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Department of Biochemistry: Faculty Publications

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Articles 421 - 450 of 592

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Modulation Of The Heme Electronic Structure And Cystathionine Β-Synthase Activity By Second Coordination Sphere Ligands: The Role Of Heme Ligand Switching In Redox Regulation, Sangita Singh, Peter Madzelan, Jay Stasser, Colin L. Weeks, Donald F. Becker, Thomas G. Spiro, James Penner-Hahn, Ruma Banerjee Jan 2009

Modulation Of The Heme Electronic Structure And Cystathionine Β-Synthase Activity By Second Coordination Sphere Ligands: The Role Of Heme Ligand Switching In Redox Regulation, Sangita Singh, Peter Madzelan, Jay Stasser, Colin L. Weeks, Donald F. Becker, Thomas G. Spiro, James Penner-Hahn, Ruma Banerjee

Department of Biochemistry: Faculty Publications

In humans, cystathionine β-synthase (CBS) is a hemeprotein, which catalyzes a pyridoxal phosphate (PLP)-dependent condensation reaction. Changes in the heme environment are communicated to the active site, which is ~20 Å away. In this study, we have examined the role of H67 and R266, which are in the second coordination sphere of the heme ligands, H65 and C52 respectively, in modulating the heme's electronic properties and in transmitting information between the heme and active sites. While the H67A mutation is comparable to wild-type CBS, interesting differences are revealed by mutations at the R266 site. The pathogenic mutant, R266K, is moderately …


Heme Regulation Of Human Cystathionine Β-Synthase Activity: Insights From Fluorescence And Raman Spectroscopy, Colin L. Weeks, Sangita Singh, Peter Madzelan, Ruma Banerjee, Thomas G. Spiro Jan 2009

Heme Regulation Of Human Cystathionine Β-Synthase Activity: Insights From Fluorescence And Raman Spectroscopy, Colin L. Weeks, Sangita Singh, Peter Madzelan, Ruma Banerjee, Thomas G. Spiro

Department of Biochemistry: Faculty Publications

Cystathionine β-synthase (CBS) plays a central role in cysteine metabolism, and malfunction of the enzyme leads to homocystinuria, a devastating metabolic disease. CBS contains a pyridoxal 5′- phosphate (PLP) cofactor which catalyzes the synthesis of cystathionine from homocysteine and serine. Mammalian forms of the enzyme also contain a heme group, which is not involved in catalysis. It may, however, play a regulatory role, since the enzyme is inhibited when CO or NO are bound to the heme. We have investigated the mechanism of this inhibition using fluorescence and resonance Raman spectroscopies. CO binding is found to induce a tautomeric shift …


Cadmium-Mediated Rescue From Er-Associated Degradation Induces Expression Of Its Exporter, David J. Adle, Wenzhong Wel, Nathan Smith, Joshua J. Bles, Jaekwon Lee Jan 2009

Cadmium-Mediated Rescue From Er-Associated Degradation Induces Expression Of Its Exporter, David J. Adle, Wenzhong Wel, Nathan Smith, Joshua J. Bles, Jaekwon Lee

Department of Biochemistry: Faculty Publications

Cadmium is a highly toxic environmental contaminant that has been implicated in various disorders. A major mechanism for cadmium detoxification in the yeast Saccharomyces cerevisiae relies on extrusion via Pca1, a P-type ATPase. While an N-terminal degron targets Pca1 for degradation before its secretion to the plasma membrane, cadmium in the growth media rapidly upregulates Pca1 by preventing its turnover. Here we show that the endoplasmic reticulum-associated degradation (ERAD) system, known for its role in quality control of secretory proteins, is unexpectedly responsible for the regulation of Pca1 expression by cadmium. Direct cadmium sensing at the ER by a degron …


Crystal Structure Of Acivicin-Inhibited Γ-Glutamyltranspeptidase Reveals Critical Roles For Its C-Terminus In Autoprocessing And Catalysis, Kristin Williams, Sierra Cullati, Aaron Sand, Ekaterina I. Biterova, Joseph J. Barycki Jan 2009

Crystal Structure Of Acivicin-Inhibited Γ-Glutamyltranspeptidase Reveals Critical Roles For Its C-Terminus In Autoprocessing And Catalysis, Kristin Williams, Sierra Cullati, Aaron Sand, Ekaterina I. Biterova, Joseph J. Barycki

Department of Biochemistry: Faculty Publications

Helicobacter pylori γ-glutamyltranspeptidase (HpGT) is a general γ-glutamyl hydrolase and a

demonstrated virulence factor. The enzyme confers a growth advantage to the bacterium, providing essential amino acid precursors by initiating the degradation of extracellular glutathione and glutamine. HpGT is a member of the N-terminal nucleophile (Ntn) hydrolase superfamily and undergoes autoprocessing to generate the active form of the enzyme. Acivicin is a widely used γ-glutamyltranspeptidase inhibitor that covalently modifies the enzyme, but its precise mechanism of action remains unclear. The time-dependent inactivation of HpGT exhibits a hyperbolic dependence on acivicin concentration with kmax = 0.033 ± 0.006 sec1 …


Characterization And Performance Of A Near-Infrared 2-Deoxyglucose Optical Imaging Agent For Mouse Cancer Models, Joy L. Kovar, William Volcheck, Eva Sevick-Muraca, Melanie A. Simpson, D. Michael Olive Jan 2009

Characterization And Performance Of A Near-Infrared 2-Deoxyglucose Optical Imaging Agent For Mouse Cancer Models, Joy L. Kovar, William Volcheck, Eva Sevick-Muraca, Melanie A. Simpson, D. Michael Olive

Department of Biochemistry: Faculty Publications

Malignant neoplasms exhibit an elevated rate of glycolysis over normal cells. This characteristic can be exploited for optical imaging of tumors in mice. A near-infrared fluorophore, IRDye 800CW, emission maximum 794 nm, was conjugated to 2-deoxyglucose (2-DG). An immunofluorescent cell-based assay was used to evaluate specificity and sensitivity of the conjugate in cultured cell monolayers. Dose-dependent uptake was established with increasing concentrations of IRDye 800CW 2-DG for epithelial and prostate carcinomas. IRDye 800CW 2-DG was specifically blocked by an antibody against GLUT1 glucose transporter, and by excess unlabeled 2-DG or d-glucose. Signal was increased by a phorbol ester activator of …


Hyaluronan-Binding Proteoglycans, Ed Harris, Paul H. Weigel Jan 2009

Hyaluronan-Binding Proteoglycans, Ed Harris, Paul H. Weigel

Department of Biochemistry: Faculty Publications

Molecular components of the extracellular matrix (ECM) are critical for matrix stabilization, cellular differentiation, and tissue morphogenesis. Once thought to function only as the extracellular glue that primarily binds cells together, proteoglycans in the ECM carry out a diverse array of activities and can be grouped into five functionally based families: (i) hyalectins (lecticans), which contain lectin-like carbohydrate-recognition domains (CRDs) and bind hyaluronan (HA); (ii) heparan sulfate (HS) proteoglycans that sequester growth factors via their HS chains; (iii) small leucine-rich proteoglycans (SLRPs) containing leucine-rich domains that interact with collagens and other ECM proteins; (iv) phosphacans that function primarily as receptor-like …


Functional Aspects Of The Hyaluronan And Chondroitin Sulfate Receptors, Ed Harris, Paul H. Weigel Jan 2009

Functional Aspects Of The Hyaluronan And Chondroitin Sulfate Receptors, Ed Harris, Paul H. Weigel

Department of Biochemistry: Faculty Publications

Glycosaminoglycans (GAGs) are distinct from other sugars/oligosaccharides in that they are polymers of disaccharide units composed of an amino sugar, N-acetylglucosamine (GlcNAc), or N-acetylgalactosamine (GalNAc), and uronic acid, glucuronic acid (GlcUA), or iduronic acid (IdUA). The exception is keratan sulfate (KS) in which the uronic acid is replaced by the neutral sugar galactose. Initially, GAGs were thought to be just part of an extracellular glue or ground substance that held tissues together and provided a liquid-like space between cells for the transport of nutrients. However, research using new technologies and techniques over the last two decades has revealed that the …


Polyploidy Creates Higher Diversity Among Cynodon Accessions As Assessed By Molecular Markers, Osman Gulsen, Songul Sever-Mutlu, Nedim Mutlu, Metin Tuna, Osman Karaguzel, Robert C. Shearman, Terrance P. Riordan, Tiffany M. Heng-Moss Jan 2009

Polyploidy Creates Higher Diversity Among Cynodon Accessions As Assessed By Molecular Markers, Osman Gulsen, Songul Sever-Mutlu, Nedim Mutlu, Metin Tuna, Osman Karaguzel, Robert C. Shearman, Terrance P. Riordan, Tiffany M. Heng-Moss

Department of Biochemistry: Faculty Publications

Developing a better understanding of associations among ploidy level, geographic distribution, and genetic diversity of Cynodon accessions could be beneficial to bermudagrass breeding programs, and would enhance our understanding of the evolutionary biology of this warm season grass species. This study was initiated to: (1) determine ploidy analysis of Cynodon accessions collected from Turkey, (2) investigate associations between ploidy level and diversity, (3) determine whether geographic and ploidy distribution are related to nuclear genome variation, and (4) correlate among four nuclear molecular marker systems for Cynodon accessions’ genetic analyses. One hundred and eighty-two Cynodon accessions collected in Turkey from an …


Copper Transport Into The Secretory Pathway Is Regulated By Oxygen In Macrophages, Carine White, Taiho Kambe, Yan G. Fulcher, Sherri W. Sachdev, Ashley I. Bush, Kevin Fritsche, Jaekwon Lee, Thomas P. Quinn, Michael J. Petris Jan 2009

Copper Transport Into The Secretory Pathway Is Regulated By Oxygen In Macrophages, Carine White, Taiho Kambe, Yan G. Fulcher, Sherri W. Sachdev, Ashley I. Bush, Kevin Fritsche, Jaekwon Lee, Thomas P. Quinn, Michael J. Petris

Department of Biochemistry: Faculty Publications

Copper is an essential nutrient for a variety of biochemical processes; however, the redox properties of copper also make it potentially toxic in the free form. Consequently, the uptake and intracellular distribution of this metal is strictly regulated. This raises the issue of whether specific pathophysiological conditions can promote adaptive changes in intracellular copper distribution. In this study, we demonstrate that oxygen limitation promotes a series of striking alterations in copper homeostasis in RAW264.7 macrophage cells. Hypoxia was found to stimulate copper uptake and to increase the expression of the copper importer, CTR1. This resulted in increased copper delivery to …


Targeting The Fatty Acid Transport Proteins (Fatp) To Understand The Mechanisms Linking Fatty Acid Transport To Metabolism, Paul N. Black, Angel Sandoval, Elsa Arias-Barrau, Concetta C. Dirusso Jan 2009

Targeting The Fatty Acid Transport Proteins (Fatp) To Understand The Mechanisms Linking Fatty Acid Transport To Metabolism, Paul N. Black, Angel Sandoval, Elsa Arias-Barrau, Concetta C. Dirusso

Department of Biochemistry: Faculty Publications

One principal process driving fatty acid transport is vectorial acylation, where fatty acids traverse the membrane concomitant with activation to CoA thioesters. Current evidence is consistent with the proposal that specific fatty acid transport (FATP) isoforms alone or in concert with specific long chain acyl CoA synthetase (Acsl) isoforms function to drive this energy-dependent process. Understanding the details of vectorial acylation is of particular importance as disturbances in lipid metabolism many times leads to elevated levels of circulating free fatty acids, which in turn increases fatty acid internalization and ectopic accumulation of triglycerides. This is associated with changes in fatty …


Glucose Promotes Stress Resistance In The Fungal Pathogen Candida Albicans, Alexandra Rodaki, Iryna M. Bohovych, Brice Enjalbert, Tim Young, Frank C. Odds, Neil A.R. Gow, Alistair J.P. Brown Jan 2009

Glucose Promotes Stress Resistance In The Fungal Pathogen Candida Albicans, Alexandra Rodaki, Iryna M. Bohovych, Brice Enjalbert, Tim Young, Frank C. Odds, Neil A.R. Gow, Alistair J.P. Brown

Department of Biochemistry: Faculty Publications

Metabolic adaptation, and in particular the modulation of carbon assimilatory pathways during disease progression, is thought to contribute to the pathogenicity of Candida albicans. Therefore, we have examined the global impact of glucose upon the C. albicans transcriptome, testing the sensitivity of this pathogen to wide-ranging glucose levels (0.01, 0.1, and 1.0%). We show that, like Saccharomyces cerevisiae, C. albicans is exquisitely sensitive to glucose, regulating central metabolic genes even in response to 0.01% glucose. This indicates that glucose concentrations in the bloodstream (approximate range 0.05–0.1%) have a significant impact upon C. albicans gene regulation. However, in contrast …


A Role For The Atp7a Copper-Transporting Atpase In Macrophage Bactericidal Activity, Carine White, Jaekwon Lee, Taiho Kambe, Kevin Fritsche, Michael J. Petris Jan 2009

A Role For The Atp7a Copper-Transporting Atpase In Macrophage Bactericidal Activity, Carine White, Jaekwon Lee, Taiho Kambe, Kevin Fritsche, Michael J. Petris

Department of Biochemistry: Faculty Publications

Copper is an essential micronutrient that is necessary for healthy immune function. This requirement is underscored by an increased susceptibility to bacterial infection in copper-deficient animals; however, a molecular understanding of its importance in immune defense is unknown. In this study, we investigated the effect of proinflammatory agents on copper homeostasis in RAW264.7 macrophages. Interferon-γ was found to increase expression of the high affinity copper importer, CTR1, and stimulate copper uptake. This was accompanied by copper-stimulated trafficking of the ATP7A copper exporter from the Golgi to vesicles that partially overlapped with phagosomal compartments. Silencing of ATP7A expression attenuated bacterial killing, …


Copper Transport Activity Of Yeast Ctr1 Is Down-Regulated Via Its C Terminus In Response To Excess Copper, Xiaobin Wu, Devis Sinani, Heejeong Kim, Jaekwon Lee Jan 2009

Copper Transport Activity Of Yeast Ctr1 Is Down-Regulated Via Its C Terminus In Response To Excess Copper, Xiaobin Wu, Devis Sinani, Heejeong Kim, Jaekwon Lee

Department of Biochemistry: Faculty Publications

Copper is an essential yet toxic trace element. The Ctr1 family of proteins plays a critical role for copper uptake in eukaryotes. However, the mechanisms of action of Ctr1 are largely unknown. Our previous data demonstrated that copper transport induces conformational changes in the cytosolic C terminus of the yeast Saccharomyces cerevisiae Ctr1. To define the physiological significance of this molecular event and gain better insights into the mechanism of Ctr1-mediated copper uptake, we have characterized the functional roles of the Ctr1 C terminus.ACtr1 mutant lacking the entire C-terminal cytosolic tail is functional in high affinity copper uptake; however, yeast …


Contribution Of Impaired Myocardial Insulin Signaling To Mitochondrial Dysfunction And Oxidative Stress In The Heart, Sihem Boudina, Heiko Bugger, Sandra Sena, Brian T. O'Neill, Vlad G. Zaha, Olesya Ilkun, Jordan J. Wright, Pradip K. Mazumber, Eric Palfreyman, Timothy J. Tidwell, Heather Theobald, Oleh Khalimonchuk, Benjamin Wayment, Xiaoming Sheng, Kenneth J. Rodnick, Ryan Centini, Dong Chen, Sheldon E. Litwin, Bart E. Weimer, E. Dale Abel Jan 2009

Contribution Of Impaired Myocardial Insulin Signaling To Mitochondrial Dysfunction And Oxidative Stress In The Heart, Sihem Boudina, Heiko Bugger, Sandra Sena, Brian T. O'Neill, Vlad G. Zaha, Olesya Ilkun, Jordan J. Wright, Pradip K. Mazumber, Eric Palfreyman, Timothy J. Tidwell, Heather Theobald, Oleh Khalimonchuk, Benjamin Wayment, Xiaoming Sheng, Kenneth J. Rodnick, Ryan Centini, Dong Chen, Sheldon E. Litwin, Bart E. Weimer, E. Dale Abel

Department of Biochemistry: Faculty Publications

Background—Diabetes-associated cardiac dysfunction is associated with mitochondrial dysfunction and oxidative stress, which may contribute to LV dysfunction. The contribution of altered myocardial insulin action, independently of associated changes in systemic metabolism is incompletely understood. The present study tested the hypothesis that perinatal loss of insulin signaling in the heart impairs mitochondrial function.

Methods and Results—In 8-week-old mice with cardiomyocyte deletion of insulin receptors (CIRKO), inotropic reserves were reduced and mitochondria manifested respiratory defects for pyruvate that was associated with proportionate reductions in catalytic subunits of pyruvate dehydrogenase. Progressive age-dependent defects in oxygen consumption and ATP synthesis with the substrates glutamate …


Sdh5, A Gene Required For Flavination Of Succinate Dehydrogenase, Is Mutated In Paraganglioma, Huai-Xiang Hao, Oleh Khalimonchuk, Margit Schraders, Noah Dephoure, Jean-Pierre Bayley, Henricus Kunst, Peter Devilee, Cor W.R.J. Cremers, Joshua D. Schiffman, Brandon G. Bentz, Steven P. Gygi, Dennis R. Winge, Hannie Kremer, Jared Rutter Jan 2009

Sdh5, A Gene Required For Flavination Of Succinate Dehydrogenase, Is Mutated In Paraganglioma, Huai-Xiang Hao, Oleh Khalimonchuk, Margit Schraders, Noah Dephoure, Jean-Pierre Bayley, Henricus Kunst, Peter Devilee, Cor W.R.J. Cremers, Joshua D. Schiffman, Brandon G. Bentz, Steven P. Gygi, Dennis R. Winge, Hannie Kremer, Jared Rutter

Department of Biochemistry: Faculty Publications

Mammalian mitochondria contain about 1100 proteins, nearly 300 of which are uncharacterized. Given the well-established role of mitochondrial defects in human disease, functional characterization of these proteins may shed new light on disease mechanisms. Starting with yeast as a model system, we investigated an uncharacterized but highly conserved mitochondrial protein (named here Sdh5). Both yeast and human Sdh5 interact with the catalytic subunit of the succinate dehydrogenase (SDH) complex, a component of both the electron transport chain and the tricarboxylic acid cycle. Sdh5 is required for SDH-dependent respiration and for Sdh1 flavination (incorporation of the flavin adenine dinucleotide cofactor). Germline …


Chemchains: A Platform For Simulation And Analysis Of Biochemical Networks Aimed To Laboratory Scientists, Tomáš Helikar, Jim A. Rogers Jan 2009

Chemchains: A Platform For Simulation And Analysis Of Biochemical Networks Aimed To Laboratory Scientists, Tomáš Helikar, Jim A. Rogers

Department of Biochemistry: Faculty Publications

Background: New mathematical models of complex biological structures and computer simulation software allow modelers to simulate and analyze biochemical systems in silico and form mathematical predictions. Due to this potential predictive ability, the use of these models and software has the possibility to compliment laboratory investigations and help refine, or even develop, new hypotheses. However, the existing mathematical modeling techniques and simulation tools are often difficult to use by laboratory biologists without training in high-level mathematics, limiting their use to trained modelers.

Results: We have developed a Boolean network-based simulation and analysis software tool, ChemChains, which combines the advantages of …


Ulk-Atg13-Fip200 Complexes Mediate Mtor Signaling To The Autophagy Machinery, Chang Hwa Jung, Chang Bong Jun, Seung-Hyun Ro, Young-Mi Kim, Neil Michael Otto, Jing Cao, Mondira Kundu, Do-Hyung Kim Jan 2009

Ulk-Atg13-Fip200 Complexes Mediate Mtor Signaling To The Autophagy Machinery, Chang Hwa Jung, Chang Bong Jun, Seung-Hyun Ro, Young-Mi Kim, Neil Michael Otto, Jing Cao, Mondira Kundu, Do-Hyung Kim

Department of Biochemistry: Faculty Publications

Autophagy, the starvation-induced degradation of bulky cytosolic components, is up-regulated in mammalian cells when nutrient supplies are limited. Although mammalian target of rapamycin (mTOR) is known as the key regulator of autophagy induction, the mechanism by which mTOR regulates autophagy has remained elusive. Here, we identify that mTOR phosphorylates a mammalian homologue of Atg13 and the mammalian Atg1 homologues ULK1 and ULK2. The mammalian Atg13 binds both ULK1 and ULK2 and mediates the interaction of the ULK proteins with FIP200. The binding of Atg13 stabilizes and activates ULK and facilitates the phosphorylation of FIP200 by ULK, whereas knockdown of Atg13 …


Editorial: Dietary Lipid Absorption, Concetta Dirusso, Paul N. Black Jan 2009

Editorial: Dietary Lipid Absorption, Concetta Dirusso, Paul N. Black

Department of Biochemistry: Faculty Publications

The composition of dietary fat influences tissue fatty acid composition, which in turn impacts cellular function through a number of different processes. This includes changes in signaling, lipid metabolism, and transcriptional activities that normally function to maintain intracellular fatty acid homeostasis. The consumption of high levels of dietary fat in excess of caloric expenditure is linked with obesity and the disruption of normal homeostatic mechanisms governing lipid metabolism. Data from the Centers for Disease Control and Prevention show that obesity (defined as a BMI≥30) represents a considerable health concern in the United States. Of particular note is that for adult …


Expressional Control Of A Cadmium-Transporting P1b-Type Atpase By A Metal Sensing Degradation Signal, David J. Adle, Jaekwon Lee Nov 2008

Expressional Control Of A Cadmium-Transporting P1b-Type Atpase By A Metal Sensing Degradation Signal, David J. Adle, Jaekwon Lee

Department of Biochemistry: Faculty Publications

Cadmium is a highly toxic environmental contaminant implicated in various diseases. Our previous data demonstrated that Pca1, a P1B-type ATPase, plays a critical role in cadmium resistance in yeast S. cerevisiae by extruding intracellular cadmium. This illustrates the first cadmium-specific efflux pump in eukaryotes. In response to cadmium, yeast cells rapidly enhance expression of Pca1 by a post-transcriptional mechanism. To gain mechanistic insights into the cadmium-dependent control of Pca1 expression, we have characterized the pathway for Pca1 turnover and the mechanism of cadmium sensing that leads to up-regulation of Pca1. Pca1 is a short-lived protein (t½ < 5 min) and is subject to ubiquitination when cells are growing in media lacking cadmium. Distinct from many plasma membrane transporters targeted to the vacuole for degradation via endocytosis, cells defective in this pathway did not stabilize Pca1. Rather, Pca1 turnover was dependent on the proteasome. These data suggest that, in the absence of cadmium, Pca1 is targeted for degradation before reaching the plasma membrane. Mapping of the N terminus of Pca1 identified a metal-responding degradation signal encompassing amino acids 250–350. Fusion of this domain to a stable protein demonstrated that it functions autonomously in a metal-responsive manner. Cadmium sensing by cysteine residues within this domain circumvents ubiquitination and degradation of Pca1. These data reveal a new mechanism for substrate-mediated control of P1B …


An Inositolphosphorylceramide Synthase Is Involved In Regulation Of Plant Programmed Cell Death Associated With Defense In Arabidopsis, Wenming Wang, Xiaohua Yang, Samantha Tangchiaburana, Roland Ndeh, Jennifer E. Markham, Yoseph Tsegaye, Teresa M. Dunn, Guo-Liang Wang, Maria Bellizzi, James F. Parsons, Danielle Morrissey, Janis E. Bravo, Daniel V. Lynch, Shunyuan Xiao Nov 2008

An Inositolphosphorylceramide Synthase Is Involved In Regulation Of Plant Programmed Cell Death Associated With Defense In Arabidopsis, Wenming Wang, Xiaohua Yang, Samantha Tangchiaburana, Roland Ndeh, Jennifer E. Markham, Yoseph Tsegaye, Teresa M. Dunn, Guo-Liang Wang, Maria Bellizzi, James F. Parsons, Danielle Morrissey, Janis E. Bravo, Daniel V. Lynch, Shunyuan Xiao

Department of Biochemistry: Faculty Publications

The Arabidopsis thaliana resistance gene RPW8 triggers the hypersensitive response (HR) to restrict powdery mildew infection via the salicylic acid–dependent signaling pathway. To further understand how RPW8 signaling is regulated, we have conducted a genetic screen to identify mutations enhancing RPW8-mediated HR-like cell death (designated erh). Here, we report the isolation and characterization of the Arabidopsis erh1 mutant, in which the At2g37940 locus is knocked out by a T-DNA insertion. Loss of function of ERH1 results in salicylic acid accumulation, enhanced transcription of RPW8 and RPW8-dependent spontaneous HR-like cell death in leaf tissues, and reduction in plant stature. …


The Very-Long-Chain Hydroxy Fatty Acyl-Coa Dehydratase Pasticcino2 Is Essential And Limiting For Plant Development, Liên Bach, Louise V. Michaelson, Richard Haslam, Yannick Bellec, Lionel Gissot, Jessica Marion, Marco Da Costa, Jean-Pierre Boutin, Martine Miquel, Frédérique Tellier, Frederic Domergue, Jennifer E. Markham, Frederic Beaudoin, Johnathan A. Napier, Jean-Denis Faure Sep 2008

The Very-Long-Chain Hydroxy Fatty Acyl-Coa Dehydratase Pasticcino2 Is Essential And Limiting For Plant Development, Liên Bach, Louise V. Michaelson, Richard Haslam, Yannick Bellec, Lionel Gissot, Jessica Marion, Marco Da Costa, Jean-Pierre Boutin, Martine Miquel, Frédérique Tellier, Frederic Domergue, Jennifer E. Markham, Frederic Beaudoin, Johnathan A. Napier, Jean-Denis Faure

Department of Biochemistry: Faculty Publications

Very-long-chain fatty acids (VLCFAs) are synthesized as acyl-CoAs by the endoplasmic reticulum-localized elongase multiprotein complex. Two Arabidopsis genes are putative homologues of the recently identified yeast 3-hydroxy-acyl-CoA dehydratase (PHS1), the third enzyme of the elongase complex. We showed that Arabidopsis PASTICCINO2 (PAS2) was able to restore phs1 cytokinesis defects and sphingolipid long chain base overaccumulation. Conversely, the expression of PHS1 was able to complement the developmental defects and the accumulation of long chain bases of the pas2–1 mutant. The pas2–1 mutant was characterized by a general reduction of VLCFA pools in seed storage triacylglycerols, cuticular waxes, …


The Cytoplasmic Domain Of The Hyaluronan Receptor For Endocytosis (Hare) Contains Multiple Endocytic Motifs Targeting Coated Pit-Mediated Internalization, Madhu S. Pandey, Ed Harris, Janet A. Weigel, Paul H. Weigel Aug 2008

The Cytoplasmic Domain Of The Hyaluronan Receptor For Endocytosis (Hare) Contains Multiple Endocytic Motifs Targeting Coated Pit-Mediated Internalization, Madhu S. Pandey, Ed Harris, Janet A. Weigel, Paul H. Weigel

Department of Biochemistry: Faculty Publications

The hyaluronic acid (HA) receptor for endocytosis (HARE) is the primary scavenger receptor for HA and chondroitin sulfates in mammals. The two human isoforms of HARE (full-length 315-kDa and a 190-kDa proteolytic cleavage product), which are type I single-pass membrane proteins, are highly expressed in sinusoidal endothelial cells of lymph nodes, liver, and spleen. Their identical HARE cytoplasmic domains contain four candidate AP-2/clathrin-mediated endocytic signaling motifs as follows: YSYFRI2485, FQHF2495, NPLY2519, and DPF2534 (315-HARE numbering). Stably transfected cells expressing 190-HARE(ΔYSYFRI), 190-HARE(ΔFQHF), or 190-HARE(ΔNPLY) (lacking Motifs 1, 2, or 3) had decreased 125I-HA …


The Ligand-Binding Profile Of Hare: Hyaluronan And Chondroitin Sulfates A, C, And D Bind To Overlapping Sites Distinct From The Sites For Heparin, Acetylated Low-Density Lipoprotein, Dermatan Sulfate, And Cs-E, Ed Harris, Paul H. Weigel Aug 2008

The Ligand-Binding Profile Of Hare: Hyaluronan And Chondroitin Sulfates A, C, And D Bind To Overlapping Sites Distinct From The Sites For Heparin, Acetylated Low-Density Lipoprotein, Dermatan Sulfate, And Cs-E, Ed Harris, Paul H. Weigel

Department of Biochemistry: Faculty Publications

Abstract The hyaluronic acid receptor for endocytosis (HARE)/ Stabilin-2 is the primary systemic scavenger receptor for hyaluronan (HA), the chondroitin sulfates (CS), dermatan sulfate (DS), and nonglycosaminoglycan (GAG) ligands such as acetylated low-density lipoprotein (AcLDL), pro-collagen propeptides, and advanced glycation end products. We recently discovered that HARE is also a systemic scavenger receptor for heparin (Hep) (Harris EN, Weigel JA, Weigel PH. 2008. The human hyaluronan receptor for endocytosis [HARE/Stabilin-2] is a systemic clearance receptor for heparin. J Biol Chem. 283:17341–17350). Our goal was to map the binding sites of eight different ligands within HARE. We used biotinylated GAGs and …


Sphingolipid Long-Chain Base Hydroxylation Is Important For Growth And Regulation Of Sphingolipid Content And Composition In Arabidopsis, Ming Chen, Jennifer E. Markham, Charles R. Dietrich, Jan G. Jaworski, Edgar B. Cahoon Jul 2008

Sphingolipid Long-Chain Base Hydroxylation Is Important For Growth And Regulation Of Sphingolipid Content And Composition In Arabidopsis, Ming Chen, Jennifer E. Markham, Charles R. Dietrich, Jan G. Jaworski, Edgar B. Cahoon

Department of Biochemistry: Faculty Publications

Sphingolipids are structural components of endomembranes and function through their metabolites as bioactive regulators of cellular processes such as programmed cell death. A characteristic feature of plant sphingolipids is their high content of trihydroxy long-chain bases (LCBs) that are produced by the LCB C-4 hydroxylase. To determine the functional significance of trihydroxy LCBs in plants, T-DNA double mutants and RNA interference suppression lines were generated for the two Arabidopsis thaliana LCB C-4 hydroxylase genes Sphingoid Base Hydroxylase1 (SBH1) and SBH2. These plants displayed reductions in growth that were dependent on the content of trihydroxy LCBs in sphingolipids. …


The Pyruvate, Orthophosphate Dikinase Regulatory Proteins Of Arabidopsis Possess A Novel, Unprecedented Ser/Thr Protein Kinase Primary Structure, Chris J. Chastain, Wenxin Xu, Kate Parsley, Gautam Sarath, Jullian Hebberd, Raymond Chollet Feb 2008

The Pyruvate, Orthophosphate Dikinase Regulatory Proteins Of Arabidopsis Possess A Novel, Unprecedented Ser/Thr Protein Kinase Primary Structure, Chris J. Chastain, Wenxin Xu, Kate Parsley, Gautam Sarath, Jullian Hebberd, Raymond Chollet

Department of Biochemistry: Faculty Publications

Pyruvate, orthophosphate dikinase (PPDK) is a ubiquitous, low-abundance metabolic enzyme of undetermined function in C3 plants. Its activity in C3 chloroplasts is light-regulated via reversible phosphorylation of an active-site Thr residue by the PPDK regulatory protein (RP), a most unusual bifunctional protein kinase (PK)/ protein phosphatase (PP). In this paper we document the molecular cloning and functional analysis of the two unique C3 RPs in Arabidopsis thaliana. The first of these, AtRP1, encodes a typical chloroplast-targeted, bifunctional C4-like RP. The second RP gene, AtRP2, encodes a monofunctional polypeptide that possesses in vitro RP-like PK activity but lacks PP activity, …


Emergent Decision-Making In Biological Signal Transduction Networks, Tomáš Helikar, John Konvalina, Jack Heidel, Jim A. Rogers Feb 2008

Emergent Decision-Making In Biological Signal Transduction Networks, Tomáš Helikar, John Konvalina, Jack Heidel, Jim A. Rogers

Department of Biochemistry: Faculty Publications

The complexity of biochemical intracellular signal transduction networks has led to speculation that the high degree of interconnectivity that exists in these networks transforms them into an information processing network. To test this hypothesis directly, a large scale model was created with the logical mechanism of each node described completely to allow simulation and dynamical analysis. Exposing the network to tens of thousands of random combinations of inputs and analyzing the combined dynamics of multiple outputs revealed a robust system capable of clustering widely varying input combinations into equivalence classes of biologically relevant cellular responses. This capability was nontrivial in …


The Hyaluronan Receptor For Endocytosis Mediates Hyaluronan-Dependent Signal Transduction Via Extracellular Signal-Regulated Kinases, Svetlana V. Kyosseva, Ed Harris, Paul H. Weigel Jan 2008

The Hyaluronan Receptor For Endocytosis Mediates Hyaluronan-Dependent Signal Transduction Via Extracellular Signal-Regulated Kinases, Svetlana V. Kyosseva, Ed Harris, Paul H. Weigel

Department of Biochemistry: Faculty Publications

The hyaluronan (HA) receptor for endocytosis (HARE) mediates the endocytotic clearance of HA and other glycosaminoglycans from lymph and blood. Two isoforms of human HARE, 315- and 190-kDa, are highly expressed in sinusoidal endothelial cells of liver, lymph node, and spleen; HARE is also in specialized cells in the eye, heart, brain, and kidney. Here we determined whether HA binding to HARE initiates intracellular signaling in Flp-In 293 cells stably expressing either the 315- and 190-kDa HARE or the 190-kDa HARE alone. HARE was co-immunoprecipitated with extracellular signal-regulated kinase 1 and 2 (ERK1/2), c-Jun N-terminal protein kinase (JNK), and p38 …


Development Of Srap, Srap-Rga, Rapd, And Scar Markers Linked With A Fusarium Wilt Resistance Gene In Eggplant, Nedim Mutlu, Filiz Hatice Boyacı, Münevver Göçmen, Kazım Abak Jan 2008

Development Of Srap, Srap-Rga, Rapd, And Scar Markers Linked With A Fusarium Wilt Resistance Gene In Eggplant, Nedim Mutlu, Filiz Hatice Boyacı, Münevver Göçmen, Kazım Abak

Department of Biochemistry: Faculty Publications

Fusarium wilt (Fusarium oxysporum Schlecht. f. sp. melongenae) is a vascular disease of eggplant (Solanum melon­gena L.). The objectives of this work were (1) to confirm the monogenic inheritance of fusarium wilt resistance in eggplant, (2) to identify molecular markers linked to this resistance, and (3) to develop SCAR markers from most informative markers. We report the tagging of the gene for resistance to fusarium wilt (FOM) in eggplant using SRAP, RGA, SRAP-RGA and RAPD markers. Analysis of segregation data confirmed the monogenic inheritance of resistance. DNA from F2 and BC1 populations of eggplant segregating for …


Functional Domains Of The Fatty Acid Transport Proteins: Studies Using Protein Chimeras, Concetta C. Dirusso, Dina Darwis, Thomas Obermeyer, Paul N. Black Jan 2008

Functional Domains Of The Fatty Acid Transport Proteins: Studies Using Protein Chimeras, Concetta C. Dirusso, Dina Darwis, Thomas Obermeyer, Paul N. Black

Department of Biochemistry: Faculty Publications

Fatty acid transport proteins (FATP) function in fatty acid trafficking pathways, several of which have been shown to participate in the transport of exogenous fatty acids into the cell. Members of this protein family also function as acyl CoA synthetases with specificity towards very long chain fatty acids or bile acids. These proteins have two identifying sequence motifs: The ATP/AMP motif, an approximately 100 amino acid segment required for ATP binding and common to members of the adenylate-forming super family of proteins, and the FATP/VLACS motif that consists of approximately 50 amino acid residues and is restricted to members of …


The Human Hyaluronan Receptor For Endocytosis (Hare/Stabilin-2) Is A Systemic Clearance Receptor For Heparin, Ed Harris, Janet A. Weigel, Paul H. Weigel Jan 2008

The Human Hyaluronan Receptor For Endocytosis (Hare/Stabilin-2) Is A Systemic Clearance Receptor For Heparin, Ed Harris, Janet A. Weigel, Paul H. Weigel

Department of Biochemistry: Faculty Publications

The hyaluronic acid receptor for endocytosis (HARE; also designated Stabilin-2) mediates systemic clearance of hyaluronan and chondroitin sulfates from the vascular and lymphatic circulations. The internalized glycosaminoglycans are degraded in lysosomes, thus completing their normal turnover process. Sinusoidal endothelial cells of human liver, lymph node, and spleen express two HARE isoforms of 315 and 190 kDa. Here we report that the 190- and 315-kDa HARE isoforms, expressed stably either in Flp-In 293 cell lines or as soluble ectodomains, specifically bind heparin (Hep). The Kd for Hep binding to purified 190- and 315-kDa HARE ectodomains was 17.2 ± 4.9 and …