Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- University of Nebraska - Lincoln (602)
- Old Dominion University (376)
- Brigham Young University (291)
- University of Kentucky (278)
- City University of New York (CUNY) (218)
-
- University of Arkansas, Fayetteville (207)
- Wayne State University (185)
- Utah State University (176)
- University of South Carolina (147)
- University of Montana (140)
- Chapman University (133)
- Aga Khan University (118)
- University at Albany, State University of New York (112)
- University of Nevada, Las Vegas (104)
- Purdue University (103)
- Virginia Commonwealth University (96)
- Loma Linda University (92)
- Chulalongkorn University (91)
- California Polytechnic State University, San Luis Obispo (90)
- University of Texas at El Paso (86)
- University of the Pacific (85)
- The Texas Medical Center Library (83)
- Fordham University (82)
- Technological University Dublin (77)
- Louisiana State University (75)
- Dartmouth College (74)
- Loyola University Chicago (74)
- University of South Florida (72)
- University of Missouri, St. Louis (69)
- Thomas Jefferson University (66)
- Keyword
-
- Biochemistry (170)
- Cancer (104)
- Chemistry (91)
- Pure sciences (83)
- Metabolism (82)
-
- RNA (76)
- Humans (75)
- Protein (62)
- Proteins (61)
- Animals (60)
- Mitochondria (60)
- DNA (56)
- Mass spectrometry (55)
- Biological sciences (51)
- Apoptosis (46)
- Genetics (43)
- Biological Sciences (41)
- Oxidative stress (40)
- Kinetics (39)
- Proteomics (39)
- NMR (38)
- Fluorescence (37)
- Inflammation (37)
- Escherichia coli (36)
- Molecular dynamics (36)
- Peptides (36)
- Biology (35)
- Lipids (35)
- Bacteria (34)
- Bioinformatics (33)
- Publication Year
- Publication
-
- Department of Biochemistry: Faculty Publications (489)
- Theses and Dissertations (381)
- Chemistry and Biochemistry Faculty Publications (202)
- Electronic Theses and Dissertations (201)
- Faculty Publications (199)
-
- Chemistry Faculty Publications (165)
- Dissertations, Theses, and Capstone Projects (145)
- Honors Theses (138)
- Chemistry & Biochemistry Theses & Dissertations (118)
- Department of Biological & Biomedical Sciences (110)
- Wayne State University Dissertations (107)
- Legacy Theses & Dissertations (2009 - 2024) (103)
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (98)
- Graduate Theses and Dissertations (93)
- Chulalongkorn University Theses and Dissertations (Chula ETD) (90)
- Dissertations (90)
- Loma Linda University Electronic Theses, Dissertations & Projects (90)
- Dissertations and Theses (Open Access) (82)
- Markey Cancer Center Faculty Publications (81)
- Articles (70)
- All Dugoni School of Dentistry Faculty Articles (69)
- USF Tampa Graduate Theses and Dissertations (67)
- All Graduate Theses and Dissertations, Spring 1920 to Summer 2023 (64)
- Theses & Dissertations (64)
- Chemistry and Biochemistry (61)
- Biochemistry Publications (57)
- Open Access Theses & Dissertations (53)
- Dartmouth Scholarship (51)
- Department of Biochemistry and Molecular Biology Faculty Papers (51)
- Renée Crown University Honors Thesis Projects - All (47)
- Publication Type
- File Type
Articles 3451 - 3480 of 6993
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Design, Synthesis And Analysis Of Potential Photo-Activatable Cathepsin K Inhibitors, Khalin Evania Nisbett
Design, Synthesis And Analysis Of Potential Photo-Activatable Cathepsin K Inhibitors, Khalin Evania Nisbett
Wayne State University Theses
Abstract
DESIGN, SYNTHESIS AND ANALYSIS OF POTENTIAL PHOTO-ACTIVATABLE CATHEPSIN K INHIBITORS
by
KHALIN NISBETT
May 2017
Advisor: Dr. Jeremy Kodanko
Major: Chemistry
Degree: Master of Science
Tightly regulated cysteine CA proteases play a major role in maintaining the homeostasis within cells. Subsequently, when these proteases are dysregulated and mislocalized they disrupt healthy cell dynamics and contribute to many life-threatening pathologies such arteriosclerosis, osteoporosis and cancer. As such many pharmaceutical companies and research teams are highly interested in these proteases as targets. One emergent strategy is the spatiotemporal control of biological processes. In relation to this, a series of spatiotemporally controlled …
Elucidating Structure, Function, And Small Molecular Interactions Of Human Immunodeficiency Virus And Chikungunya Virus, Kristin Nicole Slater
Elucidating Structure, Function, And Small Molecular Interactions Of Human Immunodeficiency Virus And Chikungunya Virus, Kristin Nicole Slater
Wayne State University Theses
Abstract HIV-1:
Human immunodeficiency virus-1 (HIV-1) is a widespread, incurable retrovirus known to cause
immunodeficiency and a shortened life span. Despite successful treatment methods, HIV-1
frequently mutates, resulting in antiviral resistance. Many therapies target the HIV-1 protease
(PR), which is responsible for cleaving the viral polyprotein essential for its life cycle. HIV-1 PR
often evades treatment by way of mutations and less commonly through residue insertions. We
have identified a clinical isolate with a five residue insertion between residues 28 and 29.
Through molecular dynamics simulations we analyzed the protease protein structure and
determined that the residue insertion created a …
Primate Proteomic Composition Of Seminal Plasma And Prostate-Specific Transglutaminase Activity In Relation To Sexual Selection., Amanda M.C. Zielen
Primate Proteomic Composition Of Seminal Plasma And Prostate-Specific Transglutaminase Activity In Relation To Sexual Selection., Amanda M.C. Zielen
Electronic Theses and Dissertations
Humans (Homo sapiens), chimpanzees (Pan troglodytes), and gorillas (Gorilla gorilla) have diverse mating systems with varying levels of sperm competition. Several seminal plasma genes have been claimed to evolve under positive selection, while others are altered or lost. This study aims to identify biologically relevant differences among seminal plasma proteomes of primates in relation to mating systems and previous genomic studies. Seminal plasma from three individuals of each species were run in triplicate in shotgun liquid chromatography – tandem mass spectrometry (LC-MS/MS) and confirmed with Western blots. Over 7,000 peptides were identified across all …
The Human Mitochondrial Chaperonin: It Takes Two Single-Rings To Tango, Adrian Sergio Enriquez
The Human Mitochondrial Chaperonin: It Takes Two Single-Rings To Tango, Adrian Sergio Enriquez
Open Access Theses & Dissertations
The human mitochondrial chaperonin is a macromolecular machine that catalyzes the proper folding and assembly of newly imported mitochondrial proteins into their biologically active state. It is composed of two proteins from the highly conserved heat shock protein family, hsp10 and hsp60, that assemble into large oligomeric complexes responsible for mediating the folding of non-native polypeptides in an ATP dependent manner. In addition to its innate role in protein folding, human mitochondrial hsp60 has been implicated in numerous moonlighting cellular activities that have been linked to diseases conditions such as cancer and neurodegeneracy. In light of its cellular importance, the …
Using Low-Coherence Interferometry To Monitor Cell Invasion In An In-Vitro Model System, Behnaz Davoudi Nasab
Using Low-Coherence Interferometry To Monitor Cell Invasion In An In-Vitro Model System, Behnaz Davoudi Nasab
Honors Undergraduate Theses
In an optically random system, such as naturally occurring and man-made media, light undergoes pronounced multiple scattering. This phenomenon has shown a remarkable potential in characterizing complex materials. In this regime, scattering occurs from each individual center of the scattering and independent scattering events lead to multiple light scattering. This phenomenon is often described as a random walk of photons and can be modeled in terms of a diffusion equation based on the radiative transfer theory. In this thesis, we used optical path-length spectroscopy (OPS), which is an experimental method to obtain the path-length probability density of the propagating light …
Micro-Spectroscopy Of Bio-Assemblies At The Single Cell Level, Jeslin Kera
Micro-Spectroscopy Of Bio-Assemblies At The Single Cell Level, Jeslin Kera
Honors Undergraduate Theses
In this thesis, we investigate biological molecules on a micron scale in the ultraviolet spectral region through the non-destructive confocal absorption microscopy. The setup involves a combination of confocal microscope with a UV light excitation beam to measure the optical absorption spectra with spatial resolution of 1.4 μm in the lateral and 3.6 μm in the axial direction. Confocal absorption microscopy has the benefits of requiring no labels and only low light intensity for excitation while providing a strong signal from the contrast generated by the attenuation of propagating light due to absorption. This enables spatially resolved measurements of single …
The E. Coli Protein Ybgl: A Novel Dna Repair Enzyme?, Mason H. Conen, Brooke D. Martin, Kent Sugden, Savannah Whitfield
The E. Coli Protein Ybgl: A Novel Dna Repair Enzyme?, Mason H. Conen, Brooke D. Martin, Kent Sugden, Savannah Whitfield
Undergraduate Theses, Professional Papers, and Capstone Artifacts
Cr(V) is a carcinogen that oxidizes guanine aggressively to form spiroiminodihydantion (Sp) and guanidinohydantoin (Gh), both of which contain an unusual hydantoin moiety that cause G→T transversion mutations at a high rate. Endonuclease VIII (nei) can recognize and excise these oxidation products from DNA and is translated as one of five protein products of the Nei operon in Escherichia coli (E. coli). However, the functions of the other four proteins remain unknown. To address this gap in knowledge, we focused on one of the four that immediately precedes nei, the ybgL protein. Previous work by our group has suggested a …
Investigation Of The Mechanism Of Action For Mithramycin And The Biosynthesis Of L-Rednose In Saquayamycins, Stevi Weidenbach
Investigation Of The Mechanism Of Action For Mithramycin And The Biosynthesis Of L-Rednose In Saquayamycins, Stevi Weidenbach
Theses and Dissertations--Pharmacy
Natural products continue to be a major chemical lead matter for drug discovery due to their diverse chemical structures and bioactivities. Clinically significant natural products include anti-cancer and anti-infective compounds and while many more of these compounds show promising bioactivity, their clinical relevance is often limited by toxicity or poor solubility. Combinatorial biosynthesis can be employed to modify existing chemical scaffolds towards reducing these limitations. To fully take advantage of these biochemical tools, it is important to understand the biosynthesis and mechanism of action of the molecules.
Saccharides in glycosylated natural products provide specific interactions with cellular targets and are …
Ligands Of Therapeutic Utility For The Liver X Receptors., Rajesh Komati, Dominick Spadoni, Shilong Zheng, Jayalakshmi Sridhar
Ligands Of Therapeutic Utility For The Liver X Receptors., Rajesh Komati, Dominick Spadoni, Shilong Zheng, Jayalakshmi Sridhar
Faculty and Staff Publications
Liver X receptors (LXRs) have been increasingly recognized as a potential therapeutic target to treat pathological conditions ranging from vascular and metabolic diseases, neurological degeneration, to cancers that are driven by lipid metabolism. Amidst intensifying efforts to discover ligands that act through LXRs to achieve the sought-after pharmacological outcomes, several lead compounds are already being tested in clinical trials for a variety of disease interventions. While more potent and selective LXR ligands continue to emerge from screening of small molecule libraries, rational design, and empirical medicinal chemistry approaches, challenges remain in minimizing undesirable effects of LXR activation on lipid metabolism. …
Chemical Profiling And Chemical Standardization Of Vitex Negundo Using 13c Nmr, Fabian M. Dayrit, Lolita G. Lagurin, John Daniel J. Magsalin, Anthony R. Zosa
Chemical Profiling And Chemical Standardization Of Vitex Negundo Using 13c Nmr, Fabian M. Dayrit, Lolita G. Lagurin, John Daniel J. Magsalin, Anthony R. Zosa
Chemistry Faculty Publications
Chemical profiling and standardization of the defatted methanol extract of the leaves of Vitex negundo L. were carried out using 13C nuclear magnetic resonance (NMR) analysis followed by chemometric analysis of the chemical shift data. Chemical profile was obtained using a k-means cluster profile and chemical standardization which was achieved using a multivariate control chart. The V. negundo samples were made up of four groups: the training set, submitted samples from production farms, commercial samples, such as tablets, capsules and teas, and experimental samples (samples which were allowed to degrade). Four groups were generated in k-means cluster, which generally corresponded …
Exosomes Serve As Novel Modes Of Tick-Borne Flavivirus Transmission From Arthropod To Human Cells And Facilitates Dissemination Of Viral Rna And Proteins To The Vertebrate Neuronal Cells, Wenshuo Zhou, Michael Woodson, Biswas Neupane, Fengwei Bai, Michael B. Sherman, Kyung H. Choi, Girish Neelakanta, Hameeda Sultana
Exosomes Serve As Novel Modes Of Tick-Borne Flavivirus Transmission From Arthropod To Human Cells And Facilitates Dissemination Of Viral Rna And Proteins To The Vertebrate Neuronal Cells, Wenshuo Zhou, Michael Woodson, Biswas Neupane, Fengwei Bai, Michael B. Sherman, Kyung H. Choi, Girish Neelakanta, Hameeda Sultana
Biological Sciences Faculty Publications
Molecular determinants and mechanisms of arthropod-borne flavivirus transmission to the vertebrate host are poorly understood. In this study, we show for the first time that a cell line from medically important arthropods, such as ticks, secretes extracellular vesicles (EVs) including exosomes that mediate transmission of flavivirus RNA and proteins to the human cells. Our study shows that tick-borne Langat virus (LGTV), a model pathogen closely related to tick-borne encephalitis virus (TBEV), profusely uses arthropod exosomes for transmission of viral RNA and proteins to the human- skin keratinocytes and blood endothelial cells. Cryo-electron microscopy showed the presence of purified arthropod/neuronal exosomes …
End-To-End Molecular Communication Channels In Cell Metabolism: An Information Theoretic Study, Zahmeeth Sayed Sakkaff, Jennie L. Catlett, Mikaela Cashman, Massimiliano Pierobon, Nicole R. Buan, Myra B. Cohen, Christine A. Kelley
End-To-End Molecular Communication Channels In Cell Metabolism: An Information Theoretic Study, Zahmeeth Sayed Sakkaff, Jennie L. Catlett, Mikaela Cashman, Massimiliano Pierobon, Nicole R. Buan, Myra B. Cohen, Christine A. Kelley
Department of Biochemistry: Faculty Publications
The opportunity to control and fine-tune the behavior of biological cells is a fascinating possibility for many diverse disciplines, ranging from medicine and ecology, to chemical industry and space exploration. While synthetic biology is providing novel tools to reprogram cell behavior from their genetic code, many challenges need to be solved before it can become a true engineering discipline, such as reliability, safety assurance, reproducibility and stability. This paper aims to understand the limits in the controllability of the behavior of a natural (non-engineered) biological cell. In particular, the focus is on cell metabolism, and its natural regulation mechanisms, and …
Portulaca Oleracea Extract Can Inhibit Nodule Formation Of Colon Cancer Stem Cells By Regulating Gene Expression Of Notch Signal Transduction Pathway, Li Chen
Dissertations, Master's Theses and Master's Reports
The main aim of this study was to investigate the effects of Portulaca oleracea extract on tumor formation in colon cancer stem cells and chemotherapy sensitivity. In addition, this study analyzed the genetic changes within the Notch signal transduction pathway associated with the effects of the extracts. Serum-free cultures of colon cancer cells (HT-29) and HT-29 stem cells were treated with the chemotherapeutic drug 5-FU to assess sensitivity. Injections of the stem cells were also given to BALB/c mice to confirm tumor growth and characteristics. In addition, the effect of different concentrations of P. oleracea extract was tested on the …
Heterologous Expression And Purification Of Full-Length Human Polybromo-1 Protein, Sarah Hopson
Heterologous Expression And Purification Of Full-Length Human Polybromo-1 Protein, Sarah Hopson
Dissertations, Master's Theses and Master's Reports
Over the past decade, it has become apparent that the human polybromo-1 protein (BAF180) has a critical role in cancer. BAF180 is known to be a driver mutation in clear cell renal cell carcinoma, where it has been found to be mutated in approximately 40% of cases. Mutations have also been found in several other cancers, including intrahepatic cholangiocarcinomas and epithelioid sarcomas. BAF180 is the chromatin targeting subunit of the PBAF (Polybromo-associated BRG1-associated factor) chromatin remodeling complex, a role facilitated by its nine domains: six bromodomains, which recognize and bind to acetylated lysines on histones; two BAH (bromo-adjacent homology) domains, …
Hyper-Activation Of Pp60(Src) Limits Nitric Oxide Signaling By Increasing Asymmetric Dimethylarginine Levels During Acute Lung Injury, Sanjiv Kumar, Xutong Sun, Satish Kumar Noonepalle, Qing Lu, Evgeny Zemskov, Ting Wang, Saurabh Aggarwal, Christine Gross, Shruti Sharma, Ankit A. Sesai, John D. Catravas
Hyper-Activation Of Pp60(Src) Limits Nitric Oxide Signaling By Increasing Asymmetric Dimethylarginine Levels During Acute Lung Injury, Sanjiv Kumar, Xutong Sun, Satish Kumar Noonepalle, Qing Lu, Evgeny Zemskov, Ting Wang, Saurabh Aggarwal, Christine Gross, Shruti Sharma, Ankit A. Sesai, John D. Catravas
Bioelectrics Publications
The molecular mechanisms by which the endothelial barrier becomes compromised during lipopolysaccharide (LPS) mediated acute lung injury (ALI) are still unresolved. We have previously reported that the disruption of the endothelial barrier is due, at least in part, to the uncoupling of endothelial nitric oxide synthase (eNOS) and increased peroxynitrite-mediated nitration of RhoA. The purpose of this study was to elucidate the molecular mechanisms by which LPS induces eNOS uncoupling during ALI. Exposure of pulmonary endothelial cells (PAEC) to LPS increased pp60Src activity and this correlated with an increase in nitric oxide (NO) production, but also an increase in …
Toward Biochemical Conversion Of Lignocellulose On-Farm: Pretreatment And Hydrolysis Of Corn Stover In Situ, Alicia A. Modenbach, Sue E. Nokes, Michael D. Montross, Barbara L. Knutson
Toward Biochemical Conversion Of Lignocellulose On-Farm: Pretreatment And Hydrolysis Of Corn Stover In Situ, Alicia A. Modenbach, Sue E. Nokes, Michael D. Montross, Barbara L. Knutson
Biosystems and Agricultural Engineering Faculty Publications
High-solids lignocellulosic pretreatment using NaOH followed by high-solids enzymatic hydrolysis was evaluated for an on-farm biochemical conversion process. Increasing the solids loadings for these processes has the potential for increasing glucose concentrations and downstream ethanol production; however, sequential processing at high-solids loading similar to an on-farm cellulose conversion system has not been studied. This research quantified the effects of high-solids pretreatment with NaOH and subsequent high-solids enzymatic hydrolysis on cellulose conversion. As expected, conversion efficiency was reduced; however, the highest glucose concentration (40.2 g L-1), and therefore the highest potential ethanol concentration, resulted from the high-solids combined pretreatment …
Sex Differences In The Subjective Effects Of Oral Δ9-Thc In Cannabis Users, Jessica S. Fogel, Thomas H. Kelly, Philip M. Westgate, Joshua A. Lile
Sex Differences In The Subjective Effects Of Oral Δ9-Thc In Cannabis Users, Jessica S. Fogel, Thomas H. Kelly, Philip M. Westgate, Joshua A. Lile
Behavioral Science Faculty Publications
Previous studies suggest that there are sex differences in endocannabinoid function and the response to exogenous cannabinoids, though data from clinical studies comparing acute cannabinoid effects in men and women under controlled laboratory conditions are limited. To further explore these potential differences, data from 30 cannabis users (N=18 M, 12 F) who completed previous Δ9-tetrahydrocannabinol (Δ9-THC) discrimination studies were combined for this retrospective analysis. In each study, subjects learned to discriminate between oral Δ9-THC and placebo and then received a range of Δ9-THC doses (0, 5, 15 and a “high” dose of …
Metabolic Reprogramming Of Human Lung Cancer Cells And Ex Vivo Tissues Revealed By Uhr-Ftms Analysis Of Small Amino And Carboxyl Metabolites, Ye Yang
Theses and Dissertations--Toxicology and Cancer Biology
Studies were carried out to understand how human lung cancer cells and human ex vivo lung cancer tissues that are metabolically reprogramed compared with analogous non-cancer cells or non-cancer tissues. A Stable isotope resolved metabolomics (SIRM) approach was used to fulfill this aim by employing 13C, 2H or 15N labeled metabolic precursors like 13C6-Glc, 13C2-Gly, 2H2-Gly, 2H3-Ser, 13C5, 15N2-Gln to trace the flow of the labeled atoms into the down stream metabolic network. NMR and mass spectrometry are two …
Synthesis And Characterization Of Amide Linked Triazolyl Glycolipids As Molecular Hydrogelators And Organogelators, Guijun Wang, Anji Chen, Hari P. R. Mangunuru, Jayasudhan Reddy Yerabolu
Synthesis And Characterization Of Amide Linked Triazolyl Glycolipids As Molecular Hydrogelators And Organogelators, Guijun Wang, Anji Chen, Hari P. R. Mangunuru, Jayasudhan Reddy Yerabolu
Chemistry & Biochemistry Faculty Publications
Carbohydrate based small molecular gelators are important classes of compounds which can form useful soft materials with many practical applications. Although many different types of effective gelators have been reported, the rational design of a molecular hydrogelator is still challenging. In this research, we combined the structural features of two classes of monosaccharide based molecular gelators and obtained a new class of glycolipids that can function as molecular gelators. These new compounds were synthesized by introducing a triazole functional group to a protected 2-glucosamine through Cu(i) catalyzed azide/alkyne cycloaddition reaction (CuAAC). A series of eighteen new glycolipids containing 4,6-O …
Biochemical Characterization Of Wild-Type Hsp27 And Point Mutation S135f That Leads To Neurodegenerative Disease, Janelly Villalobos
Biochemical Characterization Of Wild-Type Hsp27 And Point Mutation S135f That Leads To Neurodegenerative Disease, Janelly Villalobos
Open Access Theses & Dissertations
HSPB1, also classified as heat shock protein 27 (Hsp27), is a small chaperone that is active in cells during stressful conditions. The chaperone can stabilize target proteins in a non-aggregated folding state and might be involved in regulation of folding and assembly of neurofilaments. There are five mutations in the genome of Hsp27 that are involved in Charcot Marie Tooth Disease (CMT). This neurodegenerative disease is characterized by the first decades of life where it slowly progresses to weakness of muscles followed by sensory loss and skeletal deformities. CMT is the most common hereditary neuromuscular disease, with an estimated rate …
Evolution Of The Kinetics And Dynamics Of Heme-Crevice Loop Regulating Chemistry In Human Cytochrome C, Shiloh M. Nold
Evolution Of The Kinetics And Dynamics Of Heme-Crevice Loop Regulating Chemistry In Human Cytochrome C, Shiloh M. Nold
Graduate Student Theses, Dissertations, & Professional Papers
Cytochrome c, cytc, is a metalloprotein that plays primary roles in electron transport and intrinsic apoptotic pathways. Much of the chemistry that cytc is involved with is regulated by a highly conserved region known as the heme crevice loop, consisting of residues 70-85. Only three of these residues (those at positions 81, 83 and 85) are not universally conserved within the evolutionary timeline. Here I look to elucidate possible evolutionary roles for several of the key residues known to be important in regulating heme chemistry of cytc.
I first address the role that lysine …
Effects Of Novel Fragment-Warhead Adducts In Situ And In Vitro With Glutaredoxin Orthologs., Andrew J. Caras
Effects Of Novel Fragment-Warhead Adducts In Situ And In Vitro With Glutaredoxin Orthologs., Andrew J. Caras
Williams Honors College, Honors Research Projects
Fragment-based drug design (FBDD) is a method of pharmaceutical research involving characterization of small “fragment” molecule interactions with a target protein. These fragments are optimized with the addition of a nucleophilic “warhead” moiety. Several novel fragment-warhead adducts have been synthesized in house by group member Ram Khattri Ph.D. The experiment investigates reactivity of these adducts with glutaredoxin protein (Grx) orthologs from Homo sapiens, Pseudomonas aeruginosa and Brucella melitensis. Three novel fragment-warhead adducts have been identified to cause weakly bacteriostatic and bacteriocidal effects, most with minimum inhibitory concentration values near 1.28 mg/mL. Discussed herein are molecular effects of these fragment-warhead …
Studies Of Sumoylation In Regulating Mif Stability And Rangap1 Nucleo-Cytoplasmic Shuttling In Controlling Its Sumo Modification, Progga Sen
Wayne State University Dissertations
SUMOylation is an essential post-translational modification that regulates a variety of critical cellular pathways ranging from nuclear transport to protein stability. Accumulating lines of evidence have shown that a perturbation of the SUMOylation pathway is associated with human diseases, especially various types of cancer. Our recent proteomic studies revealed a drastic increase in levels of SUMO2/3 modification on the proinflammatory cytokine MIF in the metastatic breast cancer cell line compared to the non-metastatic control cell line. Interestingly, the increase in levels of both MIF and global SUMO-2/3 modification in the metastatic cells are positively correlated to that of unmodified MIF …
Rad Gtpase: Identification Of Novel Regulatory Mechanisms And A New Function In Modulation Of Bone Density And Marrow Adiposity, Catherine Nicole Kaminski Withers
Rad Gtpase: Identification Of Novel Regulatory Mechanisms And A New Function In Modulation Of Bone Density And Marrow Adiposity, Catherine Nicole Kaminski Withers
Theses and Dissertations--Molecular and Cellular Biochemistry
The small GTP-binding protein Rad (RRAD, Ras associated with diabetes) is the founding member of the RGK (Rad, Rem, Rem2, and Gem/Kir) family that regulates voltage-dependent calcium channel function. Given its expression in both excitable and non-excitable cell types, the control mechanisms for Rad regulation and the potential for novel functions for Rad beyond calcium channel modulation are open questions. Here we report a novel interaction between Rad and Enigma, a scaffolding protein that also binds to the E3 ubiquitin ligase Smad ubiquitin regulatory factor 1 (Smurf1). Overexpression of Smurf1, but not …
Viral Fusion Protein Tm-Tm Interactions: Modulators Of Protein Function And Potential Antiviral Targets, Stacy Webb
Viral Fusion Protein Tm-Tm Interactions: Modulators Of Protein Function And Potential Antiviral Targets, Stacy Webb
Theses and Dissertations--Molecular and Cellular Biochemistry
Enveloped viruses, such as HIV, influenza, and Ebola, utilize surface glycoproteins to bind and fuse with a target cell membrane. This fusion event is necessary for release of viral genomic material so the virus can ultimately reproduce and spread. The recently emerged Hendra virus (HeV) is a negative-sense, single-stranded RNA paramyxovirus that presents a considerable threat to human health as there are currently no human vaccines or antivirals available. The HeV utilizes two surface glycoproteins, the fusion protein (F) and the attachment protein (G), to drive membrane fusion. Through this process, the F protein undergoes an irreversible conformational change, transitioning …
Platelet Endocytosis: Roles In Hemostasis And Innate Immunity, Meenakshi Banerjee
Platelet Endocytosis: Roles In Hemostasis And Innate Immunity, Meenakshi Banerjee
Theses and Dissertations--Molecular and Cellular Biochemistry
Endocytosis is key to fibrinogen (Fg) uptake, receptor trafficking of integrins (αIIbβ3, αvβ3) and purinergic receptors (P2Y1, P2Y12), and thereby for normal platelet function. However, platelet endocytosis could potentially be critical for actively sensing changes in vascular micro-environments and responding accordingly to what is being taken up. This is a more dynamic view of platelets as active surveyors of the vasculature; extending the importance of platelet endocytosis beyond granule biogenesis and perhaps even hemostasis. The mechanistic underpinnings of endocytosis, its importance in platelets, and the molecular machinery required …
Micrornas Modulate Pathogenesis Resulting From Chlamydial Infection In Mice, Laxmi Yeruva, S. Pouncey, Michael R. Eledge, Sudeepa Bhattacharya, Chunqiao Luo, Erin W. Weatherford, David M. Ojcius, Roger G. Rank
Micrornas Modulate Pathogenesis Resulting From Chlamydial Infection In Mice, Laxmi Yeruva, S. Pouncey, Michael R. Eledge, Sudeepa Bhattacharya, Chunqiao Luo, Erin W. Weatherford, David M. Ojcius, Roger G. Rank
All Dugoni School of Dentistry Faculty Articles
Not all women infected with chlamydiae develop upper genital tract disease, but the reason(s) for this remains undefined. Host genetics and hormonal changes associated with the menstrual cycle are possible explanations for variable infection outcomes. It is also possible that disease severity depends on the virulence of the chlamydial inoculum. It is likely that the inoculum contains multiple genetic variants, differing in virulence. If the virulent variants dominate, then the individual is more likely to develop severe disease. Based on our previous studies, we hypothesized that the relative degree of virulence of a chlamydial population dictates the microRNA (miRNA) expression …
Study Of Molecular Interactions Of Glycosaminoglycans And Glycosaminoglycan Mimetics With Their Protein Targets, Daniel K. Afosah
Study Of Molecular Interactions Of Glycosaminoglycans And Glycosaminoglycan Mimetics With Their Protein Targets, Daniel K. Afosah
Theses and Dissertations
Glycosaminoglycans (GAGs) are complex linear chain carbohydrate molecules found on virtually all animal cell surfaces. Owing to their negatively charged nature, GAGs interact with a number of different proteins. Thus, although they have great potential as therapeutic agents, their apparent promiscuous interactions increase their side effect risk. GAG mimetics, including GAG oligosaccharides and non-saccharide GAG mimetics (NSGMs) are viable approaches to address this. This work discusses sulfated benzofuran thrombin inhibitors with submaximal protease inhibition, sulfated diflavonoid inhibitors of plasmin and GAG oligosaccharides with selectivity for human neutrophil elastase (HNE).
Anticoagulants are very important for the treatment of thrombotic diseases. The …
Investigation Of The Physiological Role Of Rin Gtpase In Cell Death, Axonal Injury, And Inflammation Following Traumatic Brain Injury, Megan Pannell
Investigation Of The Physiological Role Of Rin Gtpase In Cell Death, Axonal Injury, And Inflammation Following Traumatic Brain Injury, Megan Pannell
Theses and Dissertations--Molecular and Cellular Biochemistry
Traumatic brain injury (TBI) is a progressive disorder, in which the primary injury results in the initiation of a complex cascade of secondary biochemical and metabolic changes resulting in lasting neurological dysfunction and cognitive impairment. The heterogeneous nature of the disease has complicated the development of pharmacological agents to improve the outcomes of TBI; to date, no therapeutic treatment has been shown to be effective in clinical trials. Treatments targeting multiple secondary outcomes (cell death, axonal degeneration, and inflammation) may provide enhanced therapeutic efficacy following TBI.
Small Ras family GTP-binding proteins govern diverse cellular processes by directing the relay of …
Significant Enhancement Of Fatty Acid Composition In Seeds Of The Allohexaploid, Camelina Sativa, Using Crispr/Cas9 Gene Editing, Wen Zhi Jhang, Isabelle M. Henry, Peter G. Lynagh, Lucia Comai, Edgar B. Cahoon, Donald P. Weeks
Significant Enhancement Of Fatty Acid Composition In Seeds Of The Allohexaploid, Camelina Sativa, Using Crispr/Cas9 Gene Editing, Wen Zhi Jhang, Isabelle M. Henry, Peter G. Lynagh, Lucia Comai, Edgar B. Cahoon, Donald P. Weeks
Department of Biochemistry: Faculty Publications
The CRISPR/Cas9 nuclease system is a powerful and flexible tool for genome editing, and novel applications of this system are being developed rapidly. Here, we used CRISPR/Cas9 to target the FAD2 gene in Arabidopsis thaliana and in the closely related emerging oil seed plant, Camelina sativa, with the goal of improving seed oil composition. We successfully obtained Camelina seeds in which oleic acid content was increased from 16% to over 50% of the fatty acid composition. These increases were associated with significant decreases in the less desirable polyunsaturated fatty acids, linoleic acid (i.e. a decrease from ~16% to <4%) and linolenic acid (a decrease from ~35% to <10%). These changes result in oils that are superior on multiple levels: they are healthier, more oxidatively stable and better suited for production of certain commercial chemicals, including biofuels. As expected, A. …4%)>