Characterisation Of Cholesterolcontaining Microparticles In Autoimmunity,
2019
Technological University Dublin
Characterisation Of Cholesterolcontaining Microparticles In Autoimmunity, Shuai Shuai Hu
Doctoral
In recent years, it has become apparent that sub-micron scale remnants of cells, called microparticles (MPs), are present in human circulation. MPs contain DNA, RNA, protein and lipids (such as cholesterol). Increased numbers of MPs are observed in autoimmune conditions such as Systemic Lupus Erythematosus (SLE) and Rheumatoid Arthritis (RA). This work aims to address the deficiency in the literature concerning MP cholesterol (MPC) by establishing reference values for MPC in a representative healthy population group, and by investigating the potential of MP cholesterol as a biomarker in autoimmunity.
Hypoxic Preconditioning Attenuates Reoxygenation-Induced Skeletal Muscle Dysfunction In Aged Pulmonary Tnf-Α Overexpressing Mice,
2018
The Ohio State University
Hypoxic Preconditioning Attenuates Reoxygenation-Induced Skeletal Muscle Dysfunction In Aged Pulmonary Tnf-Α Overexpressing Mice, China-Chen Chuang, Tingyang Zhou, Mark Olfert, Li Zuo
Faculty & Staff Scholarship
No abstract provided.
The Effect Of Styrene-Maleic Acid (Sma) Copolymers On Solubilizing Lipid Bilayers And Forming Nanodiscs,
2018
Portland State University
The Effect Of Styrene-Maleic Acid (Sma) Copolymers On Solubilizing Lipid Bilayers And Forming Nanodiscs, Ghada Alramadan
Dissertations and Theses
Cell membranes, or plasma membranes, play an essential role in the structure and the function of living cells. In 1972, the fluid mosaic membrane model was the first unifying paradigm of membrane structure. It is no longer considered adequate because evidence of many non-homogeneous lipid structures in both natural and model membranes have been discovered over the past thirty years. The field of membrane biophysics now uses updated versions of the mosaic model, which consists of the complex mixture of different lipid species. The lipid species found in natural membranes produce a range of dynamic, laterally segregated, non-homogeneous domains, which …
The Catalytic Mechanism Of Electron-Bifurcating Electron Transfer Flavoproteins (Etfs) Involves An Intermediary Complex With Nad+,
2018
University of Georgia
The Catalytic Mechanism Of Electron-Bifurcating Electron Transfer Flavoproteins (Etfs) Involves An Intermediary Complex With Nad+, Gerrit J. Schut, Nishya Mohamed-Raseek, Monika Tokmina-Lukaszewska, David W. Mulder, Diep M. N. Nguyen, Gina L. Lipscomb, John Patrick Hoben, Angela Patterson, Carolyn E. Lubner, Paul W. King, John W. Peters, Brian Bothner, Anne-Frances Miller, Michael W. W. Adams
Chemistry Faculty Publications
Electron bifurcation plays a key role in anaerobic energy metabolism, but it is a relatively new discovery, and only limited mechanistic information is available on the diverse enzymes that employ it. Herein, we focused on the bifurcating electron transfer flavoprotein (ETF) from the hyperthermophilic archaeon Pyrobaculum aerophilum. The EtfABCX enzyme complex couples NADH oxidation to the endergonic reduction of ferredoxin and exergonic reduction of menaquinone. We developed a model for the enzyme structure by using nondenaturing MS, cross-linking, and homology modeling in which EtfA, -B, and -C each contained FAD, whereas EtfX contained two [4Fe-4S] clusters. On the basis …
Kcnq1/Kcne1 Interaction In The Cardiac Iks Channel And Its Physiological Consequences,
2018
Washington University in St. Louis
Kcnq1/Kcne1 Interaction In The Cardiac Iks Channel And Its Physiological Consequences, Jiajing Xu
McKelvey School of Engineering Graduate Student Theses & Dissertations
Dynamic conformational changes of ion channel proteins during activation gating determine their function as carriers of current. The relationship between these molecular movements and channel function over the physiological timescale of the action potential (AP) has not been fully established due to limitations of existing techniques. We constructed a library of possible cardiac IKs protein conformations and applied a combination of protein segmentation and energy linearization to study this relationship computationally. Simulations reproduced the effects of the beta-subunit (KCNE1) on the alpha-subunit (KCNQ1) dynamics and function, observed in experiments. Mechanistically, KCNE1 increased the probability of “visiting” conducting pore conformations on …
In Silico Development Of An Rna Aptamer Library To Be Use For The Selection Of Rna Aptamer That Target Biomolecules,
2018
Pittsburg State University
In Silico Development Of An Rna Aptamer Library To Be Use For The Selection Of Rna Aptamer That Target Biomolecules, Nehad Nawfawi
Electronic Theses & Dissertations
The systematic evolution of ligands by exponential enrichment (SELEX) is a powerful method for the development of high affinity RNA ligands toward and infinite array of target molecules. SELEX is based upon the generation of a randomized population of RNA or DNA molecules followed by a target molecule that selects high affinity ligands from the randomized population followed by the subsequent amplification of the selected molecules. The procedure of selection and amplification is typically carried out through multiple cycles to insure that the identified ligands exhibits the highest affinity toward the target. The procedure is very time- consuming often taking …
Methanogens: Pushing The Boundaries Of Biology,
2018
University of Nebraska-Lincoln
Methanogens: Pushing The Boundaries Of Biology, Nicole R. Buan
Department of Biochemistry: Faculty Publications
Methanogens are anaerobic archaea that grow by producing methane gas. These microbes and their exotic metabolism have inspired decades of microbial physiology research that continues to push the boundary of what we know about how microbes conserve energy to grow. The study of methanogens has helped to elucidate the thermodynamic and bioenergetics basis of life, contributed our understanding of evolution and biodiversity, and has garnered an appreciation for the societal utility of studying trophic interactions between environmental microbes, as methanogens are important in microbial conversion of biogenic carbon into methane, a high-energy fuel. This review discusses the theoretical basis for …
Delineation Of New Mechanisms Of Dna Double Strand Break Repair,
2018
University of Nebraska Medical Center
Delineation Of New Mechanisms Of Dna Double Strand Break Repair, Songli Zhu
Theses & Dissertations
DNA damage is frequently induced in cells by both endogenous and exogenous agents. DNA damage, particular double strand breaks (DSBs) may lead to genomic instability, and the progression of cancer, aging, neurodegeneration, and other human diseases. The cell employs two major DSB repair pathways, including homologous recombination (HR) and Non-homologous end joining (NHEJ), but the detailed mechanisms of DSB repair remain to be further revealed.
In the first part of this study, we characterized a plasmid-based assay to investigate NHEJ repair in Xenopus egg extracts. Our data argued for a preference for the precise repair by the NHEJ machinery and …
Modulating Hallmarks Of Cholangiocarcinoma,
2018
University of Nebraska Medical Center
Modulating Hallmarks Of Cholangiocarcinoma, Cody Wehrkamp
Theses & Dissertations
How are cholangiocarcinoma cells different from non-malignant cholangiocytes?
All of the hallmarks of cancer apply- those reported in this dissertation include cell proliferation, migration, apoptosis, and evasion of growth suppression. My studies began with testing how apoptosis might be regulated through embelin, a small molecule reported to sensitize cells to apoptosis by blocking XIAP. My data however revealed that embelin reduced the proliferative capacity in cholangiocarcinoma cells, but did not increase cell death. Malignant cells exhibit dysregulation of microRNA processing and expression. Hence, my studies seeking ways that cholangiocarcinoma eludes apoptosis transitioned to the oncomiR miR-106b, which is overexpressed in …
Functional And Mechanical Role Of Splice Variant Of Mucin4 (Muc4/X) And Trefoil Factors In Pancreatic Cancer Pathogenesis,
2018
University of Nebraska Medical Center
Functional And Mechanical Role Of Splice Variant Of Mucin4 (Muc4/X) And Trefoil Factors In Pancreatic Cancer Pathogenesis, Rahat Jahan
Theses & Dissertations
Pancreatic Cancer (PC) is one of the vicious cancers as it ranks third in the race of leading cause of cancer-related death. Lack of early diagnostic marker, poor understanding of molecular mechanism of the disease and failure to conventional chemotherapy makes this disease dreadful.
Mucin 4 (MUC4), a high molecular weight glycoprotein is one of the top differentially expressed molecules in PC while not expressed in normal pancreas. Accumulating evidence from our lab suggested its tumorigenic role in PC by increasing cell proliferation, invasion, chemotherapy resistance, tumor growth, and metastasis. Previously, our lab and other has identified 24 different splice …
Methanogens: Pushing The Boundaries Of Biology,
2018
University of Nebraska-Lincoln
Methanogens: Pushing The Boundaries Of Biology, Nicole R. Buan
Department of Biochemistry: Faculty Publications
Methanogens are anaerobic archaea that grow by producing methane gas. These microbes and their exotic metabolism have inspired decades of microbial physiology research that continues to push the boundary of what we know about how microbes conserve energy to grow. The study of methanogens has helped to elucidate the thermodynamic and bioenergetics basis of life, contributed our understanding of evolution and biodiversity, and has garnered an appreciation for the societal utility of studying trophic interactions between environmental microbes, as methanogens are important in microbial conversion of biogenic carbon into methane, a high-energy fuel. This review discusses the theoretical basis for …
The Drug Discovery Of Potential Anti-Cancer Agents To Inhibit The Demethylation Catalytic Activity Of The Jmjc Domain Of Kdm3a,
2018
Pittsburg State University
The Drug Discovery Of Potential Anti-Cancer Agents To Inhibit The Demethylation Catalytic Activity Of The Jmjc Domain Of Kdm3a, Balgees Alshanqeti
Electronic Theses & Dissertations
Lysine demethylase 3A (KDM3A) is an enzyme that specifically catalyzes the removal of 2 or three methyl groups from lysine 9 of histone 3 (KH3). It belongs to the family of histone demethylases that contain the Jumonji C (JmjC) domain, which means cruciform in Japanese. KDM3A also belongs to a family of hydroxylases that are alpha-ketoglutarate dependent. The role of KDM3A in the cell is not yet understood, however, and based on its demethylation of studies have showed that its expression is elevated in embryonic stem cells in humans and in mice. In general, patterns of elevated expression of KDM3A …
Intra- And Inter-Molecular Signaling In A Cardiac Connexin: Role Of Cytoplasmic Domain Dimerization And Phosphorylation,
2018
University of Nebraska Medical Center
Intra- And Inter-Molecular Signaling In A Cardiac Connexin: Role Of Cytoplasmic Domain Dimerization And Phosphorylation, Andrew J. Trease
Theses & Dissertations
As critical mediators of cell-to-cell communication, gap junctions (GJs) are comprised of membrane channels that directly link the cytoplasm of adjacent coupled cells thereby allowing for the passage of ions, small metabolites, and secondary messengers. Each channel is formed by the apposition of two connexons from adjacent cells, each composed of six connexin (Cx) proteins. Each GJ channel functions to promote signal propagation and synchronization of cells and tissues in organs. Furthermore, GJs are essential for proper propagation of cardiac action potentials from one cell to the next, leading to the coordinated contraction and relaxation of heart muscle powering circulation. …
Expression Analysis Of Micrornas And Microrna-Like Rnas In Aspergillus Flavus-Infected Aflatoxin Resistant And Susceptible Maize Inbred Lines,
2018
Mississippi State University
Expression Analysis Of Micrornas And Microrna-Like Rnas In Aspergillus Flavus-Infected Aflatoxin Resistant And Susceptible Maize Inbred Lines, Amanda Benton Harper
Theses and Dissertations
Corn (Zea mays) is frequently infected by a soil fungal pathogen Aspergillus flavus. The fungus produces aflatoxins, which cause liver cancer. Maize inbred lines that are resistant to infection by A. flavus have been developed, and these inbred lines provide excellent models for studying molecular mechanisms of maize resistance to the fungus. MicroRNA-like RNAs (milRNAs) recently identified in A. flavus had been found to be correlated with aflatoxin production conditions, suggesting that the milRNAs might play a role in the regulation of aflatoxin production. In this research, small RNAs were isolated from kernels of maize (resistant Mp719 and susceptible Va35) …
Carbene Triel Bonds Between Trr3 (Tr=B, Al) And N-Heterocyclic Carbenes,
2018
Yantai University
Carbene Triel Bonds Between Trr3 (Tr=B, Al) And N-Heterocyclic Carbenes, Zongqing Chi, Wenbo Dong, Qingzhong Li, Xin Yang, Steve Scheiner, Shufeng Liu
Chemistry and Biochemistry Faculty Publications
The carbene triel bond is predicted and characterized by theoretical calculations. The C lone pair of N‐heterocyclic carbenes (NHCs) is allowed to interact with the central triel atom of TrR3 (Tr = B and Al; R = H, F, Cl, and Br). The ensuing bond is very strong, with an interaction energy of nearly 90 kcal/mol. Replacement of the C lone pair by that of either N or Si weakens the binding. The bond is strengthened by electron‐withdrawing substituents on the triel atom, and the reverse occurs with substitution on the NHC. However, these effects do not strictly follow …
Solvent Stable Microbial Lipases: Current Understanding And Biotechnological Applications,
2018
Technological University Dublin
Solvent Stable Microbial Lipases: Current Understanding And Biotechnological Applications, Barry Ryan, Priyanka Priyanka, Yeqi Tan, Gemma K Kinsella, Gary T. Henehan
Articles
Objective: This review examines on our current understanding of microbial lipase solvent tolerance, with a specific focus on the molecular strategies employed to improve lipase stability in a non-aqueous environment.
Results: It provides an overview of known solvent tolerant lipases and of approaches to improving solvent stability such as; enhancing stabilising interactions, modification of residue flexibility and surface charge alteration. It shows that judicious selection of lipase source supplemented by appropriate enzyme stabilisation, can lead to a wide application spectrum for lipases.
Conclusion: Organic solvent stable lipases are, and will continue to be, versatile and adaptable biocatalytic workhorses commonly employed …
Chemical Analysis Of Aerosol Particle Surfaces,
2018
Utah State University
Chemical Analysis Of Aerosol Particle Surfaces, Hillary Woolf
Fall Student Research Symposium 2018
Aerosol particles are thought to impact climate properties. The ability to probe aerosols to understand their chemical properties has been difficult due to a lack of appropriate analytical techniques. Here we present interface-specific SHS techniques to allow for in situ analysis of aerosol particles. Transportation of aerosols from their collection site to the laboratory disturbs their chemical and physical properties thus making it difficult to take accurate measurements of aerosol particles. We show that using a CCD detector is a more effective option for producing more sensitive results and can greatly reduce sampling time and could possibly detect measurements from …
Carbohydrate Extraction From The Chorella Vulgaris Microalgae Strain,
2018
University of North Dakota
Carbohydrate Extraction From The Chorella Vulgaris Microalgae Strain, William Hammann, Wayne Seames, Andrew Ross
Essential Studies UNDergraduate Showcase
The cultivation and exploitation of microalgae biomass as a source of renewable fuels and other chemicals has been an active area of research due to microalgae’s high productivity and the relatively high concentrations of valuable intracellular components, like lipids (fatty acid-based oils), proteins, and polysaccharides. Commercialization of this technology will help mitigate global climate change by reducing fossil-derived products by producing analog renewable fuels and chemicals. Traditionally, the main focus of microalgae-based fuels/chemicals research and development has been on the lipids that many strains generate, but current research shows that solely recovering the oils may not be cost competitive with …
Targeting The Brd4/Foxo3a/Cdk6 Axis Sensitizes Akt Inhibition In Luminal Breast Cancer,
2018
University of Kentucky
Targeting The Brd4/Foxo3a/Cdk6 Axis Sensitizes Akt Inhibition In Luminal Breast Cancer, Jingyi Liu, Weijie Guo, Zhibing Duan, Lei Zeng, Yadi Wu, Yule Chen, Fang Tai, Yifan Wang, Yiwei Lin, Qiang Zhang, Yanling He, Jiong Deng, Rachel L. Stewart, Chi Wang, Pengnian Charles Lin, Saghi Ghaffari, B. Mark Evers, Suling Liu, Ming-Ming Zhou, Binhua P. Zhou, Jian Shi
Molecular and Cellular Biochemistry Faculty Publications
BRD4 assembles transcriptional machinery at gene super-enhancer regions and governs the expression of genes that are critical for cancer progression. However, it remains unclear whether BRD4-mediated gene transcription is required for tumor cells to develop drug resistance. Our data show that prolonged treatment of luminal breast cancer cells with AKT inhibitors induces FOXO3a dephosphorylation, nuclear translocation, and disrupts its association with SirT6, eventually leading to FOXO3a acetylation as well as BRD4 recognition. Acetylated FOXO3a recognizes the BD2 domain of BRD4, recruits the BRD4/RNAPII complex to the CDK6 gene promoter, and induces its transcription. Pharmacological inhibition of either BRD4/FOXO3a association or …
Developing Molecular Methods For Detection Of Blood Meal Sources Of A Free-Living Marine Ectoparasite,
2018
Arkansas State University
Developing Molecular Methods For Detection Of Blood Meal Sources Of A Free-Living Marine Ectoparasite, Gina Carole Hendrick
Student Theses and Dissertations
Gnathiid isopods are one of the most common ectoparasites found in coral reef habitats. Sequencing of host blood meals from wild-caught specimens is a promising tool for addressing the extent to which they feed on available hosts. Challenges must be overcome when samples are subjected to conditions that may contribute to DNA degradation, and efforts to slow DNA degradation during field collection can play an important role in the successful identification of the blood-meal source. Herein, we developed and validated molecular-based host identification methods for a Caribbean gnathiid isopods based on the degradation rate of blood meals. These methods were …
