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Articles 991 - 1020 of 1329
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Structure And Catalytic Mechanism Of Eukaryotic Selenocysteine Synthase, Oleg M. Ganichkin, Xue-Ming Xu, Bradley A. Carlson, Heiko Mix, Dolph L. Hatfield, Vadim N. Gladyshev, Markus C. Wahl
Structure And Catalytic Mechanism Of Eukaryotic Selenocysteine Synthase, Oleg M. Ganichkin, Xue-Ming Xu, Bradley A. Carlson, Heiko Mix, Dolph L. Hatfield, Vadim N. Gladyshev, Markus C. Wahl
Vadim Gladyshev Publications
In eukaryotes and Archaea, selenocysteine synthase (SecS) converts O-phospho-L-seryl-tRNA[Ser]Sec into selenocysteyltRNA[Ser]Sec using selenophosphate as the selenium donor compound. The molecular mechanisms underlying SecS activity are presently unknown. We have delineated a 450-residue core of mouse SecS, which retained full selenocysteyl-tRNA[Ser]Sec synthesis activity, and determined its crystal structure at 1.65Å resolution. SecS exhibits three domains that place it in the fold type I family of pyridoxal phosphate (PLP)-dependent enzymes. Two SecS monomers interact intimately and together build up two identical active sites around PLP in a Schiff-base linkage with lysine 284. Two SecS dimers further …
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
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
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 …
Comparative Analysis Of Selenocysteine Machinery And Selenoproteome Gene Expression In Mouse Brain Identifies Neurons As Key Functional Sites Of Selenium In Mammals, Yan Zhang, You Zhou, Ulrich Schweizer, Nicolai E. Savaskan, Deame Hua, Jonathan Kipnis, Dolph L. Hatfield, Vadim N. Gladyshev
Comparative Analysis Of Selenocysteine Machinery And Selenoproteome Gene Expression In Mouse Brain Identifies Neurons As Key Functional Sites Of Selenium In Mammals, Yan Zhang, You Zhou, Ulrich Schweizer, Nicolai E. Savaskan, Deame Hua, Jonathan Kipnis, Dolph L. Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Although dietary selenium (Se) deficiency results in phenotypes associated with selenoprotein depletion in various organs, the brain is protected from Se loss. To address the basis for the critical role of Se in brain function, we carried out comparative gene expression analyses for the complete selenoproteome and associated biosynthetic factors. Using the Allen Brain Atlas, we evaluated 159 regions of adult mouse brain and provided experimental analyses of selected selenoproteins. All 24 selenoprotein mRNAs were expressed in the mouse brain. Most strikingly, neurons in olfactory bulb, hippocampus, cerebral cortex, and cerebellar cortex were exceptionally rich in selenoprotein gene expression, in …
The Hyaluronan Receptor For Endocytosis Mediates Hyaluronan-Dependent Signal Transduction Via Extracellular Signal-Regulated Kinases, Svetlana V. Kyosseva, Ed Harris, Paul H. Weigel
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 …
Functional Characterization Of Alternatively Spliced Human Secisbp2 Transcript Variants, Laura V. Papp, Junning Wang, Derek Kennedy, Didier Boucher, Yan Zhang, Vadim N. Gladyshev, Ravindra N. Singh, Kum Kum Khanna
Functional Characterization Of Alternatively Spliced Human Secisbp2 Transcript Variants, Laura V. Papp, Junning Wang, Derek Kennedy, Didier Boucher, Yan Zhang, Vadim N. Gladyshev, Ravindra N. Singh, Kum Kum Khanna
Vadim Gladyshev Publications
Synthesis of selenoproteins depends on decoding of the UGA stop codon as the amino acid selenocysteine (Sec). This process requires the presence of a Sec insertion sequence element (SECIS) in the 3’-untranslated region of selenoprotein mRNAs and its interaction with the SECIS binding protein 2 (SBP2). In humans, mutations in the SBP2-encoding gene Sec insertion sequence binding protein 2 (SECISBP2) that alter the amino acid sequence or cause splicing defects lead to abnormal thyroid hormone metabolism. Herein, we present the first in silico and in vivo functional characterization of alternative splicing of SECISBP2. We report a complex splicing …
Selenoproteinless Animals: Selenophosphate Synthetase Sps1 Functions In A Pathway Unrelated To Selenocysteine Biosynthesis, Alexey V. Lobanov, Dolph Hatfield, Vadim N. Gladyshev
Selenoproteinless Animals: Selenophosphate Synthetase Sps1 Functions In A Pathway Unrelated To Selenocysteine Biosynthesis, Alexey V. Lobanov, Dolph Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Proteins containing the 21st amino acid, selenocysteine (Sec), have been described in all three domains of life, but the composition of selenoproteomes in organisms varies significantly. Here, we report that aquatic arthropods possess many selenoproteins also detected in other animals and unicellular eukaryotes, and that most of these proteins were either lost or replaced with cysteine-containing homologs in insects. As a result of this selective selenoproteome reduction, fruit flies and mosquitoes have three known selenoproteins, and the honeybee, Apis mellifera, a single detected candidate selenoprotein. Moreover, we identified the red flour beetle, Tribolium castaneum, and the silkworm, Bombyx …
Selenodb 1.0 : A Database Of Selenoprotein Genes, Proteins And Secis Elements, Sergi Castellano, Vadim N. Gladyshev, Roderic Guigo, Marla J. Berry
Selenodb 1.0 : A Database Of Selenoprotein Genes, Proteins And Secis Elements, Sergi Castellano, Vadim N. Gladyshev, Roderic Guigo, Marla J. Berry
Vadim Gladyshev Publications
Selenoproteins are a diverse group of proteins usually misidentified and misannotated in sequence databases. The presence of an in-frame UGA (stop) codon in the coding sequence of selenoprotein genes precludes their identification and correct annotation. The in-frame UGA codons are recoded to cotranslationally incorporate selenocysteine, a rare selenium-containing amino acid. The development of ad hoc experimental and, more recently, computational approaches have allowed the efficient identification and characterization of the selenoproteomes of a growing number of species. Today, dozens of selenoprotein families have been described and more are being discovered in recently sequenced species, but the correct genomic annotation is …
Sustainability In A Time Of Climate Change: Developing An Intensive Research Framework For The Platte River Basin And The High Plains Proceedings From The 2008 Climate Change Workshop, Monica Norby, Ashley Washburn
Sustainability In A Time Of Climate Change: Developing An Intensive Research Framework For The Platte River Basin And The High Plains Proceedings From The 2008 Climate Change Workshop, Monica Norby, Ashley Washburn
Office of Research and Economic Development: Publications
Proceedings from the 2008 Climate change Workshop, Nebraska Sandhills, May 19-22, 2008. Hosted by the University of Nebraska–Lincoln and the U.S. Geological Survey
Loss Of Housekeeping Selenoprotein Expression In Mouse Liver Modulates Lipoprotein Metabolism, Aniruddha Sengupta, Bradley A. Carlson, Victoria J. Hoffmann, Vadim N. Gladyshev, Dolph L. Hatfield
Loss Of Housekeeping Selenoprotein Expression In Mouse Liver Modulates Lipoprotein Metabolism, Aniruddha Sengupta, Bradley A. Carlson, Victoria J. Hoffmann, Vadim N. Gladyshev, Dolph L. Hatfield
Vadim Gladyshev Publications
Selenium is incorporated into proteins as selenocysteine (Sec), which is dependent on its specific tRNA, designated tRNA [Ser]Sec. Targeted removal of the tRNA [Ser]Sec gene (Trsp) in mouse hepatocytes previously demonstrated the importance of selenoproteins in liver function. Herein, analysis of plasma proteins in this Trsp knockout mouse revealed increases in apolipoprotein E (ApoE) that was accompanied by elevated plasma cholesterol levels. The expression of genes involved in cholesterol biosynthesis, metabolism and transport were also altered in knockout mice. Additionally, in two transgenic Trsp mutant mouse lines (wherein only housekeeping selenoprotein synthesis was restored), the expression …
Trends In Selenium Utilization In Marine Microbial World Revealed Through The Analysis Of The Global Ocean Sampling (Gos) Project, Yan Zhang, Vadim N. Gladyshev
Trends In Selenium Utilization In Marine Microbial World Revealed Through The Analysis Of The Global Ocean Sampling (Gos) Project, Yan Zhang, Vadim N. Gladyshev
Vadim Gladyshev Publications
Selenium is an important trace element that occurs in proteins in the form of selenocysteine (Sec) and in tRNAs in the form of selenouridine. Recent large-scale metagenomics projects provide an opportunity for understanding global trends in trace element utilization. Herein, we characterized the selenoproteome of the microbial marine community derived from the Global Ocean Sampling (GOS) expedition. More than 3,600 selenoprotein gene sequences belonging to 58 protein families were detected, including sequences representing 7 newly identified selenoprotein families, such as homologs of ferredoxin– thioredoxin reductase and serine protease. In addition, a new eukaryotic selenoprotein family, thiol reductase GILT, was identified. …
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
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
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
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 …
Comparative Genomic Analyses Of Copper Transporters And Cuproproteomes Reveal Evolutionary Dynamics Of Copper Utilization And Its Link To Oxygen, Perry Ridge, Yan Zhang, Vadim N. Gladyshev
Comparative Genomic Analyses Of Copper Transporters And Cuproproteomes Reveal Evolutionary Dynamics Of Copper Utilization And Its Link To Oxygen, Perry Ridge, Yan Zhang, Vadim N. Gladyshev
Vadim Gladyshev Publications
Copper is an essential trace element in many organisms and is utilized in all domains of life. It is often used as a cofactor of redox proteins, but is also a toxic metal ion. Intracellular copper must be carefully handled to prevent the formation of reactive oxygen species which pose a threat to DNA, lipids, and proteins. In this work, we examined patterns of copper utilization in prokaryotes by analyzing the occurrence of copper transporters and copper-containing proteins. Many organisms, including those that lack copper-dependent proteins, had copper exporters, likely to protect against copper ions that inadvertently enter the cell. …
Reduced Reliance On The Trace Element Selenium During Evolution Of Mammals, Alexey Lobanov, Dolph Hatfield, Vadim N. Gladyshev
Reduced Reliance On The Trace Element Selenium During Evolution Of Mammals, Alexey Lobanov, Dolph Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Background: Selenium (Se) is an essential trace element that occurs in proteins in the form of selenocysteine (Sec). It is transported throughout the body in the form of Sec residues in Selenoprotein P (SelP), a plasma protein of unclear origin recently proposed as an experimental marker of dietary Se status.
Results: Here, we report that the amino-terminal domain of SelP is distantly related to ancestral bacterial thiol oxidoreductases of the thioredoxin superfamily, and that its carboxy-terminal Se transport domain may have originated in early metazoan evolution by de novo accumulation of Sec residues. Reconstruction of evolutionary changes in the Se …
In Silico Identification Of Genes Involved In Selenium Metabolism: Evidence For A Third Selenium Utilization Trait, Yan Zhang, Anton Turanov, Dolph Hatfield, Vadim N. Gladyshev
In Silico Identification Of Genes Involved In Selenium Metabolism: Evidence For A Third Selenium Utilization Trait, Yan Zhang, Anton Turanov, Dolph Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Background: Selenium (Se) is a trace element that occurs in proteins in the form of selenocysteine (Sec) and in tRNAs in the form of selenouridine (SeU). Selenophosphate synthetase (SelD) is required for both utilization traits. However, previous research also revealed SelDs in two organisms lacking Sec and SeU, suggesting a possible additional use of Se that is dependent on SelD.
Results: In this study, we conducted comparative genomics and phylogenetic analyses to characterize genes involved in Se utilization. Candidate genes identified included SelA/SelB and YbbB that define Sec and SeU pathways, respectively, and NADH oxidoreductase that is predicted to generate …
A Functional Link Between Housekeeping Selenoproteins And Phase Ii Enzymes, Aniruddha Sengupta, Bradley A. Carlson, James A. Weaver, Sergey V. Novoselov, Dmitri E. Fomenko, Vadim N. Gladyshev, Dolph Hatfield
A Functional Link Between Housekeeping Selenoproteins And Phase Ii Enzymes, Aniruddha Sengupta, Bradley A. Carlson, James A. Weaver, Sergey V. Novoselov, Dmitri E. Fomenko, Vadim N. Gladyshev, Dolph Hatfield
Vadim Gladyshev Publications
Sec (selenocysteine) is biosynthesized on its tRNA and incorporated into selenium-containing proteins (selenoproteins) as the 21st amino acid residue. Selenoprotein synthesis is dependent on Sec tRNA and the expression of this class of proteins can be modulated by altering Sec tRNA expression. The gene encoding Sec tRNA (Trsp) is a single-copy gene and its targeted removal in liver demonstrated that selenoproteins are essential for proper function wherein their absence leads to necrosis and hepatocellular degeneration. In the present study, we found that the complete loss of selenoproteins in liver was compensated for by an enhanced expression of several phase II …
Plant-Like Substitutions In The Large-Subunit Carboxy Terminus Of Chlamydomonas Rubisco Increase Co2/O2 Specificity, Sriram Satagopan, Robert Spreitzer
Plant-Like Substitutions In The Large-Subunit Carboxy Terminus Of Chlamydomonas Rubisco Increase Co2/O2 Specificity, Sriram Satagopan, Robert Spreitzer
Department of Biochemistry: Faculty Publications
Background: Ribulose-1,5-bisphosphate is the rate-limiting enzyme in photosynthesis. The catalytic large subunit of the green-algal enzyme from Chlamydomonas reinhardtii is ~90% identical to the flowering-plant sequences, although they confer diverse kinetic properties. To identify the regions that may account for species variation in kinetic properties, directed mutagenesis and chloroplast transformation were used to create four amino-acid substitutions in the carboxy terminus of the Chlamydomonas large subunit to mimic the sequence of higher-specificity plant enzymes.
Results: The quadruple-mutant enzyme has a 10% increase in CO2/O2 specificity and a lower carboxylation catalytic efficiency. The mutations do not seem to …
Structural Basis Of The Transcriptional Regulation Of The Proline Utilization Regulon By Multifunctional Puta, Yuzhen Zhou, John D. Larson, Christopher A. Bottoms, Emilia C. Arturo, Michael T. Henzl, Jermaine L. Jenkins, Jay C. Nix, Donald F. Becker, John J. Tanner
Structural Basis Of The Transcriptional Regulation Of The Proline Utilization Regulon By Multifunctional Puta, Yuzhen Zhou, John D. Larson, Christopher A. Bottoms, Emilia C. Arturo, Michael T. Henzl, Jermaine L. Jenkins, Jay C. Nix, Donald F. Becker, John J. Tanner
Department of Biochemistry: Faculty Publications
The multifunctional Escherichia coli proline utilization A (PutA) flavoprotein functions both as a membrane-associated proline catabolic enzyme and as a transcriptional repressor of the proline utilization genes putA and putP. To better understand the mechanism of transcriptional regulation by PutA, we have mapped the put-regulatory region, determined a crystal structure of the PutA ribbon–helix–helix domain (PutA52, a polypeptide corresponding to residues 1–52 of E. coli PutA) complexed with DNA, and examined the thermodynamics of DNA binding to PutA52. Five operator sites, each containing the sequence motif 5′-GTTGCA-3′, were identified using gelshift analysis. Three of the sites are shown to be …
Identification Of A Consensus Dna-Binding Site For The Arabidopsis Thaliana Sbp Domain Transcription Factor, Atspl14, And Binding Kinetics By Surface Plasmon Resonance, Xinwen Liang, Tara J. Nazarenus, Julie M. Stone
Identification Of A Consensus Dna-Binding Site For The Arabidopsis Thaliana Sbp Domain Transcription Factor, Atspl14, And Binding Kinetics By Surface Plasmon Resonance, Xinwen Liang, Tara J. Nazarenus, Julie M. Stone
Department of Biochemistry: Faculty Publications
Proteins with a conserved Cys- and His-rich SQUAMOSA promoter binding protein (SBP) domain are transcription factors restricted to photosynthetic organisms that possess a novel two Zn-finger structure DNA-binding domain. Despite the fact that altered expression of some SBP-encoding genes has profound effects on organism growth and development, little is known about SBP domain protein target genes. Misexpression of the Arabidopsis thaliana AtSPL14 SBP domain gene confers resistance to programmed cell death and modifies plant architecture. A consensus DNA-binding motif for AtSPL14 was identified by systematic evolution of ligands by exponential enrichment (SELEX) or random binding site selection (RBSS). DNA recognized …
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 …
Solution Structure Of Selenoprotein W And Nmr Analysis Of Its Interaction With 14-3-3 Proteins, Finn L. Aachmann, Dmitri E. Fomenko, Alice Soragni, Vadim N. Gladyshev, Alexander Dikiy
Solution Structure Of Selenoprotein W And Nmr Analysis Of Its Interaction With 14-3-3 Proteins, Finn L. Aachmann, Dmitri E. Fomenko, Alice Soragni, Vadim N. Gladyshev, Alexander Dikiy
Vadim Gladyshev Publications
Selenium is a trace element with significant biomedical potential. It is essential in mammals due to its occurrence in several proteins in the form of selenocysteine (Sec). One of the most abundant mamma¬lian Sec-containing proteins is selenoprotein W (SelW). This protein of unknown function has a broad expression pattern and contains a candidate CXXU (where U represents Sec) redox motif. Here, we re¬port the solution structure of the Sec13 →Cys variant of mouse SelW determined through high resolution NMR spectroscopy. The protein has a thioredoxin-like fold with the CXXU motif located in an exposed loop similarly to the redox-active …
Light-Evoked Calcium Responses Of Isolated Melanopsin- Expressing Retinal Ganglion Cells, Andrew T. E. Hartwick, Jayne R. Bramley, Jianing Yu, Kelly T. Stevens, Charles N. Allen, William H. Baldridge, Patricia J. Sollars, Gary E. Pickard
Light-Evoked Calcium Responses Of Isolated Melanopsin- Expressing Retinal Ganglion Cells, Andrew T. E. Hartwick, Jayne R. Bramley, Jianing Yu, Kelly T. Stevens, Charles N. Allen, William H. Baldridge, Patricia J. Sollars, Gary E. Pickard
School of Veterinary and Biomedical Sciences: Faculty Publications
A small number (<2%) of mammalian retinal ganglion cells express the photopigment melanopsin and are intrinsically photosensitive (ipRGCs). Light depolarizes ipRGCs and increases intracellular calcium levels ( [Ca2+]i ) but the signaling cascades underlying these responses have yet to be elucidated. To facilitate physiological studies on these rare photoreceptors, highly enriched ipRGC cultures from neonatal rats were generated using anti-melanopsin-mediated plate adhesion (immunopanning). This novel approach enabled experiments on isolated ipRGCs, eliminating the potential confounding influence of rod/cone-driven input. Light induced a rise in [Ca2+]i (monitored using fura-2 imaging) in the immunopanned ipRGCs and the source of this Ca2+ signal was investigated. The Ca2+ responses were inhibited by 2-aminoethoxydiphenyl borate, SKF-96365 (1–2-(4-methoxyphenyl)-2-[3-(4-methoxyphenyl)propoxy]ethyl-1H-imidazole), flufenamic acid, …2%)>
Evolutionary Dynamics Of Eukaryotic Selenoproteomes: Large Selenoproteomes May Associate With Aquatic Life And Small With Terrestrial Life, Alexey V. Lobanov, Dmitri E. Fomenko, Yan Zhang, Aniruddha Sengupta, Dolph L. Hatfield, Vadim N. Gladyshev
Evolutionary Dynamics Of Eukaryotic Selenoproteomes: Large Selenoproteomes May Associate With Aquatic Life And Small With Terrestrial Life, Alexey V. Lobanov, Dmitri E. Fomenko, Yan Zhang, Aniruddha Sengupta, Dolph L. Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Background: Selenocysteine (Sec) is a selenium-containing amino acid that is co-translationally inserted into nascent polypeptides by recoding UGA codons. Selenoproteins occur in both eukaryotes and prokaryotes, but the selenoprotein content of organisms (selenoproteome) is highly variable and some organisms do not utilize Sec at all.
Results: We analyzed the selenoproteomes of several model eukaryotes and detected 26 and 29 selenoprotein genes in the green algae Ostreococcus tauri and Ostreococcus lucimarinus, respectively, five in the social amoebae Dictyostelium discoideum, three in the fly Drosophila pseudoobscura, and 16 in the diatom Thalassiosira pseudonana, including several new selenoproteins. Distinct selenoprotein …
The Chlamydomonas Genome Reveals The Evolution Of Key Animal And Plant Functions, Sabeeha S. Merchant, Simon E. Prochnik, Olivier Vallon, Elizabeth H. Harris, Steven J. Karpowicz, George B. Witman, Astrid Terry, Asaf Salamov, Lillian K. Fritz-Laylin, Laurence Maréchal-Drouard, Wallace F. Marshall, Liang-Hu Qu, David R. Nelson, Anton A. Sanderfoot, Martin H. Spalding, Vladimir V. Kapitonov, Qinghu Ren, Patrick Ferris, Erika Lindquist, Harris Shapiro, Susan M. Lucas, Jane Grimwood, Jeremy Schmutz, Chlamydomonas Annotation Team, Vadim N. Gladyshev, Jgi Annotation Team, Igor V. Grigoriev, Daniel S. Rokhsar, Arthur R. Grossman
The Chlamydomonas Genome Reveals The Evolution Of Key Animal And Plant Functions, Sabeeha S. Merchant, Simon E. Prochnik, Olivier Vallon, Elizabeth H. Harris, Steven J. Karpowicz, George B. Witman, Astrid Terry, Asaf Salamov, Lillian K. Fritz-Laylin, Laurence Maréchal-Drouard, Wallace F. Marshall, Liang-Hu Qu, David R. Nelson, Anton A. Sanderfoot, Martin H. Spalding, Vladimir V. Kapitonov, Qinghu Ren, Patrick Ferris, Erika Lindquist, Harris Shapiro, Susan M. Lucas, Jane Grimwood, Jeremy Schmutz, Chlamydomonas Annotation Team, Vadim N. Gladyshev, Jgi Annotation Team, Igor V. Grigoriev, Daniel S. Rokhsar, Arthur R. Grossman
Vadim Gladyshev Publications
Chlamydomonas reinhardtii is a unicellular green alga whose lineage diverged from land plants over 1 billion years ago. It is a model system for studying chloroplast-based photosynthesis, as well as the structure, assembly, and function of eukaryotic flagella (cilia), which were inherited from the common ancestor of plants and animals, but lost in land plants. We sequenced the ~120-megabase nuclear genome of Chlamydomonas and performed comparative phylogenomic analyses, identifying genes encoding uncharacterized proteins that are likely associated with the function and biogenesis of chloroplasts or eukaryotic flagella. Analyses of the Chlamydomonas genome advance our understanding of the ancestral eukaryotic cell, …