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Articles 421 - 450 of 489
Full-Text Articles in Biochemistry
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
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, …
Emergent Decision-Making In Biological Signal Transduction Networks, Tomáš Helikar, John Konvalina, Jack Heidel, Jim A. Rogers
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 …
Functional Domains Of The Fatty Acid Transport Proteins: Studies Using Protein Chimeras, Concetta C. Dirusso, Dina Darwis, Thomas Obermeyer, Paul N. Black
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 …
Mapping The Functional Interaction Of Sco1 And Cox2 In Cytochrome Oxidase Biogenesis, Kevin Rigby, Paul A. Cobine, Oleh Khalimonchuk, Dennis R. Winge
Mapping The Functional Interaction Of Sco1 And Cox2 In Cytochrome Oxidase Biogenesis, Kevin Rigby, Paul A. Cobine, Oleh Khalimonchuk, Dennis R. Winge
Department of Biochemistry: Faculty Publications
Sco1 is implicated in the copper metallation of the CuA site in
Cox2 of cytochrome oxidase. The structure of Sco1 in the metallated
and apo-conformers revealed structural dynamics primarily
in an exposed region designated loop 8. The structural
dynamics of loop 8 in Sco1 suggests it may be an interface for
interactions with Cox17, the Cu(I) donor and/or Cox2. A series
of conserved residues in the sequence motif 217KKYRVYF223 on
the leading edge of this loop are shown presently to be important
for yeast Sco1 function. Cells harboring Y219D, R220D, V221D,
and Y222D mutant Sco1 proteins failed …
Function And Redox State Of Mitochondrial Localized Cysteine-Rich Proteins Important In The Assembly Of Cytochrome C Oxidase, Oleh Khalimonchuk, Dennis R. Winge
Function And Redox State Of Mitochondrial Localized Cysteine-Rich Proteins Important In The Assembly Of Cytochrome C Oxidase, Oleh Khalimonchuk, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The cytochrome c oxidase (CcO) complex of the mitochondrial respiratory chain exists within the mitochondrial inner membrane (IM). The biogenesis of the complex is a multi-faceted process requiring multiple assembly factors that function on both faces of the IM. Formation of the two copper centers of CcO occurs within the intermembrane space (IMS) and is dependent on assembly factors with critical cysteinyl thiolates. Two classes of assembly factors exist, one group being soluble IMS proteins and the second class being proteins tethered to the IM. A common motif in the soluble assembly factors is a duplicated Cx9C sequence …
Pet191 Is A Cytochrome C Oxidase Assembly Factor In Saccharomyces Cerevisiae, Oleh Khalimonchuk, Kevin Rigby, Megan Bestwick, Fabien Pierrel, Paul A. Cobine, Dennis R. Winge
Pet191 Is A Cytochrome C Oxidase Assembly Factor In Saccharomyces Cerevisiae, Oleh Khalimonchuk, Kevin Rigby, Megan Bestwick, Fabien Pierrel, Paul A. Cobine, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The twin-Cx9C motif protein Pet191 is essential for cytochrome c oxidase maturation. The motif Cys residues are functionally important and appear to be present in disulfide linkages within a large oligomeric complex associated with the mitochondrial inner membrane. The import of Pet191 differs from that of other twin-Cx9C motif class of proteins in being independent of the Mia40 pathway.
Coa2 Is An Assembly Factor For Yeast Cytochrome C Oxidase Biogenesis That Facilitates The Maturation Of Cox1, Fabien Pierrel, Oleh Khalimonchuk, Paul A. Cobine, Megan Bestwick, Dennis R. Winge
Coa2 Is An Assembly Factor For Yeast Cytochrome C Oxidase Biogenesis That Facilitates The Maturation Of Cox1, Fabien Pierrel, Oleh Khalimonchuk, Paul A. Cobine, Megan Bestwick, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The assembly of cytochrome c oxidase (CcO) in yeast mitochondria is dependent on a new assembly factor designated Coa2. Coa2 was identified from its ability to suppress the respiratory deficiency of coa1 Δ and shy1 Δ cells. Coa1 and Shy1 function at an early step in maturation of the Cox1 subunit of CcO. Coa2 functions downstream of the Mss51-Coa1 step in Cox1 maturation and likely concurrent with the Shy1-related heme a3 insertion into Cox1. Coa2 interacts with Shy1. Cells lacking Coa2 show a rapid degradation of newly synthesized Cox1. Rapid Cox1 proteolysis also occurs in shy1 Δ cells, suggesting …
Purification From Human Milk Of Matriptase Complexes With Secreted Serpins: Mechanism For Inhibition Of Matriptase Other Than Hai-1, I-Chu Tseng, Feng-Pai Chou, Sheng-Feng Su, Michael Oberst, Nandakumar Madayiputhiya, Ming-Shyue Lee, Jehng-Kang Wang, David E. Sloane, Michael Johnson, Chen-Yong Lin
Purification From Human Milk Of Matriptase Complexes With Secreted Serpins: Mechanism For Inhibition Of Matriptase Other Than Hai-1, I-Chu Tseng, Feng-Pai Chou, Sheng-Feng Su, Michael Oberst, Nandakumar Madayiputhiya, Ming-Shyue Lee, Jehng-Kang Wang, David E. Sloane, Michael Johnson, Chen-Yong Lin
Department of Biochemistry: Faculty Publications
Matriptase, a type 2 transmembrane serine protease, is predominately expressed by epithelial and carcinoma cells in which hepatocyte growth factor activator inhibitor 1 (HAI-1), a membrane-bound, Kunitz-type serine protease inhibitor, is also expressed. HAI-1 plays dual roles in the regulation of matriptase, as a conventional protease inhibitor and as a factor required for zymogen activation of matriptase. As a consequence, activation of matriptase is immediately followed by HAI-1-mediated inhibition, with the activated matriptase being sequestered into HAI-1 complexes. Matriptase is also expressed by peripheral blood leukocytes, such as monocytes and macrophages; however, in contrast to epithelial cells, monocytes and macrophages …
High-Throughput Screening For Fatty Acid Uptake Inhibitors In Humanized Yeast Identifies Atypical Antipsychotic Drugs That Cause Dyslipidemias, Hong Li, Paul N. Black, Aalap Chokshi, Angel Sandoval-Alvarez, Ravi Vatsyayan, Whitney Sealls, Concetta Dirusso
High-Throughput Screening For Fatty Acid Uptake Inhibitors In Humanized Yeast Identifies Atypical Antipsychotic Drugs That Cause Dyslipidemias, Hong Li, Paul N. Black, Aalap Chokshi, Angel Sandoval-Alvarez, Ravi Vatsyayan, Whitney Sealls, Concetta Dirusso
Department of Biochemistry: Faculty Publications
Fatty acids are implicated in the development of dyslipidemias, leading to type 2 diabetes and cardiovascular disease. We used a standardized small compound library to screen humanized yeast to identify compounds that inhibit fatty acid transport protein (FATP)-mediated fatty acid uptake into cells. This screening procedure used live yeast cells expressing human FATP2 to identify small compounds that reduced the import of a fluorescent fatty acid analog, 4,4-difluoro-5-methyl-4-bora-3a,4a-diaza-s-indacene-3-dodecanoic acid (C1-BODIPY-C12). The library used consisted of 2,080 compounds with known biological activities. Of these, ~1.8% reduced cell-associated C1-BODIPY-C12 fluorescence and were selected as potential inhibitors of human FATP2- mediated fatty acid …
A New Strategy For Assessing Selenoprotein Function: Sirna Knockdown/Knock-In Targeting The 3'-Utr, Min-Hyuk Yoo, Xue-Ming Xu, Anton A. Turanov, Bradley A. Carlson, Vadim N. Gladyshev, Dolph L. Hatfield
A New Strategy For Assessing Selenoprotein Function: Sirna Knockdown/Knock-In Targeting The 3'-Utr, Min-Hyuk Yoo, Xue-Ming Xu, Anton A. Turanov, Bradley A. Carlson, Vadim N. Gladyshev, Dolph L. Hatfield
Department of Biochemistry: Faculty Publications
Selenocysteine insertion into protein in mammalian cells requires RNA elements in the 3'-untranslated regions (3'-UTRs) of selenoprotein genes. The occurrence of these conserved sequences should make selenoproteins particularly amenable for knockdown/knock-in strategies to examine selenoprotein functions. Herein, we utilized the 3'-UTR of various selenoproteins to knock down their expression using siRNAs and then knock in expression using constructs containing mutations within the target region. Thioredoxin reductase 1 (TR1) knockdown in a mouse kidney cell line resulted in the cells growing about 10% more slowly, being more sensitive to UV radiation, and having increased apoptosis in response to UV than control …
Mechanistic Studies Of The Long Chain Acyl-Coa Synthetase Faa1p From Saccharomyces Cerevisiae, Hong Li, Elaina M. Melton, Steven Quackenbush, Concetta C. Dirusso, Paul N. Black
Mechanistic Studies Of The Long Chain Acyl-Coa Synthetase Faa1p From Saccharomyces Cerevisiae, Hong Li, Elaina M. Melton, Steven Quackenbush, Concetta C. Dirusso, Paul N. Black
Department of Biochemistry: Faculty Publications
Long chain acyl-CoA synthetase (ACSL; fatty acid CoA ligase: AMP forming; EC 6.2.1.3) catalyzes the formation of acyl-CoA through a process, which requires fatty acid, ATP and coenzymeA as substrates. In the yeast Saccharomyces cerevisiae the principal ACSL is Faa1p (encoded by the FAA1 gene). The preferred substrates for this enzyme are cis-monounsaturated long chain fatty acids. Our previous work has shown Faa1p is a principal component of a fatty acid transport/activation complex that also includes the fatty acid transport protein Fat1p. In the present work hexameric histidine tagged Faa1p was purified to homogeneity through a two-step process in the …
Evidence For A Pro-Oxidant Intermediate In The Assembly Of Cytochrome Oxidase, Oleh Khalimonchuk, Amanda Bird, Dennis R. Winge
Evidence For A Pro-Oxidant Intermediate In The Assembly Of Cytochrome Oxidase, Oleh Khalimonchuk, Amanda Bird, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The hydrogen peroxide sensitivity of cells lacking two proteins,
Sco1 and Cox11, important in the assembly of cytochrome
c oxidase (CcO), is shown to arise from the transient accumulation
of a pro-oxidant heme A-Cox1 stalled intermediate. The
peroxide sensitivity of these cells is abrogated by a reduction in
either Cox1 expression or hemeAformation but exacerbated by
either enhanced Cox1 expression or heme A production arising
from overexpression of COX15. Sco1 and Cox11 are implicated
in the formation of the CuA and CuB sites of CcO, respectively.
The respective wild-type genes suppress the peroxide sensitivities
of sco1∆ …
Coa1 Links The Mss51 Post-Translational Function To Cox1 Cofactor Insertion In Cytochrome C Oxidase Assembly, Fabien Pierrel, Megan L. Bestwick, Paul A. Cobine, Oleh Khalimonchuk, Julia A. Cricco, Dennis R. Winge
Coa1 Links The Mss51 Post-Translational Function To Cox1 Cofactor Insertion In Cytochrome C Oxidase Assembly, Fabien Pierrel, Megan L. Bestwick, Paul A. Cobine, Oleh Khalimonchuk, Julia A. Cricco, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The assembly of cytochrome c oxidase (CcO) in yeast mitochondria is shown to be dependent on a new assembly factor designated Coa1 that associates with the mitochondrial inner membrane. Translation of the mitochondrial-encoded subunits of CcO occurs normally in coa1Δ cells, but these subunits fail to accumulate. The respiratory defect in coa1Δ cells is suppressed by high-copy MSS51, MDJ1 and COX10. Mss51 functions in Cox1 translation and elongation, whereas Cox10 participates in the biosynthesis of heme a, a key cofactor of CcO. Respiration in coa1Δ and shy1Δ cells is enhanced when Mss51 and …
Sequential Processing Of A Mitochondrial Tandem Protein: Insights Into Protein Import In Schizosaccharomyces Pombe, Oleh Khalimonchuk, Martin Ott, Soledad Funes, Kai Ostermann, Gerhard Rödel, Johannes M. Herrmann
Sequential Processing Of A Mitochondrial Tandem Protein: Insights Into Protein Import In Schizosaccharomyces Pombe, Oleh Khalimonchuk, Martin Ott, Soledad Funes, Kai Ostermann, Gerhard Rödel, Johannes M. Herrmann
Department of Biochemistry: Faculty Publications
The sequencing of the genome of Schizosaccharomyces pombe revealed the presence of a number of genes encoding tandem proteins, some of which are mitochondrial components. One of these proteins (pre-Rsm22- Cox11) consists of a fusion of Rsm22, a component of the mitochondrial ribosome, and Cox11, a factor required for copper insertion into cytochrome oxidase. Since in Saccharomyces cerevisiae, Cox11 is physically attached to the mitochondrial ribosome, it was suggested that the tandem organization of Rsm22-Cox11 is used to covalently tie the mitochondrial ribosome to Cox11 in S. pombe. We report here that pre-Rsm22-Cox11 is matured in two subsequent …
Purification And Initial Biochemical Characterization Of Atp:Cob(I)Alamin Adenosyltransferase (Eutt) Enzyme Of Salmonella Enterica, Nicole R. Baun, Jorge C. Escalante-Semerena
Purification And Initial Biochemical Characterization Of Atp:Cob(I)Alamin Adenosyltransferase (Eutt) Enzyme Of Salmonella Enterica, Nicole R. Baun, Jorge C. Escalante-Semerena
Department of Biochemistry: Faculty Publications
ATP:cob(I)alamin adenosyltransferase (EutT) of Salmonella
enterica was overproduced and enriched to ~70% homogeneity,
and its basic kinetic parameters were determined. Abundant
amounts of EutT protein were produced, but all of it remained
insoluble. Soluble active EutT protein (~70% homogeneous) was
obtained after treatment with detergent. Under conditions in which
cobalamin (Cbl) was saturating, Km(ATP) = 10 µM, kcat = 0.03 s-1,
and Vmax = 54.5 nM min-1. Similarly, under conditions in which
MgATPwas saturating,Km(Cbl) = 4.1µM, kcat = 0.06 s-1, andVmax= …
Computer-Assisted Docking Of Flavodoxin With The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Reveals Residues Critical For Protein-Protein Interactions But Not For Catalysis*, Nicole R. Buan, Jorge C. Escalante-Semerena
Computer-Assisted Docking Of Flavodoxin With The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Reveals Residues Critical For Protein-Protein Interactions But Not For Catalysis*, Nicole R. Buan, Jorge C. Escalante-Semerena
Department of Biochemistry: Faculty Publications
The activity of the housekeeping ATP:co(I)rrinoid adenosyltransferase (CobA) enzyme of Salmonella enterica sv. Typhimurium is required to adenosylate de novo biosynthetic intermediates of adenosylcobalamin and to salvage incomplete and complete corrinoids from the environment of this bacterium. In vitro, reduced flavodoxin (FldA) provides an electron to generate the co(I)rrinoid substrate in the CobA active site. To understand how CobAand FldA interact, a computer model of aCobA∙FldA complex was generated. This model was used to guide the introduction of mutations into CobA using site-directed mutagenesis and the synthesis of a peptide mimic of FldA. Residues Arg-9 and Arg-165 of CobA …
Computer-Assisted Docking Of Flavodoxin With The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Reveals Residues Critical For Protein-Protein Interactions But Not For Catalysis, Nicole R. Baun, Jorge C. Escalante-Semerena
Computer-Assisted Docking Of Flavodoxin With The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Reveals Residues Critical For Protein-Protein Interactions But Not For Catalysis, Nicole R. Baun, Jorge C. Escalante-Semerena
Department of Biochemistry: Faculty Publications
The activity of the housekeeping ATP:co(I)rrinoid adenosyltransferase
(CobA) enzyme of Salmonella enterica sv. Typhimurium
is required to adenosylate de novo biosynthetic intermediates
of adenosylcobalamin and to salvage incomplete and complete
corrinoids from the environment of this bacterium. In vitro,
reduced flavodoxin (FldA) provides an electron to generate the
co(I)rrinoid substrate in the CobA active site. To understand how
CobAand FldA interact, a computer model of aCobA-FldA complex
was generated. This model was used to guide the introduction of
mutations into CobA using site-directed mutagenesis and the synthesis
of a peptide mimic of FldA. Residues Arg-9 and Arg-165 of
CobA …
The Identity Of Proteins Associated With A Small Heat Shock Protein During Heat Stress In Vivo Indicates That These Chaperones Protect A Wide Range Of Cellular Functions, Eman Basha, Garrett J. Lee, Linda A. Breci, Andrew C. Hausrath, Nicole R. Buan, Kim C. Giese, Elizabeth Vierling
The Identity Of Proteins Associated With A Small Heat Shock Protein During Heat Stress In Vivo Indicates That These Chaperones Protect A Wide Range Of Cellular Functions, Eman Basha, Garrett J. Lee, Linda A. Breci, Andrew C. Hausrath, Nicole R. Buan, Kim C. Giese, Elizabeth Vierling
Department of Biochemistry: Faculty Publications
The small heat shock proteins (sHSPs) are a ubiquitous class of ATP-independent chaperones believed to prevent irreversible protein aggregation and to facilitate subsequent protein renaturation in cooperation with ATP-dependent chaperones. Although sHSP chaperone activity has been studied extensively in vitro, understanding the mechanism of sHSP function requires identification of proteins that are sHSP substrates in vivo. We have used both immunoprecipitation and affinity chromatography to recover 42 proteins that specifically interact with Synechocystis Hsp16.6 in vivo during heat treatment. These proteins can all be released from Hsp16.6 by the ATP-dependent activity of DnaK and cochaperones and are heat-labile. Thirteen …
Interactions Between Small Heat Shock Protein Subunits And Substrate In Small Heat Shock Protein-Substrate Complexes, Kenneth L. Friedrich, Kim C. Giese, Nicole R. Baun, Elizabeth Vierling
Interactions Between Small Heat Shock Protein Subunits And Substrate In Small Heat Shock Protein-Substrate Complexes, Kenneth L. Friedrich, Kim C. Giese, Nicole R. Baun, Elizabeth Vierling
Department of Biochemistry: Faculty Publications
Small heat shock proteins (sHSPs) are dynamic oligomeric
proteins that bind unfolding proteins and protect
them from irreversible aggregation. This binding results
in the formation of sHSP-substrate complexes from
which substrate can later be refolded. Interactions between
sHSP and substrate in sHSP-substrate complexes
and the mechanism by which substrate is transferred to
ATP-dependent chaperones for refolding are poorly defined.
We have established C-terminal affinity-tagged
sHSPs from a eukaryote (pea HSP18.1) and a prokaryote
(Synechocystis HSP16.6) as tools to investigate these issues.
We demonstrate that sHSP subunit exchange for
HSP18.1 and HSP16.6 is temperature-dependent and
rapid at the optimal growth …
The Identity Of Proteins Associated With A Small Heat Shock Protein During Heat Stress In Vivo Indicates That These Chaperones Protect A Wide Range Of Cellular Functions, Eman Basha, Garrett J. Lee, Linda A. Breci, Andrew C. Hausrath, Nicole R. Baun, Kim C. Giese, Elizabeth Vierling
The Identity Of Proteins Associated With A Small Heat Shock Protein During Heat Stress In Vivo Indicates That These Chaperones Protect A Wide Range Of Cellular Functions, Eman Basha, Garrett J. Lee, Linda A. Breci, Andrew C. Hausrath, Nicole R. Baun, Kim C. Giese, Elizabeth Vierling
Department of Biochemistry: Faculty Publications
The small heat shock proteins (sHSPs) are a ubiquitous
class of ATP-independent chaperones believed to
prevent irreversible protein aggregation and to facilitate
subsequent protein renaturation in cooperation
with ATP-dependent chaperones. Although sHSP chaperone
activity has been studied extensively in vitro, understanding
the mechanism of sHSP function requires
identification of proteins that are sHSP substrates in
vivo. We have used both immunoprecipitation and affinity
chromatography to recover 42 proteins that specifically
interact with Synechocystis Hsp16.6 in vivo during
heat treatment. These proteins can all be released from
Hsp16.6 by the ATP-dependent activity of DnaK and cochaperones
and are heat-labile. …
5-Hydroxydecanoate Is Metabolised In Mitochondria And Creates A Rate-Limiting Bottleneck For Β-Oxidation Of Fatty Acids, Peter J. Hanley, Stefan Dröse, Ulrich Brandt, Rachel A. Lareau, Abir L. Banerjee, D. K. Srivastava, Leonard J. Banaszak, Joseph J. Barycki, Paul P. Van Veldhoven, Jürgen Daut
5-Hydroxydecanoate Is Metabolised In Mitochondria And Creates A Rate-Limiting Bottleneck For Β-Oxidation Of Fatty Acids, Peter J. Hanley, Stefan Dröse, Ulrich Brandt, Rachel A. Lareau, Abir L. Banerjee, D. K. Srivastava, Leonard J. Banaszak, Joseph J. Barycki, Paul P. Van Veldhoven, Jürgen Daut
Department of Biochemistry: Faculty Publications
5-Hydroxydecanoate (5-HD) blocks pharmacological and ischaemic preconditioning, and
has been postulated to be a specific inhibitor of mitochondrial ATP-sensitive K+ (KATP)
channels. However, recent work has shown that 5-HD is activated to 5-hydroxydecanoyl-CoA
(5-HD-CoA), which is a substrate for the first step of β-oxidation. We have now
analysed the complete β-oxidation of 5-HD-CoA using specially synthesised (and purified)
substrates and enzymes, as well as isolated rat liver and heart mitochondria, and compared
it with the metabolism of the physiological substrate decanoyl-CoA. At the second step of
β-oxidation, catalysed by enoyl-CoA hydratase, enzyme kinetics were …
Mobilization Of Intracellular Copper Stores By The Ctr2 Vacuolar Copper Transporter, Erin M. Rees, Jaekwon Lee, Dennis J. Thiele
Mobilization Of Intracellular Copper Stores By The Ctr2 Vacuolar Copper Transporter, Erin M. Rees, Jaekwon Lee, Dennis J. Thiele
Department of Biochemistry: Faculty Publications
Copper plays an essential role in processes including signaling to the transcription and protein trafficking machinery, oxidative phosphorylation, iron mobilization, neuropeptide maturation, and normal development. Whereas much is known about intracellular mobilization of ions such as calcium, little information is available on how eukaryotic cells mobilize intracellular copper stores. We describe a mechanism by which the Saccharomyces cerevisiae Ctr2 protein provides bioavailable copper via mobilization of intracellular copper stores. Whereas Ctr2 exhibits structural similarity to the Ctr1 plasma membrane copper importer, microscopic and biochemical fractionation studies localize Ctr2 to the vacuole membrane. We demonstrate that Ctr2 mobilizes vacuolar copper stores …
Interactions Between Small Heat Shock Protein Subunits And Substrate In Small Heat Shock Protein-Substrate Complexes, Kenneth L. Friedrich,, Kim C. Giese, Nicole R. Buan, Elizabeth Vierling
Interactions Between Small Heat Shock Protein Subunits And Substrate In Small Heat Shock Protein-Substrate Complexes, Kenneth L. Friedrich,, Kim C. Giese, Nicole R. Buan, Elizabeth Vierling
Department of Biochemistry: Faculty Publications
Small heat shock proteins (sHSPs) are dynamic oligomeric proteins that bind unfolding proteins and protect them from irreversible aggregation. This binding results in the formation of sHSP-substrate complexes from which substrate can later be refolded. Interactions between sHSP and substrate in sHSP-substrate complexes and the mechanism by which substrate is transferred to ATP-dependent chaperones for refolding are poorly defined. We have established C-terminal affinity-tagged sHSPs from a eukaryote (pea HSP18.1) and a prokaryote (Synechocystis HSP16.6) as tools to investigate these issues. We demonstrate that sHSP subunit exchange for HSP18.1 and HSP16.6 is temperature-dependent and rapid at the optimal growth temperature …
Transmembrane Movement Of Exogenous Long-Chain Fatty Acids: Proteins, Enzymes, And Vectorial Esterification, Paul N. Black, Concetta C. Dirusso
Transmembrane Movement Of Exogenous Long-Chain Fatty Acids: Proteins, Enzymes, And Vectorial Esterification, Paul N. Black, Concetta C. Dirusso
Department of Biochemistry: Faculty Publications
INTRODUCTION......................................................................................................................................................454
FATTY ACIDS AND BIOLOGICAL MEMBRANES.............................................................................................455
Fatty Acid Transport Defined ...............................................................................................................................456
MODEL SYSTEMS TO INVESTIGATE FATTY ACID TRANSPORT ..............................................................456
Genetic Foundations of Fatty Acid Transport....................................................................................................456
PROTEINS IMPLICATED IN FATTY ACID TRANSPORT ...............................................................................456
Fatty Acid Translocase..........................................................................................................................................457
Fatty Acid Binding Protein—Membrane Bound ................................................................................................457
Fatty Acid Transport Protein...............................................................................................................................458
The Long-Chain Fatty Acid Transport Protein FadL .......................................................................................458
Fatty Acyl-CoA Synthetase ...................................................................................................................................459
VECTORIAL ACYLATION: ONE MECHANISM OPERATIONAL IN FATTY ACID TRANSPORT...........460
THE BACTERIAL PARADIGM ...............................................................................................................................460
Energetics of Fatty Acid Transport in Gram-Negative Bacteria......................................................................460
The Fatty Acid Transporter FadL........................................................................................................................461
The Fatty Acyl-CoA Synthetase FadD..................................................................................................................461
Structural Considerations of FACS .....................................................................................................................462
FATTY ACID TRANSPORT AND ACTIVATION IN YEAST: …
The Many Faces Of Vitamin B12: Catalysis By Cobalamin-Dependent Enzymes, Ruma Banerjee, Stephen W. Ragsdale
The Many Faces Of Vitamin B12: Catalysis By Cobalamin-Dependent Enzymes, Ruma Banerjee, Stephen W. Ragsdale
Department of Biochemistry: Faculty Publications
Vitamin B12 is a complex organometallic cofactor associated with three subfamilies of enzymes: the adenosylcobalamin-dependent isomerases, the methylcobalamin-dependent methyltransferases, and the dehalogenases. Different chemical aspects of the cofactor are exploited during catalysis by the isomerases and the methyltransferases. Thus, the cobalt-carbon bond ruptures homolytically in the isomerases, whereas it is cleaved heterolytically in the methyltransferases. The reaction mechanism of the dehalogenases, the most recently discovered class of B12 enzymes, is poorly understood. Over the past decade our understanding of the reaction mechanisms of B12 enzymes has been greatly enhanced by the availability of large amounts of enzyme …
The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Of Salmonella Enterica Requires The 2'-Oh Group Of Atp For Function And Yields Inorganic Triphosphate As Its Reaction Byproduct, Maris V. Fonseca, Nicole R. Buan, Alexander R. Horswill, Ivan Rayment, Jorge C. Escalante-Semerena
The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Of Salmonella Enterica Requires The 2'-Oh Group Of Atp For Function And Yields Inorganic Triphosphate As Its Reaction Byproduct, Maris V. Fonseca, Nicole R. Buan, Alexander R. Horswill, Ivan Rayment, Jorge C. Escalante-Semerena
Department of Biochemistry: Faculty Publications
The specificity of the ATP:corrinoid adenosyltransferase (CobA) enzyme of Salmonella enterica serovar Typhimurium LT2 for its nucleotide substrate was tested using ATP analogs and alternative nucleotide donors. The enzyme showed broad specificity for the nucleotide base and required the 2’-OH group of the ribosyl moiety of ATP for activity. 31P NMR spectroscopy was used to identify inorganic triphosphate (PPPi) as the byproduct of the reaction catalyzed by the CobA enzyme. Cleavage of triphosphate into pyrophosphate and orthophosphate did not occur, indicating that triphosphate cleavage was not required for release of the adenosylcorrinoid product. Triphosphate was a strong …
Vectorial Acylation In Saccharomyces Cerevisiae, Zhiying Zou, Fumin Tong, Nils J. Færgeman, Claus Børsting, Paul N. Black, Concetta Dirusso
Vectorial Acylation In Saccharomyces Cerevisiae, Zhiying Zou, Fumin Tong, Nils J. Færgeman, Claus Børsting, Paul N. Black, Concetta Dirusso
Department of Biochemistry: Faculty Publications
In Saccharomyces cerevisiae Fat1p and fatty acyl-CoA synthetase (FACS) are hypothesized to couple import and activation of exogenous fatty acids by a process called vectorial acylation. Molecular genetic and biochemical studies were used to define further the functional and physical interactions between these proteins. Multicopy extragenic suppressors were selected in strains carrying deletions in FAA1 and FAA4 or FAA1 and FAT1. Each strain is unable to grow under synthetic lethal conditions when exogenous long-chain fatty acids are required, and neither strain accumulates the fluorescent long-chain fatty acid C1-BODIPY-C12 indicating a fatty acid transport defect. By using these …
The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Of Salmonella Enterica Requires The 2’-Oh Group Of Atp For Function And Yields Inorganic Triphosphate As Its Reaction Byproduct, Maris V. Fonseca, Nicole R. Baun, Alexander R. Horswill, Ivan Rayment, Jorge C. Escalante-Semerena
The Atp:Co(I)Rrinoid Adenosyltransferase (Coba) Enzyme Of Salmonella Enterica Requires The 2’-Oh Group Of Atp For Function And Yields Inorganic Triphosphate As Its Reaction Byproduct, Maris V. Fonseca, Nicole R. Baun, Alexander R. Horswill, Ivan Rayment, Jorge C. Escalante-Semerena
Department of Biochemistry: Faculty Publications
The specificity of the ATP:corrinoid adenosyltransferase
(CobA) enzyme of Salmonella enterica serovar
Typhimurium LT2 for its nucleotide substrate was
tested using ATP analogs and alternative nucleotide donors.
The enzyme showed broad specificity for the nucleotide
base and required the 2’-OH group of the ribosyl
moiety of ATP for activity. 31P NMR spectroscopy
was used to identify inorganic triphosphate (PPPi) as
the byproduct of the reaction catalyzed by the CobA
enzyme. Cleavage of triphosphate into pyrophosphate
and orthophosphate did not occur, indicating that
triphosphate cleavage was not required for release of
the adenosylcorrinoid product. Triphosphate was …
Multiple Factors Independently Regulate Hila And Invasion Gene Expression In Salmonella Enterica Serovar Typhimurium, Robin L. Lucas, C. Phoebe Lostroh, Concetta C. Dirusso, Michael P. Spector, Barry L. Wanner, Catherine A. Lee
Multiple Factors Independently Regulate Hila And Invasion Gene Expression In Salmonella Enterica Serovar Typhimurium, Robin L. Lucas, C. Phoebe Lostroh, Concetta C. Dirusso, Michael P. Spector, Barry L. Wanner, Catherine A. Lee
Department of Biochemistry: Faculty Publications
HilA activates the expression of Salmonella enterica serovar Typhimurium invasion genes. To learn more
about regulation of hilA, we isolated Tn5 mutants exhibiting reduced hilA and/or invasion gene expression. In
addition to expected mutations, we identified Tn5 insertions in pstS, fadD, flhD, flhC, and fliA. Analysis of the
pstS mutant indicates that hilA and invasion genes are repressed by the response regulator PhoB in the absence
of the Pst high-affinity inorganic phosphate uptake system. This system is required for negative control of the
PhoR-PhoB two-component regulatory system, suggesting that hilA expression may …
Multiple Factors Independently Regulate Hila And Invasion Gene Expression In Salmonella Enterica Serovar Typhimurium, Robin L. Lucas, C. Phoebe Lostroh, Concetta C. Dirusso, Michael P. Spector, Barry L. Wanner, Catherine A. Lee
Multiple Factors Independently Regulate Hila And Invasion Gene Expression In Salmonella Enterica Serovar Typhimurium, Robin L. Lucas, C. Phoebe Lostroh, Concetta C. Dirusso, Michael P. Spector, Barry L. Wanner, Catherine A. Lee
Department of Biochemistry: Faculty Publications
HilA activates the expression of Salmonella enterica serovar Typhimurium invasion genes. To learn more
about regulation of hilA, we isolated Tn5 mutants exhibiting reduced hilA and/or invasion gene expression. In
addition to expected mutations, we identified Tn5 insertions in pstS, fadD, flhD, flhC, and fliA. Analysis of the
pstS mutant indicates that hilA and invasion genes are repressed by the response regulator PhoB in the absence
of the Pst high-affinity inorganic phosphate uptake system. This system is required for negative control of the
PhoR-PhoB two-component regulatory system, suggesting that hilA expression may …