Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- University of Kentucky (152)
- Old Dominion University (128)
- Chapman University (81)
- Wayne State University (69)
- University of Arkansas, Fayetteville (62)
-
- The Texas Medical Center Library (59)
- City University of New York (CUNY) (57)
- Thomas Jefferson University (54)
- University of Nebraska Medical Center (42)
- University of Richmond (36)
- Louisiana State University (31)
- East Tennessee State University (29)
- Technological University Dublin (28)
- Virginia Commonwealth University (28)
- University of Louisville (24)
- Wilfrid Laurier University (22)
- Purdue University (20)
- Clemson University (19)
- University of South Florida (18)
- Touro College and University System (17)
- West Virginia University (17)
- United Arab Emirates University (16)
- University of Missouri, St. Louis (16)
- University of Nevada, Las Vegas (16)
- San Jose State University (15)
- University at Albany, State University of New York (15)
- University of South Carolina (15)
- Dartmouth College (14)
- University of Nebraska - Lincoln (14)
- Lawrence University (13)
- Keyword
-
- Biochemistry (63)
- Humans (34)
- Cancer (32)
- RNA (30)
- Protein (27)
-
- DNA (26)
- Animals (24)
- Biological sciences (20)
- Genetics (19)
- Molecular biology (19)
- Pure sciences (19)
- Bioinformatics (18)
- Mitochondria (18)
- Biological Sciences (17)
- Electroporation (17)
- Translation (17)
- Mice (16)
- Phosphorylation (16)
- Apoptosis (13)
- Metabolism (13)
- Reactive oxygen species (13)
- Breast cancer (12)
- E. coli (12)
- Gene expression (12)
- Inflammation (12)
- Mass spectrometry (12)
- Metastasis (12)
- Proteins (12)
- Transcription (12)
- DNA repair (11)
- Publication Year
- Publication
-
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (76)
- Markey Cancer Center Faculty Publications (69)
- Electronic Theses and Dissertations (64)
- Dissertations and Theses (Open Access) (58)
- Department of Biochemistry and Molecular Biology Faculty Papers (47)
-
- Honors Theses (43)
- Theses & Dissertations (42)
- Dissertations, Theses, and Capstone Projects (38)
- Theses and Dissertations (36)
- Bioelectrics Publications (34)
- Graduate Theses and Dissertations (33)
- Biochemistry and Molecular Biology Faculty Publications (28)
- Theses and Dissertations--Molecular and Cellular Biochemistry (27)
- Articles (25)
- Wayne State University Dissertations (22)
- Chemistry & Biochemistry Theses & Dissertations (21)
- Faculty Publications (19)
- Theses and Dissertations (Comprehensive) (19)
- Theses and Dissertations in Biomedical Sciences (18)
- Wayne State University Theses (18)
- LSU Doctoral Dissertations (17)
- NYMC Faculty Publications (17)
- All Dissertations (16)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (16)
- USF Tampa Graduate Theses and Dissertations (16)
- Dissertations (15)
- Theses (15)
- Legacy Theses & Dissertations (2009 - 2024) (13)
- Chemistry & Biochemistry Faculty Publications (12)
- Honors Capstones (12)
- Publication Type
- File Type
Articles 1201 - 1230 of 1544
Full-Text Articles in Biochemistry
Ig Domain, David J. Hall
Ig Domain, David J. Hall
Protein Domains
Ig domain #2CKN. This particular domain is named for the first protein in which it was found, the immunoglobulin. An immunoglobulin is a antibody. Antibodies are generated by our immune system to recognize the specific size, shape and charge of pathogens. This domain is also found on the extracellular portion of many receptors including the interleukin-1 family of receptors.
Beta Barrel, David J. Hall
Beta Barrel, David J. Hall
Protein Domains
Beta barrel (cyan fluorescent protein) #4AR7. This fluorescent protein is a variation of green fluorescent protein from a jellyfish and is the only domain that is a complete protein. The protein is routinely used to visualize a variety of biological processes. The beta barrel domain is a beta sheet wrapped around the fluorescent active site to provide structure.
Helix Turn Helix Domain, David J. Hall
Helix Turn Helix Domain, David J. Hall
Protein Domains
Helix turn helix domain #3V1A. The helix-turn helix is a DNA-binding domain. The two alpha helices are the reading or recognition helices, which bind in a groove in the DNA and recognize specific gene regulatory sequences in the DNA.
Phi X 174, David J. Hall
Phi X 174, David J. Hall
Infectious Pathogens
Phi X 174 database number # 1CD3. Phi X 174 is a virus that infects bacteria and was the first DNA-based genome to be sequenced in 1977. This bacteriophage has a [+] circular single-stranded DNA genome. The assembly of the capsid has been successfully done in vitro and is the focus of many studies on self-assembly, drug delivery and nanotechnology.
Dengue Virus, David J. Hall
Dengue Virus, David J. Hall
Infectious Pathogens
Dengue virus, database # 1THD Dengue fever, is an infectious tropical disease caused by the dengue virus and transmitted by mosquito. Symptoms include fever, headache, muscle and joint pains, and a characteristic skin rash that is similar to measles. In a small proportion of cases the disease develops into the life-threatening dengue hemorrhagic fever. Dengue is a positive strand RNA virus that is part of the flavivirus family. Dengue is an enveloped virus meaning it has a nucleocapsid protecting the RNA and the nucleocapsid is surrounded by lipids (hence the name enveloped).
Human Papilloma Virus 16, David J. Hall
Human Papilloma Virus 16, David J. Hall
Infectious Pathogens
Human Papilloma virus 16, database# 1DZL Infection by most papillomaviruses is either asymptomatic or causes small benign tumors, known as papillomas or warts (e.g. human papillomavirus HPV6 or HPV11). Papillomas caused by some types, however, such as human papillomaviruses 16 and 18, carry a risk of becoming cancerous. Human papilloma virus is a non-enveloped, double stranded, circular DNA virus.
Hepatitis B, David J. Hall
Hepatitis B, David J. Hall
Infectious Pathogens
Hepatitis B, database # 2g33. Hepatitis B is an infectious inflammatory illness of the liver caused by the hepatitis B virus (HBV). Hepatitis B virus (HBV) is a member of the Hepadnavirus family.The virus particle, (virion) consists of an outer lipid envelope and an icosahedral nucleocapsid core composed of protein. These virions are 42 nM in diameter. The nucleocapsid encloses the viral DNA and a DNA polymerase that has reverse transcriptase activity.
Disocvering Ionic Liquid Resistant Genes, Bree Person, Douglass Higgins, Michael Thelen
Disocvering Ionic Liquid Resistant Genes, Bree Person, Douglass Higgins, Michael Thelen
STAR Program Research Presentations
: Plant biomass is a rich source of sugars that can be converted to biofuels by engineered microbes. However, because the lignocellulose in biomass is insoluble in aqueous conditions and recalcitrant to enzymatic degradation, thermochemical treatment is required to break apart the lignin and cellulose polymers before sugars can be released. The most effective chemicals for doing this are known as ionic liquids, which are salts that are molten at temperatures below 100° C. Although these solvents have many unique properties that are ideal for solubilizing lignocellulose, they have been found to inhibit the growth of bacterial strains used to …
The Role Of Cardiolipin In Iron Homeostasis And Glutathione Metabolism, Vinay A. Patil
The Role Of Cardiolipin In Iron Homeostasis And Glutathione Metabolism, Vinay A. Patil
Wayne State University Dissertations
Cardiolipin (CL) is the signature phospholipid of mitochondrial membranes, where it is synthesized locally and plays a critical role in mitochondrial bioenergetic functions. Inside the mitochondria, CL is a critical target of mitochondrial generated reactive oxygen species (ROS) and regulates signaling events related to apoptosis and aging. CL deficiency causes perturbation of signaling pathways outside the mitochondria, including the PKC-Slt2 cell integrity pathway and the high osmolarity glycerol (HOG) pathway, and is a key player in the cross-talk between the mitochondria and the vacuole. The importance of CL in human health is underscored by the observation that perturbation of CL …
Defending Your Dna: Combating Threats Both Foreign And Domestic, James Mcisaac
Defending Your Dna: Combating Threats Both Foreign And Domestic, James Mcisaac
Undergraduate Review
We are under constant assault from forces capable of damaging our DNA. The genetic code of DNA is made up of four nucleotides: adenine (A) which bonds with thymine (T) and guanine (G) which bonds with cytosine (C). If something happens to upset this normal pairing or the nucleotides themselves, our body must spring to action and respond to the damage. When damage to nucleotides prevents the normal replication machinery from doing its job, enzymes like the Y-family polymerases are called in. A special mechanism allows them to identify damage and insert the correct nucleotide or bypass the lesion to …
Investigating Therapeutic Options For Lafora Disease Using Structural Biology And Translational Methods, Amanda R. Sherwood
Investigating Therapeutic Options For Lafora Disease Using Structural Biology And Translational Methods, Amanda R. Sherwood
Theses and Dissertations--Molecular and Cellular Biochemistry
Lafora disease (LD) is a rare yet invariably fatal form of epilepsy characterized by progressive degeneration of the central nervous and motor systems and accumulation of insoluble glucans within cells. LD results from mutation of either the phosphatase laforin, an enzyme that dephosphorylates cellular glycogen, or the E3 ubiquitin ligase malin, the binding partner of laforin. Currently, there are no therapeutic options for LD, or reported methods by which the specific activity of glucan phosphatases such as laforin can be easily measured. To facilitate our translational studies, we developed an assay with which the glucan phosphatase activity of laforin as …
Primary Pathways Of Intracellular Ca2+ Mobilization By Nanosecond Pulsed Electric Field, Iurii Semenov, Shu Xiao, Andrei G. Pakhomov
Primary Pathways Of Intracellular Ca2+ Mobilization By Nanosecond Pulsed Electric Field, Iurii Semenov, Shu Xiao, Andrei G. Pakhomov
Bioelectrics Publications
Permeabilization of cell membranous structures by nanosecond pulsed electric field (nsPEF) triggers transient rise of cytosolic Ca2+ concentration ([Ca2+]i), which determines multifarious downstream effects. By using fast ratiometric Ca2+ imaging with Fura-2, we quantified the external Ca2+ uptake, compared it with Ca2+ release from the endoplasmic reticulum (ER), and analyzed the interplay of these processes. We utilized CHO cells which lack voltage-gated Ca2+ channels, so that the nsPEF-induced [Ca2+]i changes could be attributed primarily to electroporation. We found that a single 60-ns pulse caused fast [Ca2+]i increase …
Relationship Of Cross-Linking Potential To Mechanism Of Cell Death, Adam N. Spierer
Relationship Of Cross-Linking Potential To Mechanism Of Cell Death, Adam N. Spierer
Honors Theses
Mechlorethamine (HN2), a nitrogen derivative of mustard gas, was the first synthetic anti-tumor chemotherapeutic because it forms covalent cross-links between strands of duplex DNA. HN2 represents a class of bifunctional alkylating agents that are both chemotherapeutic and carcinogenic: diepoxybutane (DEB), the active form of the pro-drug treosulfan, and epichlorohydrin (ECH), a structural hybrid of HN2 and DEB, also form covalent cross-links between DNA. While HN2 and DEB are clinically used as anti-tumor chemotherapeutics, ECH is a structural hybrid of these two compounds not used in a clinical setting. Accordingly, we aimed to understand the relationship between the cross-linking potential of …
Aβ Alters The Dna Methylation Status Of Cell-Fate Genes In An Alzheimer’S Disease Model, Gary D. Isaacs, Noor Taher, Courtney Mckenzie, Rebecca Garrett, Matthew Baker, Nena Fox
Aβ Alters The Dna Methylation Status Of Cell-Fate Genes In An Alzheimer’S Disease Model, Gary D. Isaacs, Noor Taher, Courtney Mckenzie, Rebecca Garrett, Matthew Baker, Nena Fox
Faculty Publications and Presentations
Alzheimer’s disease (AD) is characterized by neurofibrillary tangles and extracellular amyloid-β plaques (Aβ). Despite ongoing research, some ambiguity remains surrounding the role of Aβ in the pathogenesis of this neurodegenerative disease. While several studies have focused on the mutations associated with AD, our understanding of the epigenetic contributions to the disease remains less clear. To that end, we determined the changes in DNA methylation in differentiated human neurons with and without Aβ treatment. We isolated the DNA from neurons treated with Aβ or vehicle, and digested the two samples with either a methylation-sensitive (HpaII) or a methylation-insensitive (MspI) restriction endonuclease. …
Investigating The Metal Binding Affinity Of Bacterial Zinc Transporters: Zupt And Truncated Znta (Znta-Pina), Fei Nie
Wayne State University Theses
Zinc is essential trace elements for all living organisms and serves as cofactor and structural cofactors for more than 300 enzymes. ZupT is one of the members of ZIP super family of transporter proteins, which were identified as iron and zinc transporter in Eukaryotes at first. However, recent evidence showed that some of members can also transport other metal ions, such as manganese or cadmium, and ZIP proteins also exist in bacteria. ZupT is responsible for zinc uptake in E. coli; however, its full metal selectivity is not yet characterized. In addition, the mechanism of transport is also unknown. Therefore, …
The Genetic Engineering Of Motor Proteins, Rachael M. Hartz
The Genetic Engineering Of Motor Proteins, Rachael M. Hartz
Legacy Theses & Dissertations (2009 - 2024)
Molecular motors are a remarkable feature within living organisms that are responsible for directional mechanical motion, which is driven by adenosine triphosphate (ATP) hydrolysis. Actin-binding molecular motors are of specific interest in the field of nanotechnology as filamentous actin is capable of carrying cargo, such as quantum dots, while it is translocated along a motor coated surface. The binding regions of motor proteins, which are known to interact with actin, such as Myosin, have been thoroughly examined and identified. Rapid genetic engineering of the ATP-hydrolyzing enzyme, adenosine kinase, to incorporate these binding regions is possible through the use of site- …
Investigation Of Bacterial Rna-Directed Dna Methylation Via Dcm And Hfq, Dandan Li
Investigation Of Bacterial Rna-Directed Dna Methylation Via Dcm And Hfq, Dandan Li
Wayne State University Theses
Bacterial small RNAs and the RNA chaperone Hfq play crucial roles in post-transcriptional gene regulation, often as parts of stress-response pathways, but little is known about their roles in regulation of gene transcription. A recent report showed that changes in methylation patterns caused by DNA cytosine methyltransferase (Dcm) were linked to gene regulation occurring during the transition to stationary phase. Here, we show that Dcm involves in the stress responses under nutrient starvation and cold stress. Dcm and Hfq together mediate gene expression under cold stress. Hfq promotes Dcm-catalyzed cytosine methylation at specific sites near the rpoS promoter, which is …
Cysteine Desulfurase And Isd11: A Drosophila Model, Rahul Ravindran Nair
Cysteine Desulfurase And Isd11: A Drosophila Model, Rahul Ravindran Nair
Wayne State University Theses
ABSTRACT
Cysteine desulfurase and Isd11: A Drosophila model
Iron-sulfur clusters are cofactors with evolutionary origins that date back to the pre-biotic world. Ever since life originated, these cofactors have intermingled with proteins to play vital roles in sustaining life. My research focuses on one such protein, the cysteine desulfurase (Nfs) that has the PLP cofactor incorporated in its active site and avails of the catalytic property of PLP to provide sulphur for Iron-sulfur cluster biogenesis and assembly in a cell. Interestingly, in a eukaryotic cell, despite the versatility of PLP, cysteine desulfurase's role as a "sulphur-extractor" is incomplete without another …
Optimization Of Labeling Techniques; Determination Of Best Parameter For Olfactory Mucosal Progenitor Cell Delivery And Study Of Effects Of Methylene Blue And Polyethylene Glycol In An Animal Model Of Spinal Cord Injury, Kiran Kumar Rokkappanavar
Optimization Of Labeling Techniques; Determination Of Best Parameter For Olfactory Mucosal Progenitor Cell Delivery And Study Of Effects Of Methylene Blue And Polyethylene Glycol In An Animal Model Of Spinal Cord Injury, Kiran Kumar Rokkappanavar
Wayne State University Theses
In the United States, the incidence of TSCI is about 40 per million persons per year, with approximately 250,000 living survivors of TSCI in the United States in July 2005. A number of human clinical trials (85) are ongoing using stem cells to evaluate the methods to reduce the injury following TBI. Among the stem cells, olfactory mucosal progenitor cells have several advantages with respect to ease of obtaining, fate of cells, etc. Our study was intended to optimize the labeling technique and to determine the best parameter to deliver the stem cells to the site of injury. We found …
Characterizing Cyclin J By Identifying Conserved Protein-Protein Interactions, Phillip Jacob Selman
Characterizing Cyclin J By Identifying Conserved Protein-Protein Interactions, Phillip Jacob Selman
Wayne State University Theses
Cyclins are proteins that bind to Cyclin-dependent kinases, or Cdks, through a conserved domain called the Cyclin Box. Many Cyclins regulate the cell cycle. A few Cyclins impact cellular processes outside of the cell cycle. Also, a few Cyclins have poorly understood functions.
Cyclin J is a member of the Cyclin superfamily of proteins. Cyclin J is conserved among all metazoans, but is presently not well understood. All the research done on Cyclin J has been done in Drosophila.
Its mRNA is present in the early embryo, then disappears, only to reappear in adult females. When probing protein extracts with …
Amalgamation Of Nucleosides And Amino Acids In Antibiotic Biosynthesis, Sandra H. Barnard
Amalgamation Of Nucleosides And Amino Acids In Antibiotic Biosynthesis, Sandra H. Barnard
Theses and Dissertations--Pharmacy
The rapid increase in antibiotic resistance demands the identification of novel antibiotics with novel targets. One potential antibacterial target is the biosynthesis of peptidoglycan cell wall, which is both ubiquitous and necessary for bacterial survival. Both the caprazamycin-related compounds A-90289 and muraminomicin, as well as the capuramycin-related compounds A-503083 and A-102395 are potent inhibitors of the translocase I enzyme, one of the key enzymes required for cell wall biosynthesis. The caprazamycin-related compounds contain a core nonproteinogen b-hydroxy-a-amino acid referred to as 5’-C-glycyluridine (GlyU). Residing within the biosynthetic gene clusters of the aforementioned compounds is a shared open reading …
Novel Cis-Restricted Β-Lactam Combretastatin A-4 Analogues Display Anti-Vascular And Anti-Metastatic Properties In Vitro, Seema M. Nathwani, Lisa M. Greene, Linda Hughes, Miriam Carr, Niamh O'Boyle, Susan Mcdonnell, Mary J. Meegan, Daniela M. Zisterer
Novel Cis-Restricted Β-Lactam Combretastatin A-4 Analogues Display Anti-Vascular And Anti-Metastatic Properties In Vitro, Seema M. Nathwani, Lisa M. Greene, Linda Hughes, Miriam Carr, Niamh O'Boyle, Susan Mcdonnell, Mary J. Meegan, Daniela M. Zisterer
Articles
No abstract provided.
Oligodeoxynucleotide Synthesis Using Protecting Groups And A Linker Cleavable Under Non-Nucleophilic Conditions, Xi Lin
Dissertations, Master's Theses and Master's Reports - Open
Oligodeoxynucleotides (ODNs) containing latent electrophilic groups can be highly useful in antisense drug development and many other applications such as chemical biology and medicine, where covalent cross-linking of ODNs with mRNA, protein and ODN is required. However, such ODN analogues cannot be synthesized using traditional technologies due to the strongly nucleophilic conditions used in traditional deprotection/cleavage process.
To solve this long lasting and highly challenging problem in nucleic acid chemistry, I used the 1,3-dithian-2-yl-methoxycarbonyl (Dmoc) function to protect the exo-amino groups on the nucleobases dA, dC and dG, and to design the linker between the nascent ODN and solid support. …
An Acid Catalyzed Reversible Ring-Opening/Ring-Closure Reaction Involving A Cyano-Rhodamine Spirolactam, H. Li, H. Guan, X. Duan, J. Hu, Guiren Wang, Qian Wang
An Acid Catalyzed Reversible Ring-Opening/Ring-Closure Reaction Involving A Cyano-Rhodamine Spirolactam, H. Li, H. Guan, X. Duan, J. Hu, Guiren Wang, Qian Wang
Faculty Publications
Cyanamide was introduced into the rhodamine spirolactam framework to produce a colorless and non-fluorescent compound RBCN. It shows a reversible ring-opening/ring-closure process in response to the solution pH, which exhibits an “ON/OFF” switching in its fluorescence. Different from other rhodamine-type dyes, the ring-open form of RBCN is stable in protic solvents under neutral, near neutral and basic conditions, showing a pink color and very strong fluorescence. We also demonstrated the potential of RBCN in live cell imaging.
Giardia Lamblia: Regulation Of Cyst Production By Glycosphingolipids, Tavis Lyle Mendez
Giardia Lamblia: Regulation Of Cyst Production By Glycosphingolipids, Tavis Lyle Mendez
Open Access Theses & Dissertations
The diplomonad protist, Giardia lamblia, colonizes and replicates in the small intestine of mammals. In humans, Giardia infection (known as giardiasis) can be symptomatic or asymptomatic with the former being associated with fatty stool, abdominal pain, malnutrition, and weight loss. Both cell-mediated and humoral immune responses against Giardia infection are possible, and adaptive responses have been reported to be important for controlling the infection. Non-immune components such as secretory immunoglobulin, intestinal lipids, and bile acids also play significant roles in determining the severity of the infection by Giardia.
Giardia exists in two morphologic forms--trophozoites and cysts--and maintains a simple life …
Mitochondrial Dna Instability In Cells Lacking Aconitase Correlates With Iron Citrate Toxicity, Muhammad A. Farooq, Tammy M. Pracheil, Zhejun Dong, Fei Xiao, Zhengchang Liu
Mitochondrial Dna Instability In Cells Lacking Aconitase Correlates With Iron Citrate Toxicity, Muhammad A. Farooq, Tammy M. Pracheil, Zhejun Dong, Fei Xiao, Zhengchang Liu
Biological Sciences Faculty Publications
Aconitase, the second enzyme of the tricarboxylic acid cycle encoded by ACO1 in the budding yeast Saccharomyces cerevisiae, catalyzes the conversion of citrate to isocitrate. aco1 Delta results in mitochondrial DNA (mtDNA) instability. It has been proposed that Aco1 binds to mtDNA and mediates its maintenance. Here we propose an alternative mechanism to account for mtDNA loss in aco1 Delta mutant cells. We found that aco1 Delta activated the RTG pathway, resulting in increased expression of genes encoding citrate synthase. By deleting RTG1, RTG3, or genes encoding citrate synthase, mtDNA instability was prevented in aco1 Delta mutant …
Malnutrition In Sickle Cell Anemia: Implications For Infection, Growth And Maturation, Hyacinth I. Hyacinth, Oluwatoyosi A. Adekeye, Christopher S. Yilgwan
Malnutrition In Sickle Cell Anemia: Implications For Infection, Growth And Maturation, Hyacinth I. Hyacinth, Oluwatoyosi A. Adekeye, Christopher S. Yilgwan
Journal of Social, Behavioral, and Health Sciences
Sickle cell anemia (SCA) is a genetic disease that affects mostly individuals of African and/or Hispanic descent, with the majority of cases in sub-Saharan Africa. Individuals with this disease show slowed growth, delayed sexual maturity, and poor immunologic function. These complications could partly be explained by the state of undernutrition associated with the disease. Proposed mechanism of undernutrition include protein hypermetabolism, decreased dietary intake possibly from interleukin-6-related appetite suppression, increased cardiac energy demand/expenditure, and increased red cell turnover. All the above mechanisms manifest as increased resting energy expenditure. Nutritional intervention utilizing single or multiple nutrient supplementation has led to improved …
Biochemical, Structural, And Drug Design Studies Of Multi-Drug Resistant Hiv-1 Therapeutic Targets, Tamaria Grace Dewdney
Biochemical, Structural, And Drug Design Studies Of Multi-Drug Resistant Hiv-1 Therapeutic Targets, Tamaria Grace Dewdney
Wayne State University Dissertations
Protein point mutations acquired as a mechanism of survival against therapeutics cause structural changes that effect protein function and inhibitor binding. This work investigates the structural mechanisms that lead to multi-drug resistance to HIV-1 protease and integrase inhibitors.
Proper proteolytic processing of the HIV-1 Gag/Pol polyprotein is required for HIV infection and viral replication. This feature has made HIV-1 protease an attractive target for antiretroviral drug design for the treatment of HIV-1 infected patients, thus the development of drug resistance has arisen as a major therapeutic and drug design challenge. To understand the molecular mechanisms leading to drug resistance we …
Structural Basis For Ternary Complex Formation Between Tau, Hsp90, And Fkbp51, Alexander Steven Barrett
Structural Basis For Ternary Complex Formation Between Tau, Hsp90, And Fkbp51, Alexander Steven Barrett
USF Tampa Graduate Theses and Dissertations
The accumulation of the microtubule associated protein tau has been implicated in several neurological disorders; however, its interaction with chaperones along its normal degradation pathway remains largely uncharacterized at single residue resolution. In this study, nuclear magnetic resonance (NMR) spectroscopy was used to probe the interaction between tau, the molecular chaperone Hsp90, and the immunophilin FKBP51. Resonance intensity changes were observed for specific residues in the heteronuclear single quantum coherence (HSQC) spectra of 15N-labeled tau in the presence of Hsp90 and/or FKBP51. Analysis of the HSQC spectra identified the two hydrophobic hexapeptide motifs located at residues V275 - K280 and …
Structural And Functional Study Of Multidrug Membrane Transporters, Feng Ding
Structural And Functional Study Of Multidrug Membrane Transporters, Feng Ding
Theses and Dissertations in Biomedical Sciences
Multidrug membrane transporters (efflux pumps) in both prokaryotes and eukaryotes are responsible for ineffective treatment of a wide variety of diseases, including infections and cancer, underscoring the importance of better understanding of their structures and functions for design of effective therapies. Despite extensive studies over decades, their underlying molecular mechanisms remain largely unknown. In this dissertation, we focus on the study of structures and functions of multidrug membrane transporters, including ATP-binding cassette transporter (BmrA) and Resistance-Nodulation-Cell Division transporter (MexA,B-OprM) in gram-positive and gram-negative bacteria ( Bacillus subtilis and Pseudomonas aeruginosa), respectively. We fused EGFP with N-terminus and C-terminus of …