science: Microbes To Fish, Robert Michael Ulrich
Rna Detection Technology For Applications In Marine Science: Microbes To Fish, Robert Michael Ulrich
USF Tampa Graduate Theses and Dissertations
The accurate identification of taxa from mixed assemblages using genetic analysis remains an important field of molecular biology research. The common principle behind the development of numerous documented genetic detection technologies is to exploit specific nucleotide sequences inherent to each taxon. This body of work focuses on practical applications of real-time nucleic acid sequence-based amplification (RT-NASBA) in marine science, and is presented in four case studies. Each study represents novel work in the genetic identification of respective taxa of interest using RT-NASBA. Two case studies documented the development of an assay targeting mitochondrial 16S rRNA to discern legally salable grouper …
Novel Cell Cycle Proteins In Apicomplexan Parasites, Carrie Butler
Novel Cell Cycle Proteins In Apicomplexan Parasites, Carrie Butler
USF Tampa Graduate Theses and Dissertations
Apicomplexans are responsible for major human diseases such as toxoplasmosis caused by Toxoplasma gondii (T. gondii) and the deadliest form of malaria caused by Plasmodium falciparum (P. falciparum). The genomes of these pathogens are now sequenced ushering in a new era of drug development. A major hurdle to exploiting this genome resource is that a large number of the encoded genes are "hypotheticals" and have yet to be characterized. Hypothetical proteins comprise roughly half of the predicted gene complement of T. gondii and P. falciparum and represent the largest class of uniquely functioning proteins in these parasites.
Following the idea …
Developing Crosslinking Constructs Of Protein Kinase R, Prisma E. Lopez
Developing Crosslinking Constructs Of Protein Kinase R, Prisma E. Lopez
Honors Scholar Theses
Protein Kinase R (PKR) is a key component of the innate immune antiviral response. PKR is activated upon binding to dsRNA. However, recent studies have shown that PKR can also bind to and become activated by duplex RNAs containing complex secondary structure. The mechanism of PKR binding and activation by these RNAs is currently not known. The approach taken here to determine the mechanism of PKR binding by these RNAs is through the development of PKR constructs that are capable of covalently binding to RNAs. Constructs were created by site-specific incorporation of an unnatural, photoactivatable amino acid within PKR. These …
Trnas As Regulators Of Biological Processes, Medha Raina, Michael Ibba
Trnas As Regulators Of Biological Processes, Medha Raina, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Transfer RNAs (tRNA) are best known for their role as adaptors during translation of the genetic code. Beyond their canonical role during protein biosynthesis, tRNAs also perform additional functions in both prokaryotes and eukaryotes for example in regulating gene expression. Aminoacylated tRNAs have also been implicated as substrates for non-ribosomal peptide bond formation, post-translational protein labeling, modification of phospholipids in the cell membrane, and antibiotic biosyntheses. Most recently tRNA fragments, or tRFs, have also been recognized to play regulatory roles. Here, we examine in more detail some of the new functions emerging for tRNA in a variety of cellular processes …
Characterizing The Response Of Multidrug-Resistant Klebsiella Pneumoniae Species To The Application Of A Phage Cocktail, Steven Liu
Symposium
Project Summary: The application of bacteriophages to treat bacterial infections is known as phage therapy, which takes advantage of bacteriophage’s natural ability to infect and lyse bacterial hosts. Phages have been shaped by billions of years of evolution to be highly specialized deliverers of bactericidal agents to the cytoplasm of their target bacteria. Ever since discovery of bacteriophages in 1915, phage therapy was recognized as a potentially powerful tool for eliminating bacterial infections. The effectiveness of phage therapy can be increased by creating a mixture of multiple phages to target a wider variety of bacterial strains. Furthermore, phage therapy has …
Interactions Of Eukaryotic Translation Initiation Factors And 3' Untranslated Region Of Barley Yellow Dwarf Virus Mrna During Protein Synthesis: A Study Of Equilibrium Binding, Kinetics And Thermodynamics, Bidisha Banerjee
Dissertations, Theses, and Capstone Projects
Eukaryotic initiation factor (eIF) 4F binding to mRNA is the first committed step in cap-dependent protein synthesis. Barley Yellow Dwarf Virus (BYDV) employs a cap-independent mechanism of translation initiation which is mediated by a structural element BTE (BYDV translation element) located in the 3’ UTR of its mRNA. eIF4F bound the BTE and a translational inactive mutant with high affinity; thus questioning the role of eIF4F in translation of BYDV. To examine the effects of eIF4F in BYDV translation initiation, BTE mutants with widely different in vitro translation efficiencies ranging from 5-164% compared to WT were studied. Using fluorescence anisotropy …
Structure And Function In Bacteriophage Phi6, James Carpino
Structure And Function In Bacteriophage Phi6, James Carpino
Dissertations, Theses, and Capstone Projects
The present study of bacteriophage Phi6 has been preceded by a great number of exploratory studies of its structure and function, and these studies have formed a basis for Phi6's development into a model organism. In this study, two aspects of the model organism have been examined. 1. There are several uncharacterized and presumed untranslated regions (UTRs) in Phi6's 13.3 kilobase-pair dsRNA genome. I examined the impact of specific modification to the 3' UTR of the small segment of bacteriophage Phi6. I determined that modification to the purported UTR of the small segment resulted in severe fitness costs, supporting a …
Recruitment Of The Ribosomal 40s Subunit To The 3'Untranslated Region Of A Viral Mrna, Via The Eif4 Complex, Facilitates Cap-Independent Translation, Sohani Das Sharma
Recruitment Of The Ribosomal 40s Subunit To The 3'Untranslated Region Of A Viral Mrna, Via The Eif4 Complex, Facilitates Cap-Independent Translation, Sohani Das Sharma
Dissertations, Theses, and Capstone Projects
Translation of uncapped plant viral RNAs can be facilitated by either an internal ribosomal entry site (IRES) in the 5' untranslated region (UTR) or a cap-independent translation element (CITE) in the 3' UTR. Barley yellow dwarf virus (BYDV) mRNA, which lacks both cap and poly(A) tail, has a translation element (3'BTE) in its 3' UTR that is essential for efficient translation initiation at the 5'-proximal AUG. This mechanism requires binding of the eukaryotic initiation factor 4G (eIF4G) subunit of the heterodimer eIF4F to the 3'BTE and base pairing between the 3'BTE and the 5' UTR. Here we investigate how this …
Oxidation Of Cellular Amino Acid Pools Leads To Cytotoxic Mistranslation Of The Genetic Code, Tammy J. Bullwinkle, Noah M. Reynolds, Medha Raina, Adil Moghal, Eleftheria Matsa, Andrei Rajkovic, Huseyin Kayadibi, Farbod Fazlollahi, Christopher Ryan, Nathaniel Howitz, Kym F. Faull, Beth A. Lazazzera, Michael Ibba
Oxidation Of Cellular Amino Acid Pools Leads To Cytotoxic Mistranslation Of The Genetic Code, Tammy J. Bullwinkle, Noah M. Reynolds, Medha Raina, Adil Moghal, Eleftheria Matsa, Andrei Rajkovic, Huseyin Kayadibi, Farbod Fazlollahi, Christopher Ryan, Nathaniel Howitz, Kym F. Faull, Beth A. Lazazzera, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Aminoacyl-tRNA synthetases use a variety of mechanisms to ensure fidelity of the genetic code and ultimately select the correct amino acids to be used in protein synthesis. The physiological necessity of these quality control mechanisms in different environments remains unclear, as the cost vs benefit of accurate protein synthesis is difficult to predict. We show that in Escherichia coli, a non-coded amino acid produced through oxidative damage is a significant threat to the accuracy of protein synthesis and must be cleared by phenylalanine-tRNA synthetase in order to prevent cellular toxicity caused by mis-synthesized proteins. These findings demonstrate how stress …
Y- Box Protein 2 (Ybx2) Is A Major Mrna Specific Regulator Of Translation In Spermatogenesis And The Translational Regulation Of The Sperm Mitochondria Associated Cysteine Rich Protein (Smcp) Mrna, Tamjid A. Chowdhury
Graduate Doctoral Dissertations
Spermatogenesis is the process by which diploid stem cells differentiate into haploid male gametes, spermatozoa. As haploid cells differentiate into spermatozoa, they undergo profound changes in morphology and physiology, including total reorganization of chromatin in the nucleus which results in the inability to synthesize new mRNAs about one week before the differentiation of sperm is complete. Consequently, many mRNAs, such as the protamine 1 (Prm1) mRNA and sperm mitochondria-associated cysteine rich-protein (Smcp) mRNA, are transcribed in early haploid spermatogenic cells and stored as translationally inactive messenger ribonucleoprotein particles (free-mRNPs) for several days to a week before the mRNA is translated …
Identification Of The Transcriptional Co-Repressor Complex And Its Functions In Arabidopsis Thaliana, Barsha Shrestha
Identification Of The Transcriptional Co-Repressor Complex And Its Functions In Arabidopsis Thaliana, Barsha Shrestha
LSU New Orleans Theses and Dissertations
No abstract provided.
Reduced Amino Acid Specificity Of Mammalian Tyrosyl-Trna Synthetase Is Associated With Elevated Mistranslation Of Tyr Codons, Medha Raina, Adil Moghal, Amanda Kano, Mathew Jerums, Paul D. Schnier, Shun Luo, Rohini Deshpande, Pavel D. Bondarenko, Henry Lin, Michael Ibba
Reduced Amino Acid Specificity Of Mammalian Tyrosyl-Trna Synthetase Is Associated With Elevated Mistranslation Of Tyr Codons, Medha Raina, Adil Moghal, Amanda Kano, Mathew Jerums, Paul D. Schnier, Shun Luo, Rohini Deshpande, Pavel D. Bondarenko, Henry Lin, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Quality control operates at different steps in translation to limit errors to approximately one mistranslated codon per 10,000 codons during mRNA-directed protein synthesis. Recent studies have suggested that error rates may actually vary considerably during translation under different growth conditions. Here we examined the misincorporation of Phe at Tyr codons during synthesis of a recombinant antibody produced in tyrosine-limited Chinese hamster ovary (CHO) cells. Tyr to Phe replacements were previously found to occur throughout the antibody at a rate of up to 0.7% irrespective of the identity or context of the Tyr codon translated. Despite this comparatively high mistranslation rate, …
Investigation Of Fshr-L Protein Function In Regulating Synaptic Transmission At The Neuromuscular Junction In C. Elegans, Julie Christine Kolnik
Investigation Of Fshr-L Protein Function In Regulating Synaptic Transmission At The Neuromuscular Junction In C. Elegans, Julie Christine Kolnik
Undergraduate Honors Thesis Collection
euronal communication (synaptic transmission) is critical for nervous system function. This communication occurs at specialized junctions called synapses where chemical neurotransmitters signal from presynaptic to postsynaptic cells. Additional signaling via neuropeptide activated G protein-coupled receptors (GPCRs) fine-tunes synaptic communication. GPCRs are a large family of transmembrane receptor proteins that bind extracellular neurotransmitters and neuropeptides to activate intracellular signaling pathways. My project investigated the function of FSHR-l, a GPCR and potential neuropeptide receptor, in regulating synaptic transmission at the neuromuscular junction (NMJ) in Caenorhabditis elegans roundworms, which share conservation of nervous system structure and function with humans. Worms lacking the fshr-I …
Basal Nf-Κb Controls Il-7 Responsiveness Of Quiescent Naïve T Cells, Michelle L. Miller, Luqiu Chen, Ping Zhou, Xindong Liu, Monica Michelotti, Nicole Tramontini Gunn, Sarah E. Powers, Xiaoping Zhu, Cesar Evaristo, Maria-Luisa Alegre, Luciana L. Molinero
Basal Nf-Κb Controls Il-7 Responsiveness Of Quiescent Naïve T Cells, Michelle L. Miller, Luqiu Chen, Ping Zhou, Xindong Liu, Monica Michelotti, Nicole Tramontini Gunn, Sarah E. Powers, Xiaoping Zhu, Cesar Evaristo, Maria-Luisa Alegre, Luciana L. Molinero
Biology Department Faculty Articles
T cells are essential for immune defenses against pathogens, such that viability of naïve T cells before antigen encounter is critical to preserve a polyclonal repertoire and prevent immunodeficiencies. The viability of naïve T cells before antigen recognition is ensured by IL-7, which drives expression of the prosurvival factor Bcl-2. Quiescent naïve T cells have low basal activity of the transcription factor NF-κB, which was assumed to have no functional consequences. In contrast to this postulate, our data show that basal nuclear NF-κB activity plays an important role in the transcription of IL-7 receptor α-subunit (CD127), enabling responsiveness of naïve …
2-Acylamido Analogues Of N-Acetylglucosamine Prime Formation Of Chitin Oligosaccharides By Yeast Chitin Synthase 2, Jacob Gyore, Archana Parameswar, Carleigh Hebbard, Younghoon Oh, Erfei Bi, Alexei Demchenko, Neil Price, Peter Orlean
2-Acylamido Analogues Of N-Acetylglucosamine Prime Formation Of Chitin Oligosaccharides By Yeast Chitin Synthase 2, Jacob Gyore, Archana Parameswar, Carleigh Hebbard, Younghoon Oh, Erfei Bi, Alexei Demchenko, Neil Price, Peter Orlean
Chemistry & Biochemistry Faculty Works
Chitin, a homopolymer of β1,4-linked N-acetylglucosamine (GlcNAc) residues, is a key component of the cell walls of fungi and the exoskeletons of arthropods. Chitin synthases transfer GlcNAc from UDP-GlcNAc to preexisting chitin chains in reactions that are typically stimulated by free GlcNAc. The effect of GlcNAc was probed by using a yeast strain expressing a single chitin synthase, Chs2, by examining formation of chitin oligosaccharides (COs) and insoluble chitin, and by replacing GlcNAc with 2-acylamido analogues of GlcNAc. Synthesis of COs was strongly dependent on inclusion of GlcNAc in chitin synthase incubations, and N,N′-diacetylchitobiose (GlcNAc2) was the major reaction product. …
Mutagenesis Of 8-Oxoguanine Adjacent To An Abasic Site In Escherichia Coli Cells Proficient Or Deficient In Dna Polymerase Iv, Savas T. Tsikis
Mutagenesis Of 8-Oxoguanine Adjacent To An Abasic Site In Escherichia Coli Cells Proficient Or Deficient In Dna Polymerase Iv, Savas T. Tsikis
Honors Scholar Theses
It is well established that clustered DNA damages or multiply damaged sites (MDS) are the result of ionizing radiation and that they are characterized by an enhanced mutagenic potential. As a model MDS, we have evaluated the mutagenic and cytotoxic properties of the ubiquitous oxidative DNA damage 8-oxoguanine (G8-oxo) adjacent to the abasic site lesion (Z) using a single stranded M13mp7L2 vector. The recombinant DNA was used to transform wild type E. coli strains and strains deficient in the translesion DNA polymerase of the Y-family, DNA polymerase IV, in the presence or absence of SOS induction. The percent …
Genetic Basis For The Virulence Of Enterohemorrhagic Escherichia Coli Strain Tw14359, Jason Kyle Morgan
Genetic Basis For The Virulence Of Enterohemorrhagic Escherichia Coli Strain Tw14359, Jason Kyle Morgan
USF Tampa Graduate Theses and Dissertations
Enterohemorrhagic Escherichia coli (EHEC) is a virulent pathotype of E. coli that is associated with major outbreaks of hemorrhagic colitis and the life-threatening kidney disease hemolytic uremic syndrome. For successful host colonization and attachment to the intestinal mucosa, EHEC requires the locus of enterocyte effacement (LEE) pathogenicity island, which encodes a type III secretion system (TTSS) responsible for secreting and translocating effector proteins into host colonocytes. Regulation of the LEE is primarily directed through the first operon, LEE1, encoding the locus encoded regulator (Ler), and occurs through the direct and indirect action of several regulators. The 2006 U.S. spinach outbreak …
Novel Roles Of The Protein Tyrosine Phosphatase Shp2 In Non-Small Cell Lung Cancer, Valentina Schneeberger
Novel Roles Of The Protein Tyrosine Phosphatase Shp2 In Non-Small Cell Lung Cancer, Valentina Schneeberger
USF Tampa Graduate Theses and Dissertations
The gene PTPN11 was identified in the early 1990s, and encodes the non-transmembrane protein tyrosine phosphatase SHP2. SHP2 is expressed ubiquitously in cells, and plays an important role in cancer. Unlike most phosphatases, SHP2 positively regulates several signaling pathways including the Ras/MAPK and Src signaling pathways and acts as a proto-oncogene. SHP2 is also a cancer essential gene in certain types of carcinomas, and promotes growth, survival, and epithelial to mesenchymal transformation. Gain of function (GOF) SHP2 mutations are known leukemic oncogenes, and have been identified to a smaller extent in solid tumors as well. Currently, the roles of SHP2 …
Defining The Sites Of Interaction Of The Fancd2, Fance, And Fancl Proteins, Joseph Mcclanaghan
Defining The Sites Of Interaction Of The Fancd2, Fance, And Fancl Proteins, Joseph Mcclanaghan
Senior Honors Projects
Fanconi anemia (FA) is a rare genetic disease characterized by congenital defects, bone marrow failure and increased cancer susceptibility. FA is caused by mutations in any one of 16 genes. These genes encode for proteins that function in the FA-BRCA pathway to repair damaged DNA. Because of its important role in DNA repair, this pathway is considered a major cellular tumor suppressor pathway, i.e. is critical for the prevention of cancer. Underscoring this fact, several of the FA genes - including BRCA2, BRIP1, PALB2, and RAD51C - are bona fide breast and ovarian cancer susceptibility genes.
My …
The Development Of A Comprehensive Antifungal Susceptibility Testing Assay For Vulvovaginal Candidiasis Therapy, David Hardaker
The Development Of A Comprehensive Antifungal Susceptibility Testing Assay For Vulvovaginal Candidiasis Therapy, David Hardaker
Graduate School of Biomedical Sciences Theses and Dissertations
Vulvovaginal candidiasis is the most common fungal infection of the female urogenital tract, commonly caused by Candida albicans and C. glabrata. However, treatment can be difficult when caused by non-albicans strains due to resistance to the oral antifungal drug fluconazole. The mechanism through which strains of Candida, particularly C. glabrata, develop resistance to different antifungal classes has not been completely characterized. The ergosterol biosynthesis pathway, an important component of the cell membrane, is the major target of antifungals such as fluconazole, an inhibitor of the ERG 11 gene. Current research shows that an upregulation of specific genes in C. glabrata …
Molecular Chaperone Tools For Use Against Neurodegenerative Diseases, Matthew Tinkham
Molecular Chaperone Tools For Use Against Neurodegenerative Diseases, Matthew Tinkham
Senior Honors Projects
A noted characteristic found in several neurodegenerative disorders, including Alzheimer’s Disease, Parkinson’s Disease, Huntington’s Disease and bovine spongiform encephalopathy, is the accumulation of amyloid plaques in the brain. Amyloid plaques contain deposits of fibrillar aggregates of misfolded proteins that disrupt normal functionality in neurons. Certain variants of these misfolded proteins are self-replicating; these self-replicating amyloids are termed prions (for infectious protein). We are interested in how protein misfolding contributes to amyloid formation and how molecular chaperone proteins can change the formation of amyloid deposits. Chaperone proteins function by catalyzing the proper folding of other proteins, the refolding of misfolded proteins, …
Biology And Control Of Rice False Smut Caused By Ustilaginoidea Virens (Teleomorph Villosiclava Virens), Andrew Clayton Jecmen
Biology And Control Of Rice False Smut Caused By Ustilaginoidea Virens (Teleomorph Villosiclava Virens), Andrew Clayton Jecmen
Graduate Theses and Dissertations
Rice false smut (FS), a disease caused by Ustilaginoidea virens (Cke.) Takahashi (1896), was first reported in northeastern Arkansas counties in 1997. The first objective of this research was to establish a collection of U. virens isolates from geographically diverse regions of Arkansas. Three U. virens isolates and chlamydospores from `Templeton' and `Clearfield-151' rice cultivars were used to determine the effects of temperature and pH on mycelial growth and germination. A nested-PCR protocol and histological methods were used to determine if U. virens infects and colonizes rice seedlings and spikelets on panicles. The sensitivity of three U. virens isolates was …
The Effect Of Small Molecule 390 On Cxcr4 Receptors, Selam B. Zenebe-Gete '14, Shruti R. Topudurti '14, Shum Andrew, Richard J. Miller
The Effect Of Small Molecule 390 On Cxcr4 Receptors, Selam B. Zenebe-Gete '14, Shruti R. Topudurti '14, Shum Andrew, Richard J. Miller
Student Publications & Research
CXCR4 is the chemokine receptor which aids in chemotaxis of stem cells, such as those in the bone marrow or the brain. SDF-1 is the natural ligand for the CXCR4 receptor. Similarities between novel molecule 390 synthesized by the Miller Lab and SDF-1 make this novel small molecule a possible agonist of the CXCR4 receptor. To determine whether 390 is an agonist to the CXCR4 receptor, we transfected cells with CXCR4 and exposed them to no agonist [vehicle control], SDF-1, or varying concentrations of our agonist drug. Next, we took calcium images using the dye fura-2, which indicates changes in …
The Use Of A Small Molecule To Improve The Thermostability Of Dna Junctions, Arik Shams
The Use Of A Small Molecule To Improve The Thermostability Of Dna Junctions, Arik Shams
Honors Theses
The short-term goal of this research project is to employ small molecules as a means to stabilize four-way DNA junctions (4WJs) composed of natural DNA and chimeric nucleic acids. The long-term goal of the project is utilizing the 4WJs as extracellular therapeutic inhibitors of DNA binding proteins [i.e. Histones and High Mobility Group Protein B (HMGB1b)]. A number of studies have shown that classical intracellular DNA-binding proteins have a variety of deleterious side-effects when present in the extracellular milieu. In order to develop a successful 4WJ therapeutic, we are focused on using modified nucleic acids to enhance the stability of …
Numerical Assessment Of Sequence Conservation In Flu-Virus Hemagglutinin, Scott S. Norton
Numerical Assessment Of Sequence Conservation In Flu-Virus Hemagglutinin, Scott S. Norton
Honors Scholar Theses
The flu virus was investigated to find a common recognition domain to which an antibody against human-infected viruses can bind. If such a target site is structurally and electrostaticly conserved or invariant, only a single antibody would be required to attack the virus in all cases. The sequence of one of the viral surface proteins contains 24 amino acids that do not vary through mutation. However, these amino acids are neither contiguous in sequence or in space, and the ones that are associated with each other are not readily accessible to an antibody. They do provide a first impression of …
Characterization Of Udp-Arabinopyranose Mutase Genes In The Arabidopsis Cell Wall Mutant Mur5, Christopher A. Hart
Characterization Of Udp-Arabinopyranose Mutase Genes In The Arabidopsis Cell Wall Mutant Mur5, Christopher A. Hart
Honors Scholar Theses
The genome of Arabidopsis thaliana contains several coding regions for UDP-arabinopyranose mutases (UAMs) that are also known as reversibly glycosylated polypeptides (RGPs). The mur5 cell wall mutant of Arabidopsis shows a 30% decrease in cell wall arabinose content, and a missense mutation in the Reversibly Glycosylated Polypeptide 2 gene was recently proposed to cause this mutant phenotype. Through a traditional complementation analysis, mur5 and a T-DNA insertion mutant in the RGP2 gene were shown not to complement each other, indicating that the two genes are mutant alleles of the same locus. The mur5 SNP located in RGP2 caused a more …
Functional Analysis Of Cytosolic Hsp70 Nucleotide Exchange Factor Networks In Yeast, Jennifer Lynn Abrams
Functional Analysis Of Cytosolic Hsp70 Nucleotide Exchange Factor Networks In Yeast, Jennifer Lynn Abrams
Dissertations and Theses (Open Access)
The Hsp70 class of molecular chaperones play critical roles in protein homeostasis via an ATP-dependent folding cycle. Cytosolic Hsp70s in the budding yeast Saccharomyces cerevisiae, Ssa and Ssb, interact with up to three distinct nucleotide exchange factors (NEFs) homologous to human counterparts; Sse1/Sse2/HSP110, Fes1/HspBP1, and Snl1/Bag1. In an effort to understand the differential functional contributions of the cytosolic NEFs to protein homeostasis (“proteostasis”), I carried out comparative genetic, biochemical and cell biological analyses. For these studies, I developed protocols to monitor protein disaggregation and reactivation in a near real-time coupled assay that revealed the importance of aggregate dynamics in the …
Mechanisms Of Action And Co-Optive Evolution For Hypervariable Courtship Pheromones In Plethodontid Salamanders., Wilburn Beau Wilburn
Mechanisms Of Action And Co-Optive Evolution For Hypervariable Courtship Pheromones In Plethodontid Salamanders., Wilburn Beau Wilburn
Electronic Theses and Dissertations
Pheromones are an important type of chemical cue used by most animals to convey information between individuals. For more than 100 million years, male plethodontid salamanders have utilized a system of non-volatile, proteinaceous pheromones to regulate female mating behavior and receptivity. One of these pheromone components, Plethodontid Modulating Factor (PMF), is a hypervariable protein related to the three-finger protein (TFP) superfamily. Previous studies revealed that PMF persists as a rapidly evolving multi-isoform mixture. However, many characteristics of PMF as a pheromone remained undetermined, including gene structure and transcriptional regulation, translational regulation, protein structure, evolutionary mechanisms, and the isoform effects on …