Saturated Free Fatty Acids Induce Cholangiocyte Lipoapoptosis,
2014
University of Nebraska - Lincoln
Saturated Free Fatty Acids Induce Cholangiocyte Lipoapoptosis, Sathish Kumar Natarajan, Sally A. Ingham, Ashley M. Mohr, Cody J. Wehrkamp, Anuttoma Ray, Sohini Roy, Sophie C. Cazanave, Mary Anne Phillippi, Justin L. Mott
Department of Biochemistry: Faculty Publications
Recent studies have identified a cholestatic variant of nonalcoholic fatty liver disease (NAFLD) with portal inflammation and ductular reaction. Based on reports of biliary damage, as well as increased circulating free fatty acids (FFAs) in NAFLD, we hypothesized the involvement of cholangiocyte lipoapoptosis as a mechanism of cellular injury. Here, we demonstrate that the saturated FFAs palmitate and stearate induced robust and rapid cell death in cholangiocytes. Palmitate and stearate induced cholangiocyte lipoapoptosis in a concentration-dependent manner in multiple cholangiocyte-derived cell lines. The mechanism of lipoapoptosis relied on the activation of caspase 3/7 activity. There was also a significant up-regulation …
Pharmacological Correction Of Obesity-Induced
Autophagy Arrest Using Calcium Channel Blockers,
2014
University of Michigan-Ann Arbor
Pharmacological Correction Of Obesity-Induced Autophagy Arrest Using Calcium Channel Blockers, Hwan-Woo Park, Haeli Park, Ian A. Semple, Insook Jang, Seung-Hyun Ro, Myungjin Kim, Victor A. Cazares, Edward L. Stuenkel, Jung-Jae Kim, Jeong Sig Kim, Jun Hee Lee
Department of Biochemistry: Faculty Publications
Autophagy deregulation during obesity contributes to the pathogenesis of diverse metabolic disorders. However, without understanding the molecular mechanism of obesity interference in autophagy, development of therapeutic strategies for correcting such defects in obese individuals is challenging. Here we show that a chronic increase of the cytosolic calcium concentration in hepatocytes during obesity and lipotoxicity attenuates autophagic flux by preventing the fusion between autophagosomes and lysosomes. As a pharmacological approach to restore cytosolic calcium homeostasis in vivo, we administered the clinically approved calcium channel blocker verapamil to obese mice. Such treatment successfully increases autophagosome–lysosome fusion in liver, preventing accumulation of …
Stress-Triggered Activation Of The Metalloprotease Oma1
Involves Its C-Terminal Region And Is Important For
Mitochondrial Stress Protection In Yeast,
2014
University of Nebraska- Lincoln
Stress-Triggered Activation Of The Metalloprotease Oma1 Involves Its C-Terminal Region And Is Important For Mitochondrial Stress Protection In Yeast, Iryna Bohovych, Garrett Donaldson, Sara Christianson, Nataliya Zahayko, Oleh Khalimonchuk
Department of Biochemistry: Faculty Publications
Background: Oma1 is a conserved membrane-bound protease that forms a high molecular mass complex.
Results: Oma1 activity is induced by stress stimuli and required for survival. The activation is linked to changes in Oma1 oligomer stability and involves its C-terminal region.
Conclusion: Oma1 function is activated by mitochondrial stress and is important for stress tolerance.
Significance: Novel insights into Oma1 function and a potential stress activation mechanism are provided.
Homogeneous Low-Molecular-Weight Heparins With Reversible Anticoagulant Activity,
2014
University of North Carolina
Homogeneous Low-Molecular-Weight Heparins With Reversible Anticoagulant Activity, Yongmei Xu, Chao Cai, Kasemsiri Chandarajoti, Po-Hung Hsieh, Lingyun Li, Truong Q. Pham, Erica M. Sparkenbaugh, Juzheng Sheng, Nigel S. Key, Rafal Pawlinski, Edward N. Harris, Robert J. Linhardt, Jian Liu
Department of Biochemistry: Faculty Publications
Low-molecular-weight heparins (LMWHs) are carbohydrate-based anticoagulants clinically used to treat thrombotic disorders, but impurities, structural heterogeneity or functional irreversibility can limit treatment options. We report a series of synthetic LMWHs prepared by cost-effective chemoenzymatic methods. The high activity of one defined synthetic LMWH against human factor Xa (FXa) was reversible in vitro and in vivo using protamine, demonstrating that synthetically accessible constructs can have a critical role in the next generation of LMWHs.
Proline Biosynthesis Is Required For Endoplasmic Reticulum
Stress Tolerance In Saccharomyces Cerevisiae,
2014
University of Nebraska - Lincoln
Proline Biosynthesis Is Required For Endoplasmic Reticulum Stress Tolerance In Saccharomyces Cerevisiae, Xinwen Liang, M. B. Dickman, Donald F. Becker
Department of Biochemistry: Faculty Publications
Background: Proline is an important amino acid for stress resistance in different organisms.
Results: Depletion of proline biosynthesis disrupts redox homeostasis and increases sensitivity to endoplasmic reticulum (ER) stress in yeast.
Conclusion: Proline biosynthesis is critical for maintaining the intracellular redox environment and the UPR during ER stress.
Significance: Proline metabolism is shown to have an important role in ER stress tolerance that was previously unknown.
Emerging Roles For Hyaluronidase In Cancer Metastasis And Therapy,
2014
University of Nebraska-Lincoln
Emerging Roles For Hyaluronidase In Cancer Metastasis And Therapy, Caitlin O. Mcatee, Joseph J. Barycki, Melanie A. Simpson
Department of Biochemistry: Faculty Publications
Hyaluronidases are a family of five human enzymes that have been differentially implicated in the progression of many solid tumor types, both clinically and in functional studies. Advances in the past five years have clarified many apparent contradictions, (1) by demonstrating that specific hyaluronidases have alternative substrates to hyaluronan (HA) or do not exhibit any enzymatic activity, (2) that high molecular weight HA polymers elicit signaling effects that are opposite those of the hyaluronidase-digested HA oligomers, and (3) that it is actually the combined overexpression of HA synthesizing enzymes with hyaluronidases that confers tumorigenic potential. This review examines the literature …
Pharmacokinetic And Biodistribution Assessment Of A Near
Infrared-Labeled Psma-Specific Small Molecule In
Tumor-Bearing Mice,
2014
LI-COR Biosciences
Pharmacokinetic And Biodistribution Assessment Of A Near Infrared-Labeled Psma-Specific Small Molecule In Tumor-Bearing Mice, Joy L. Kovar, Lael L. Cheung, Melanie A. Simpson, D. Michael Olive
Department of Biochemistry: Faculty Publications
Prostate cancer is themost frequently diagnosed cancer in men and often requires surgery. Use of near infrared (NIR) technologies to perform image-guided surgery may improve accurate delineation of tumor margins. To facilitate preclinical testing of such outcomes, here we developed and characterized a PSMA-targeted small molecule, YC-27. IRDye 800CW was conjugated to YC-27 or an anti-PSMA antibody used for reference. Human 22Rv1, PC3M-LN4, and/or LNCaP prostate tumor cells were exposed to the labeled compounds. In vivo targeting and clearance properties were determined in tumor-bearing mice. Organs and tumors were excised and imaged to assess probe localization. YC-27 exhibited a dose …
Arabidopsis Cuticular Wax Biosynthesis Is Negatively
Regulated By The Dewax Gene Encoding An Ap2/Erf-Type Transcription Factor,
2014
Chonnam National University
Arabidopsis Cuticular Wax Biosynthesis Is Negatively Regulated By The Dewax Gene Encoding An Ap2/Erf-Type Transcription Factor, Young Sam Go, Hyojin Kim, Hae Jin Kim, Mi Chung Suh
Department of Biochemistry: Faculty Publications
The aerial parts of plants are protected from desiccation and other stress by surface cuticular waxes. The total cuticular wax loads and the expression of wax biosynthetic genes are significantly downregulated in Arabidopsis thaliana under dark conditions. We isolated Decrease Wax Biosynthesis (DEWAX), which encodes an AP2/ERF-type transcription factor that is preferentially expressed in the epidermis and induced by darkness. Disruption of DEWAX leads to an increase in total leaf and stem wax loads, and the excess wax phenotype of dewax was restored to wild type levels in complementation lines. Moreover, overexpression of DEWAX resulted in a reduction …
Plant Acyl-Coa:Lysophosphatidylcholine Acyltransferases
(Lpcats) Have Different Specificities In Their Forward And
Reverse Reactions,
2014
Swedish University of Agricultural Sciences
Plant Acyl-Coa:Lysophosphatidylcholine Acyltransferases (Lpcats) Have Different Specificities In Their Forward And Reverse Reactions, Ida Lager, Jenny Lindberg Yilmaz, Xue-Rong Zhou, Katarzyna Jasieniecka, Michael Kazachkov, Peng Wang, Jitao Zou, Randall Weselake, Mark A. Smith, Shen Bayon, John M. Dyer, Jay Shockey, Ernst Heinz, Allan Green, Antoni Banas, Sten Stymne
Department of Biochemistry: Faculty Publications
Background: Acyl-CoA:lysophosphatidylcholine acyltransferase (LPCAT) enzymes have central roles in acyl editing of phosphatidylcholine.
Results: Plant LPCATs were expressed in yeast and biochemically characterized.
Conclusion: LPCATs can edit acyl composition of phosphatidylcholine through their combined forward and reverse reactions.
Significance: Plant LPCATs play a role in editing both sn-positions of PC and remove ricinoleic acid with high selectivity from this lipid.
Preliminary Joint X-Ray And Neutron Protein
Crystallographic Studies Of Ecdhfr Complexed With
Folate And Nadp+,
2014
Yangzhou University
Preliminary Joint X-Ray And Neutron Protein Crystallographic Studies Of Ecdhfr Complexed With Folate And Nadp+, Qun Wan, Audrey Y. Kovalevsky, Mark A. Wilson, Brad C. Bennett, Paul Langan, Chris Dealwis
Department of Biochemistry: Faculty Publications
A crystal of Escherichia coli dihydrofolate reductase (ecDHFR) complexed with folate and NADP+ of 4 x 1.3 x 0.7 mm (3.6 mm3) in size was obtained by sequential application of microseeding and macroseeding. A neutron diffraction data set was collected to 2.0 A resolution using the IMAGINE diffractometer at the High Flux Isotope Reactor within Oak Ridge National Laboratory. A 1.6 A resolution X-ray data set was also collected from a smaller crystal at room temperature. The neutron and X-ray data were used together for joint refinement of the ecDHFR–folate–NADP+ ternary-complex structure in order to examine …
Estimating The Frequency Of Cry1f Resistance In Field Populations Of The European Corn Borer (Lepidoptera: Crambidae),
2014
University of Nebraska-Lincoln
Estimating The Frequency Of Cry1f Resistance In Field Populations Of The European Corn Borer (Lepidoptera: Crambidae), Blair D. Siegfried, Murugesan Rangasamy, Haichuan Wang, Terence A. Spencer, Chirakkal V. Haridas, Brigitte Tenhumberg, Douglas V. Sumerford, Nicholas P. Storer
School of Biological Sciences: Faculty Publications
Background: Transgenic corn hybrids that express toxins from Bacillus thuringiensis (Bt) have suppressed European corn borer populations and reduced the pest status of this insect throughout much of the US corn belt. A major assumption of the high-dose/refuge strategy proposed for insect resistance management and Bt corn is that the frequency of resistance alleles is low so that resistant pests surviving exposure to Bt corn will be rare. Results: The frequency of resistance to the Cry1F Bt toxin was estimated using two different screening tools and compared with annual susceptibility monitoring based on diagnostic bioassays and LC50 …
Protein/Protein Interactions In The Mammalian Heme
Degradation Pathway
Heme Oxygenase-2, Cytochrome P450 Reductase, And Biliverdin Reductase,
2014
University of Michigan, Ann Arbor
Protein/Protein Interactions In The Mammalian Heme Degradation Pathway Heme Oxygenase-2, Cytochrome P450 Reductase, And Biliverdin Reductase, Andrea L. M. Spencer, Ireena Bagai, Donald F. Becker, Erik R. P. Zuiderweg, Stephen W. Ragsdale
Department of Biochemistry: Faculty Publications
Background: Heme oxygenase, cytochrome P450 reductase, and biliverdin reductase are the key enzymes in heme degradation.
Results: Specific electrostatic and hydrophobic interactions form the binding interface between heme oxygenase and cytochrome P450 reductase. Conclusion: Heme oxygenase binds cytochrome P450 reductase dynamically and biliverdin reductase very weakly.
Significance: Characterizing interactions among proteins involved in heme degradation are crucial to understanding heme homeostasis.
Emerging Regulatory Paradigms In Glutathione Metabolism,
2014
University of Nebraska-Lincoln
Emerging Regulatory Paradigms In Glutathione Metabolism, Yilin Liu, Annastasia S. Hyde, Melanie A. Simpson, Joseph J. Barycki
Department of Biochemistry: Faculty Publications
One of the hallmarks of cancer is the ability to generate and withstand unusual levels of oxidative stress. In part, this property of tumor cells is conferred by elevation of the cellular redox buffer glutathione. Though enzymes of the glutathione synthesis and salvage pathways have been characterized for several decades, we still lack a comprehensive understanding of their independent and coordinate regulatory mechanisms. Recent studies have further revealed that overall central metabolic pathways are frequently altered in various tumor types, resulting in significant increases in biosynthetic capacity, and feeding into glutathione synthesis. In this review, we will discuss the enzymes …
Ycf1-Mediated Cadmium Resistance In Yeast
Is Dependent On Copper Metabolism And
Antioxidant Enzymes,
2014
University of Nebraska at Lincoln
Ycf1-Mediated Cadmium Resistance In Yeast Is Dependent On Copper Metabolism And Antioxidant Enzymes, Wenzhong Wei, Nathan Smith, Xiaobin Wu, Heejeong Kim, Javier Seravalli, Oleh Khalimonchuk, Jaekwon Lee
Department of Biochemistry: Faculty Publications
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the requirement of metallochaperones in cellular copper distribution and metallation of cuproproteins, this study investigates whether the metallochaperones also deliver metal ions for transporters functioning in metal detoxification. Results: Resistance to excess cadmium and copper of the yeast Saccharomyces cerevisiae, which is conferred by PCA1 and CaCRP1 metal efflux P-type ATPases, respectively, does not rely on known metallochaperones, Atx1p, Ccs1p, and Cox17p. Copper deficiency induced by the expression of CaCRP1 encoding a copper exporter occurs in the absence of Atx1p. Intriguingly, CCS1 encoding the copper chaperone for superoxide …
Integrating Mitosis, Toxicity, And Transgene Expression
In A Telecommunications Packet-Switched Network
Model Of Lipoplex-Mediated Gene Delivery,
2014
University of Nebraska-Lincoln
Integrating Mitosis, Toxicity, And Transgene Expression In A Telecommunications Packet-Switched Network Model Of Lipoplex-Mediated Gene Delivery, Timothy M. Martin, Beata Wysocki, Jared P. Beyersdorf, Tadeusz A. Wysocki, Angela K. Pannier
Department of Agricultural and Biological Systems Engineering: Faculty Publications
Gene delivery systems transport exogenous genetic information to cells or biological systems with the potential to directly alter endogenous gene expression and behavior with applications in functional genomics, tissue engineering, medical devices, and gene therapy. Nonviral systems offer advantages over viral systems because of their low immunogenicity, inexpensive synthesis, and easy modification but suffer from lower transfection levels. The representation of gene transfer using models offers perspective and interpretation of complex cellular mechanisms, including nonviral gene delivery where exact mechanisms are unknown. Here, we introduce a novel telecommunications model of the nonviral gene delivery process in which the delivery of …
Characterization Of Bacteriophage Specific To Non-Agglutinable Vibrio Cholerae,
2014
Faculty of Science
Characterization Of Bacteriophage Specific To Non-Agglutinable Vibrio Cholerae, Dulyapat Benyajirapatch
Chulalongkorn University Theses and Dissertations (Chula ETD)
Vibrio spp. the main bacteria found in marine shrimp can cause diseases either in shrimp or human. Using antibiotics is a first option to reduce this problem. Unfortunately, this treatment has no sufficient potential due to antibiotic resistance can occur after long term of use. Therefore, bacteriophage has become a better alternative to control Vibrio spp. in shrimp. In this study, 100 isolates of Vibrio spp. were screened and isolated from Pacific white shrimp Litopaeneus vannamei and cultured water from shrimp hatcheries and ponds. The suspected Vibrio spp. were determined and classified into 5 species including V. cholerae, V. parahaemolyticus, …
Production And Characterization Of Monoclonal Antibodies Against Listeria Monocytogenes,
2014
Faculty of Science
Production And Characterization Of Monoclonal Antibodies Against Listeria Monocytogenes, Korrakot Prommajan
Chulalongkorn University Theses and Dissertations (Chula ETD)
Listeria monocytogenes contaminated in foods is a bacteria that can cause Listeriosis in human and animals. Detection of this bacteria in food products is required in order to reduce the opportunity of infection and increases consumers’ trust on taking food safely. Diagnostic based on immunological method with monoclonal antibody (MAb) specific to pathogen is accurate and precise. The objective of this research was to produce MAbs against L. monocytogenes NCTC 11994 and EGD-e strains by immunization mice with heat-inactivated, sonicated- and SDS-mercaptoethanol treated forms. After cell fusion 21 of hybridoma were obtained. MAbs reacted crossly with some Listeria spp. and …
Purification And Characterization Of A Novel Selenocysteine Lyase From Enterococcus Faecalis,
2014
University of Central Florida
Purification And Characterization Of A Novel Selenocysteine Lyase From Enterococcus Faecalis, Samantha Nelson
Electronic Theses and Dissertations
A previous study identified Enterococcus faecalis as one of two bacteria known to have the selD gene and other selenium related genes without having the genes necessary to make selenocysteine or selenouridine. EF2570, a gene in the cluster, was later shown to be upregulated during biofilm formation and also responsible for a selenite- and molybdate-dependent increase in biofilm formation in vitro. The protein encoded was identified as a selenium dependent molybdenum hydroxylase (SDMH), enzymes that contain a labile selenium atom required for activity. While the process of inserting selenocysteine into a protein is well known, the process by which a …
The Anti-Toxin Properties Of Grape Seed Phenolic Compounds,
2014
University of Central Florida
The Anti-Toxin Properties Of Grape Seed Phenolic Compounds, Patrick Cherubin
Electronic Theses and Dissertations
Corynebacterium diphtheriae, Pseudomonas aeruginosa, Ricinus communis, Shigella dysentariae, and Vibrio cholerae produce AB toxins which share the same basic structural characteristics: a catalytic A subunit attached to a cell-binding B subunit. All AB toxins have cytosolic targets despite an initial extracellular location. AB toxins use different methods to reach the cytosol and have different effects on the target cell. Broad-spectrum inhibitors against these toxins are therefore hard to develop because they use different surface receptors, entry mechanisms, enzyme activities, and cytosolic targets. We have found that grape seed extract provides resistance to five different AB toxins: diphtheria toxin (DT), P. …
Comparative Analyses Of Three Chlorella Species In
Response To Light And Sugar Reveal Distinctive Lipid
Accumulation Patterns In The Microalga C. Sorokiniana,
2014
Johns Hopkins University
Comparative Analyses Of Three Chlorella Species In Response To Light And Sugar Reveal Distinctive Lipid Accumulation Patterns In The Microalga C. Sorokiniana, Julian N. Rosenberg, Naoko Kobayashi, Austin Barnes, Eric A. Noel, Michael J. Betenbaugh, George A. Oyler
Department of Biochemistry: Faculty Publications
While photosynthetic microalgae, such as Chlorella, serve as feedstocks for nutritional oils and biofuels, heterotrophic cultivation can augment growth rates, support high cell densities, and increase triacylglycerol (TAG) lipid content. However, these species differ significantly in their photoautotrophic and heterotrophic characteristics. In this study, the phylogeny of thirty Chlorella strains was determined in order to inform bioprospecting efforts and detailed physiological assessment of three species. The growth kinetics and lipid biochemistry of C. protothecoides UTEX 411, C. vulgaris UTEX 265, and C. sorokiniana UTEX 1230 were quantified during photoautotrophy in Bold’s basal medium (BBM) and heterotrophy in BBM supplemented …
