Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Physical Sciences and Mathematics (2025)
- Chemistry (1776)
- Molecular Biology (1544)
- Medicine and Health Sciences (1227)
- Biotechnology (683)
-
- Other Biochemistry, Biophysics, and Structural Biology (671)
- Cell and Developmental Biology (608)
- Biology (580)
- Cell Biology (433)
- Microbiology (412)
- Genetics and Genomics (410)
- Chemicals and Drugs (370)
- Biophysics (345)
- Medical Sciences (337)
- Structural Biology (283)
- Engineering (253)
- Medical Specialties (252)
- Physiology (250)
- Genetics (212)
- Amino Acids, Peptides, and Proteins (205)
- Immunology and Infectious Disease (202)
- Plant Sciences (199)
- Diseases (189)
- Pharmacology, Toxicology and Environmental Health (182)
- Cancer Biology (177)
- Organic Chemistry (177)
- Bioinformatics (169)
- Institution
-
- University of Nebraska - Lincoln (602)
- Old Dominion University (376)
- Brigham Young University (291)
- University of Kentucky (278)
- City University of New York (CUNY) (216)
-
- 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 (40)
- 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 (380)
- Chemistry and Biochemistry Faculty Publications (202)
- Electronic Theses and Dissertations (199)
- Faculty Publications (199)
-
- Chemistry Faculty Publications (165)
- Dissertations, Theses, and Capstone Projects (143)
- 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 1591 - 1620 of 6985
Full-Text Articles in Biochemistry
A Pkcα-Mediated Growth Suppressive Mek-Erk Signaling Axis In Intestinal Epithelial Cells, Navneet Kaur
A Pkcα-Mediated Growth Suppressive Mek-Erk Signaling Axis In Intestinal Epithelial Cells, Navneet Kaur
Theses & Dissertations
Members of the protein kinase C (PKC) family of serine/threonine kinases are involved in regulation of fundamental cellular functions, including proliferation, differentiation, survival, migration, and transformation. Increasing evidence points to anti-proliferative and tumor suppressive role of PKCs. Our laboratory and others have reported that the classical PKC isozyme, PKCαnegatively regulates proliferation and tumorigenesis in the intestinal epithelium. Our laboratory has further determined that PKCα signaling induces a program of cell cycle withdrawal in intestinal epithelial cells that involves downregulation of the pro-proliferative proteins, cyclin D1 and Id1, and upregulation of the cyclin dependent kinase (CDK) inhibitor, p21Cip1. Unexpectedly, …
Nuclear Receptor Coactivator 3 In Endoplasmic Reticulum Stress And Stress Granule Dynamics In Pancreatic Cancer, Andrew Kisling
Nuclear Receptor Coactivator 3 In Endoplasmic Reticulum Stress And Stress Granule Dynamics In Pancreatic Cancer, Andrew Kisling
Theses & Dissertations
Pancreatic cancer is predicted to be the second-leading cause of cancer-related deaths within the next decade. Nuclear receptor coactivator 3 (NCOA3/SRC3/AIB1) regulates an array of metabolic and signaling pathways and has been established by our group and others as a critical regulator pancreatic cancer progression and metastasis. A recent study demonstrated NCOA3 regulation by the IRE1α-XBP1 axis of the unfolded protein response (UPR), suggesting a link between NCOA3 and cellular stress management. Furthermore, NCOA3 has been shown to directly bind to a scaffolding protein of stress granules (SGs). Since SG assembly is regulated by the UPR, we hypothesized that NCOA3 …
Molecular Mechanisms Of Aberrant Protein Glycosylation In Pancreatic Cancer Stemness And Metastasis, Frank Leon
Molecular Mechanisms Of Aberrant Protein Glycosylation In Pancreatic Cancer Stemness And Metastasis, Frank Leon
Theses & Dissertations
A myriad of genetic and other abnormal changes underlies the aggressiveness and dissemination properties observed in pancreatic cancer (PC). Aberrant protein glycosylation is a commonly observed feature in PC. The modification of protein O-glycosylation is mediated by glycosyltransferases, which attach and sequentially elongate monosaccharides on Serine/Threonine (Ser/Thr) motifs. Aberrant glycosylation is recognized as an emerging hallmark of cancer where a disruption in normal glycosylation results in irregular O-glycans.
This dissertation research has investigated the consequences of aberrant protein glycosylation on stemness and enhancement of metastatic properties in pancreatic ductal adenocarcinoma (PDAC). Several publications have reported aberrant O-glycosylation increases in oncogenic …
A Link Between Methylglyoxal And Heart Failure During Hiv-1 Infection, Prasanta K. Dasg, Fadhel A. Alomar, Jesse L. Cox, Joellyn Mcmillan, Bryan T. Hackfort, Edward Makarov, Brenda Morsey, Howard S. Fox, Howard E. Gendelman, Santhi Gorantla, Keshore R. Bidasee
A Link Between Methylglyoxal And Heart Failure During Hiv-1 Infection, Prasanta K. Dasg, Fadhel A. Alomar, Jesse L. Cox, Joellyn Mcmillan, Bryan T. Hackfort, Edward Makarov, Brenda Morsey, Howard S. Fox, Howard E. Gendelman, Santhi Gorantla, Keshore R. Bidasee
Department of Biochemistry: Faculty Publications
Early-onset heart failure (HF) continues to be a major cause of morbidity and mortality in people living with human immunodeficiency virus type one (HIV-1) infection (PLWH), yet the molecular causes for this remain poorly understood. Herein NOD.Cg- PrkdcscidIl2rgtm1Wjl/SzJ humanized mice (Hu-mice), plasma from PLWH, and autopsied cardiac tissues from deceased HIV seropositive individuals were used to assess if there is a link between the glycolysis byproduct methylglyoxal (MG) and HF in the setting of HIV-1 infection. At five weeks post HIV infection, Hu-mice developed grade III-IV diastolic dysfunction (DD) with an associated two-fold increase in plasma …
A Review Of Calcineurin Biophysics With Implications For Cardiac Physiology, Ryan B. Williams
A Review Of Calcineurin Biophysics With Implications For Cardiac Physiology, Ryan B. Williams
Theses and Dissertations
Calmodulin is a prevalent calcium sensing protein found in all cells. Three genes exist for calmodulin and all three of these genes encode for the exact same protein sequence. Recently mutations in the amino acid sequence of calmodulin have been identified in living human patients. Thus far, patients harboring these mutations in the calmodulin sequence have only displayed an altered cardiac related phenotype. Calcineurin is involved in many key physiological processes and its activity is regulated by calcium and calmodulin. In order to assess whether or not calcineurin contributes to calmodulinopathy (a pathological state arising from dysfunctional calmodulin), a comprehensive …
Initial Characterization Of Prna From Burkholderia Ambifaria: Developing An Nadph-Dependent Activity Assay For Tryptophan Halogenation, Mahmuda Akter
Initial Characterization Of Prna From Burkholderia Ambifaria: Developing An Nadph-Dependent Activity Assay For Tryptophan Halogenation, Mahmuda Akter
Theses and Dissertations
Some bacteria produce a potent antifungal agent (pyrrolnitrin) from tryptophan using four dioxygen dependent steps to outcompete other microbes. Each step of this process is catalyzed by an oxygenase encoded by the prnABCD cassette. The first enzymatic step in pyrrolnitrin biosynthesis is the regioselective chlorination of tryptophan to form 7-chlorotryptophan. This halogenation is catalyzed by PrnA, a Flavin dependent oxygenase, which has been isolated and characterized from P. fluorescens. The pyrrolnitrin biosynthesis pathway (prnABCD) has been also observed in the Burkholderia genus. This thesis comprises my studies on the expression, purification, and characterization of PrnA from Burkholderia ambifaria. Beyond the …
Granulins In Norm And Neurodegenerative Pathologies, Anukool Bhopatkar
Granulins In Norm And Neurodegenerative Pathologies, Anukool Bhopatkar
Dissertations
Granulins (GRNs) are small, cysteine-rich modules produced from the proteolytic cleavage of the precursor protein called progranulin (PGRN). GRNs are present in the form of seven tandem repeats within the precursor and are known to be produced in the extracellular and in lysosomal environments. In physiology, PGRN and GRNs plays pleiotropic roles such as neuronal growth and differentiation, immunomodulation, wound healing. Recent studies have implicated pathological role for PGRN in Alzheimer disease (AD) and frontotemporal dementia (FTD) but specific mechanism(s) remains unclear. However, potential interactions between GRNs and Ab42 and TDP-43 seem like a plausible underlying mechanism. Studies presented here …
Discovering Virally Encoded Proteins That Block Type Iv Crispr Immune Systems, Andrew Williams
Discovering Virally Encoded Proteins That Block Type Iv Crispr Immune Systems, Andrew Williams
Fall Student Research Symposium 2021
Bacteria and the viruses that infect them have been at war from the beginnings of life until today. Due to selective pressure from viral infection, bacteria have evolved various biological defense systems, including CRISPR-Cas systems that use a genetic memory of previous viral encounters to protect against future invasions. However, recently it has been shown that viruses have evolved counter-strategies to evade CRISPR systems. Virally encoded proteins called anti-CRISPRs use a variety of mechanisms to block the activity of CRISPR immune systems in order to infect bacterial cells. The Jackson lab at USU recently showed that a Type IV-A CRISPR-Cas …
Characterization Of The Atpase Activity Of Casding, Christian Cahoon
Characterization Of The Atpase Activity Of Casding, Christian Cahoon
Fall Student Research Symposium 2021
The battle between bacteria and phage has been ongoing for eons. This battle has generated the evolutionary pressure necessary for the development of microbial immune systems. Characterization of these systems has led to the discovery of molecular tools such CRISPR-Cas systems. This system uses a genetic memory of past viral infections coupled with associated proteins to form ribonucleoprotein complexes which seek out and destroy foreign genetic elements. These systems have been repurposed by scientists to create powerful gene editing tools such as Cas9. With such powerful molecular tools being discovered, we have pursued the characterization of a relatively unknown system, …
Characterizing The Mechanisms Of C. Elegans Prmt1 Temperature Dependence, Arianna Towne
Characterizing The Mechanisms Of C. Elegans Prmt1 Temperature Dependence, Arianna Towne
Fall Student Research Symposium 2021
Over time, cellular enzymes evolve through amino acid mutations which allow them to remain functional at temperatures specific to the host organism. This activity may be partially or completely lost when enzymes are removed from their optimal temperature range, as is observed for the C. elegans protein arginine methyltransferase 1 (cPRMT1). This construct demonstrates maximum enzymatic activity at the C. elegans optimum of 20°C, but no activity at 37°C where activity for mammalian PRMT1 variants is observed. Given dysregulation of PRMT1 has been linked to various disease states, we are interested in exploiting the biophysical mechanisms of cPRMT1 temperature dependence …
Determining The Nucleic Acid Binding Affinities Of Crispr-Associated Ding (Casding), Matt Armbrust
Determining The Nucleic Acid Binding Affinities Of Crispr-Associated Ding (Casding), Matt Armbrust
Fall Student Research Symposium 2021
CRISPR-Cas systems are adaptive prokaryotic immune systems that enable host cells to defend against attack from foreign nucleic acids such as phage infections or plasmids. CRISPR-Cas systems are diverse and encompass 2 classes, 6 types, and 33 subtypes. The Type IV-A CRISPR-Cas system from Pseudomonas aeruginosa strain 83 is composed of five different genes (csf1, csf2, csf3, cas6, and dinG). Type IV-A systems are poorly understood, and currently there is little research detailing their biological and biochemical mechanism of immunity. CasDinG, an ancillary protein within the Type IV-A system, is required for an immune response in vivo. However, the role …
Single-Variable Porous Nanomaterial Series From Polymer Structure-Directing Agents, Morgan Stefik
Single-Variable Porous Nanomaterial Series From Polymer Structure-Directing Agents, Morgan Stefik
Faculty Publications
Block polymer structure-directing agents (SDA) enable the production of porous nanoscale materials. Most strategies rely upon polymer equilibration where diverse morphologies are realized in porous functional materials. This review details how solvent selectivity determines the polymer SDA behaviors, spanning from bulk-type to solution-type. Equilibrating behavior of either type, however, obscures nanostructure cause-and-effect since the resulting sample series convolve multiple spatial variations. Solution-type SDA behaviors include both dynamic and persistent micelles. Persistent micelle templates (PMT) use high solvent selectivity for kinetic entrapment. PMTs enable independent wall thickness control with demonstrated 2 Å precision alterations. Unimodal PMT pore size distributions have spanned …
Charting A New Frontier Integrating Mathematical Modeling In Complex Biological Systems From Molecules To Ecosystems, Katharine A. White, Kira D. Mcentire, Nicole R. Buan, Lecia Robinson, Elisar Barbar
Charting A New Frontier Integrating Mathematical Modeling In Complex Biological Systems From Molecules To Ecosystems, Katharine A. White, Kira D. Mcentire, Nicole R. Buan, Lecia Robinson, Elisar Barbar
Department of Biochemistry: Faculty Publications
Advances in quantitative biology data collection and analysis across scales (molecular, cellular, organismal, and ecological) have transformed how we understand, categorize, and predict complex biological systems. This surge of quantitative data creates an opportunity to apply, develop, and evaluate mathematical models of biological systems and explore novel methods of analysis. Simultaneously, thanks to increased computational power, mathematicians, engineers, and physical scientists have developed sophisticated models of biological systems at different scales. Novel modeling schemes can offer deeper understanding of principles in biology, but there is still a disconnect between modeling and experimental biology that limits our ability to fully realize …
Elucidation Of The Cellular Mechanisms Underlying Missense Mutations In Low Density Lipoprotein Receptor Related Protein 6 (Lrp6) Associated With Cardiovascular Diseases, Huda Issa Samha
Theses
Low-density Lipoprotein Receptor Related Protein 6 (LRP6) is a member of the Low-Density Lipoprotein Receptors family (LDLRs) which is involved in the clearance of LDL from the bloodstream and the signaling of the canonical wingless signaling pathway. Several genetic variants in the LRP6 gene have been conclusively associated with cardiovascular diseases (CVDs) and metabolic syndrome. However, the structural and functional implications of those variations have not been fully elucidated. The CVD-associated LRP6 variants could be retained and possibly subjected to Endoplasmic Reticulum Associated Degradation (ERAD), a quality control and adaptive process employed by cells to eliminate misfolded proteins to maintain …
Genetically Engineered Thermosynechococcus Elongatus Bp1: Assessment Of Potential Biorisks And Biofuel Production, Thu Ho Anh Nguyen-Jones
Genetically Engineered Thermosynechococcus Elongatus Bp1: Assessment Of Potential Biorisks And Biofuel Production, Thu Ho Anh Nguyen-Jones
Chemistry & Biochemistry Theses & Dissertations
According to the International Energy Outlook 2019, released by the U.S. Energy Information Administration, it is projected that the energy consumption will increase up to 50% between 2018 and 2050 worldwide. As fossil fuel being a finite source of energy with the risk of depletion, many countries are now facing an energy security crisis. Therefore, it is important to develop other renewable and sustainable energy sources that will allow countries to shift away from depending on fossil fuels. Among several types of renewable energy, biofuel production using genetically engineered cyanobacteria is capturing much interest due to its many advantages. Different …
Spectroscopic Studies Of The Interaction Between Phosphorus Heterocycles And Cytochrome P450, Dumei Ma, Libo Zhang, Yingwu Yin, Yuxing Gao, Qian Wang
Spectroscopic Studies Of The Interaction Between Phosphorus Heterocycles And Cytochrome P450, Dumei Ma, Libo Zhang, Yingwu Yin, Yuxing Gao, Qian Wang
Faculty Publications
P450 fatty acid decarboxylase OleT from Staphylococcus aureus (OleTSA) is a novel cytochrome P450 enzyme that catalyzes the oxidative decarboxylation of fatty acids to yield primarily terminal alkenes and CO2 or minor α- and β-hydroxylated fatty acids as side-products. In this work, the interactions between a series of cycloalkyl phosphorus heterocycles (CPHs) and OleTSA were investigated in detail by fluorescence titration experiment, ultraviolet–visible (UV–vis) and 31P NMR spectroscopies. Fluorescence titration experiment results clearly showed that a dynamic quenching occurred when CPH-6, a representative CPHs, interacted with OleTSA with a binding constant value of 15.2 …
Molecular Mechanism Of Dna Bisintercalator Antibiotic Resistance, Priyanka Rajendra Gade
Molecular Mechanism Of Dna Bisintercalator Antibiotic Resistance, Priyanka Rajendra Gade
Open Access Theses & Dissertations
Class II UvrA is an ATP-binding cassette protein and a homolog of class I UvrA, the DNA lesion detection component of the universal prokaryotic nucleotide excision repair system. We show that Ecm16, a class II UvrA protein from Streptomyces lasalocidi, specifically recognizes DNA duplex that contains the DNA bisintercalator antibiotic echinomycin. Heterologous expression of Ecm16 in Escherichia coli renders host cells resistant to echinomycin. Interestingly, Ecm16’s antibiotic resistance activity does not require the DNA repair proteins UvrA/B/C/D, indicating that it operates independently of the cell’s nucleotide excision repair pathway. Unlike UvrA, Ecm16 uses the insertion domain to regulate its ATPase …
Site-Specific Effects Of Lysine Acetylation On Aminoacyl-Trna Synthetase, Hao Chen
Site-Specific Effects Of Lysine Acetylation On Aminoacyl-Trna Synthetase, Hao Chen
Graduate Theses and Dissertations
Aminoacyl-tRNA synthetases (AARSs) are an ancient and highly conserved family of enzymes which can catalyze a two-steps aminoacylation reaction to charge tRNAs with their cognate amino acids, thus playing crucial roles in ribosomal protein synthesis. Naturally, the accurate amino acids and tRNA recognition of these synthetases are essential to the fidelity of translation process. To assure the correct recognition, some of these synthetases have evolved with an editing function to help remove the mischarged tRNAs. In addition to these functions, AARSs are also involved in various biological processes ranging from transcription to translation. Currently, a series of proteomic studies have …
Engineering Fluorescently Labeled Human Fibroblast Growth Factor One Mutants And Characterizing Their Photophysics Properties Towards Designing Fret Assays, Mamello Mohale
Graduate Theses and Dissertations
Human fibroblast growth factor one (hFGF1) belongs to a family of 22 FGF members produced by fibroblast cells. Cell signaling during physiological processes of angiogenesis and wound healing occurs when hFGF1 binds to its receptor (FGFR). However, when heterogenous homeostasis is not maintained, fibroblast cells exhibit excessive proliferation which can lead to a myriad of cancers. smFRET is an ultrasensitive distant dependent (1-10 nm) technique capable of resolving such heterogeneity in structural dynamics and binding affinities (Kd). Therefore, we successfully designed and characterized fluorescently labeled hFGF1 tracers which span the visible light region of the electromagnetic spectrum for use in …
Enzymatic Degradation Of Microcystin-Lr By Microcystinase (Mlra), Faisal Alqhtani
Enzymatic Degradation Of Microcystin-Lr By Microcystinase (Mlra), Faisal Alqhtani
Graduate Theses and Dissertations
Microcystin-LR (MC-LR) is affecting the water supply worldwide. Hence, a way to eliminate this toxin is an essential target. In this study, successful cloning of the mlrA gene and producing MlrA enzyme that can degrade the cyclic MC-LR to linearized MC-LR was done. MlrA protein was expressed in Escherichia coli BL-21 (E. coli). Also, enhancing the MlrA yield by adding nickel to LB media was a success in producing more MlrA enzyme from the same volume. Even though the enzyme showed no activity after adding Ni, the enzyme was expressed at a higher yield. Furthermore, it was to investigate adding …
Impact Of Pank1 Deletion On Mitochondrial Acetylation And Cardiac Function During Pressure Overload., Timothy N. Audam
Impact Of Pank1 Deletion On Mitochondrial Acetylation And Cardiac Function During Pressure Overload., Timothy N. Audam
Electronic Theses and Dissertations
Recent studies have associated elevated protein acetylation levels with heart failure in humans. Although mechanisms promoting elevated acetylation levels are not fully known, excess acetyl-CoA may drive enzyme-independent acetylation of cardiac proteins. Accumulation of acetyl-CoA depends on the availability of sufficient CoA, whose production is regulated by pantothenate kinases in the CoA biosynthetic pathway. We show that cardiac proteins are hyperacetylated during heart failure in humans and tested in mice whether limiting CoA abundance would improve ventricular remodeling during pressure overload-induced hypertrophy. We limited cardiac CoA levels by deleting the rate-limiting enzyme in CoA biosynthesis, Pank1 (one of three PANK-encoding …
Characterization Of The Multifunctional Enzyme Proline Utilization A, Yizi Mao
Characterization Of The Multifunctional Enzyme Proline Utilization A, Yizi Mao
Department of Biochemistry: Dissertations, Theses, and Student Research
Proline is a unique and important amino acid. Proline is a proteogenic amino acid and its metabolism is involved in many critical cellular functions. Therefore, proline metabolism is tightly regulated, and dysfunction of proline metabolism is related to human diseases. The first step of proline oxidization to ∆1-pyrroline-5-carboxylic acid (P5C) is catalyzed by proline dehydrogenase (PRODH). P5C is then non-enzymatically hydrolyzed to glutamate-γ-semialdehyde (GSA), which can be further oxidized to glutamate by P5C dehydrogenase (P5CDH/GSALDH). In Gram-negative bacteria, the PRODH and P5CDH enzymes are expressed as one polypeptide called proline utilization A (PutA). In some Gram-negative bacteria an …
Mechanisms Of Stress Survival In Gram Positive Bacterial Pathogens, Asia Poudel
Mechanisms Of Stress Survival In Gram Positive Bacterial Pathogens, Asia Poudel
Chemistry & Biochemistry Theses & Dissertations
Anaerobic Gram-positive bacteria are not a well-characterized group but include many human pathogens that are resilient against stresses caused by the human immune system or by antibiotic treatment. This dissertation investigated the survival mechanisms of two clinically relevant Gram-positive organisms, Clostridioides difficile and Cutibacterium acnes under extracellular stresses. The response of the opportunistic skin pathogen Cutibacterium acnes to nanosecond electric pulses is characterized and found that growth in a biofilm, which usually protects bacteria from stress, renders this species more killable by this treatment. In addition, the stringent response (SR), a conserved bacterial stress survival mechanism, is studied in the …
Development And Validation Of A Method For The Determination Of Designer Benzodiazepines In Hair By Liquid Chromatography Tandem Mass Spectrometry (Lc-Ms/Ms), Laura C. Defreitas
Development And Validation Of A Method For The Determination Of Designer Benzodiazepines In Hair By Liquid Chromatography Tandem Mass Spectrometry (Lc-Ms/Ms), Laura C. Defreitas
Student Theses
In recent years, new designer benzodiazepines have become a challenge in forensic toxicology. These substances are analogues of the classic benzodiazepines, but their pharmacology is not well known, and many of them have been associated with overdoses and deaths. As a result, there has been a surge in efforts to develop ways to accurately test for these compounds in different biological matrices. This study focused to develop and validate a method for determining 17 new designer benzodiazepines in hair by liquid chromatography tandem mass spectrometry (LC-MS/MS). Hair samples were decontaminated, pulverized, and 20 mg of the sample was incubated in …
Lipidomic Analysis Of Various Developmental Stages Of Physcomitrium Patens, Deepshila Gautam
Lipidomic Analysis Of Various Developmental Stages Of Physcomitrium Patens, Deepshila Gautam
Electronic Theses and Dissertations
Lipids maintain fluidity of the cell membrane during the lifetime of all organisms. The moss Physcomitrium patens, an early land plant, enters reproductive phase under cold (15°C) conditions relative to its gametophytes (22°C). Thus, we hypothesized that their lipid content and composition would be distinct. Using ESI-MS/MS, we showed that the content and acyl composition of 11 lipid classes varied during development. Galactolipids were abundant in gametophytes but insignificant in sporophytes; among phospholipids, phosphatidylcholine was predominant in both phases. Although, sporophytes contained around five-fold less lipids than the gametophyte, their phosphatidic acid content, which accumulates during stress, was 18-fold …
Reintegrating Biology Through The Nexus Of Energy, Information, And Matter, Kim L. Hoke, Sara L. Zimmer, Adam B. Roddy, Mary Jo Ondrechen, Craig E. Williamson, Nicole R. Buan
Reintegrating Biology Through The Nexus Of Energy, Information, And Matter, Kim L. Hoke, Sara L. Zimmer, Adam B. Roddy, Mary Jo Ondrechen, Craig E. Williamson, Nicole R. Buan
Department of Biochemistry: Faculty Publications
Information, energy, and matter are fundamental properties of all levels of biological organization, and life emerges from the continuous flux of matter, energy, and information. This perspective piece defines and explains each of the three pillars of this nexus. We propose that a quantitative characterization of the complex interconversions between matter, energy, and information that compose this nexus will help us derive biological insights that connect phenomena across different levels of biological organization. We articulate examples from multiple biological scales that highlight how this nexus approach leads to a more complete understanding of the biological system. Metrics of energy, information, …
Liposomes: Production And Applications For Controlled Drug Delivery, Gamid Abatchev
Liposomes: Production And Applications For Controlled Drug Delivery, Gamid Abatchev
Boise State University Theses and Dissertations
This dissertation recognizes the enormous potential presented by the ever-evolving development of liposomes as drug carriers and seeks to offer further investigation into their useful production and utilization. The first chapter presents the basic principles governing their formation by self-assembly in water solutions, briefly describes the most common production methods, and points out essential past advances that led to their use as drug carriers. Chapter two exemplifies production of liposomes by the traditional methods of extrusion and sonication, detailing passive and active loading, as well as physical characterization by Dynamic Light Scattering, microscopy imaging, and fluorescence spectroscopy. In the next …
The Flavoprotein Rcla Is A Hypothiocyanous Acid Reductase, Irina Chapman
The Flavoprotein Rcla Is A Hypothiocyanous Acid Reductase, Irina Chapman
Masters Theses
Reactive chlorine species (RCS) - hypochlorous acid (HOCl), hypothiocyanous acid (HOSCN), and chloramines - are powerful antimicrobial oxidants generated by the innate immune system. Bacteria developed defense mechanisms against RCS, which are highly toxic for invading pathogens. One such defense system involves RclA, an enzyme from the flavin disulfide reductase family, which is massively upregulated upon exposure of Escherichia coli to RCS. Recent research suggests that RclA functions as a Cu(II) reductase to provide resistance against RCS. However, the exact mechanism used by RclA was subject to debate. In this study, we demonstrate that RclA is unlikely to function as …
Deciphering The Role Of Hsp110 Chaperones In Diseases Of Protein Misfolding, Unekwu M. Yakubu
Deciphering The Role Of Hsp110 Chaperones In Diseases Of Protein Misfolding, Unekwu M. Yakubu
Dissertations and Theses (Open Access)
Molecular chaperones maintain protein homeostasis (proteostasis) by ensuring the proper folding of polypeptides. Loss of proteostasis has been linked to the onset of numerous neurodegenerative disorders including Alzheimer’s, Parkinson’s, and Huntington’s disease. Hsp110 is a member of the Hsp70 class of molecular chaperones and acts as a nucleotide exchange factor (NEF) for Hsp70, the preeminent Hsp70-family protein folding chaperone. Hsp110 promotes rapid cycling of ADP for ATP, allowing Hsp70 to properly fold nascent or unfolded polypeptides in iterative cycles. In addition to its NEF activity, Hsp110 possesses an Hsp70-like substrate binding domain (SBD) whose biological roles are undefined. Previous work …
Agonist-Induced Conformational Changes In The Nmda Receptor, Ryan Durham, Ryan Durham
Agonist-Induced Conformational Changes In The Nmda Receptor, Ryan Durham, Ryan Durham
Dissertations and Theses (Open Access)
NMDA receptors are ligand-gated ion channels that mediate a number of physiological and pathological phenomena within the mammalian central nervous system. Under the typical course of activation, these receptors bind to glycine and glutamate molecules and undergo a series of conformational changes that results in the opening of a cation-permeable pore in the neuronal plasma membrane. Various aspects of NMDA receptor function are not fully understood, including the phenomenon of negative cooperativity between the glycine- and glutamate-binding sites of the receptor and the mechanism controlling partial agonism. Past studies utilizing static structural snapshots of the receptor or isolated domains of …