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(-) Description

Title :  THE HIGH RESOLUTION STRUCTURE OF THE PERIPHERAL SUBUNIT-BINDING DOMAIN OF DIHYDROLIPOAMIDE ACETYLTRANSFERASE FROM THE PYRUVATE DEHYDROGENASE MULTIENZYME COMPLEX OF BACILLUS STEAROTHERMOPHILUS
 
Authors :  Y. N. Kalia, S. M. Brocklehurst, D. S. Hipps, E. Appella, K. Sakaguchi, R. N. Perham
Date :  25 Nov 92  (Deposition) - 20 Dec 94  (Release) - 24 Feb 09  (Revision)
Method :  SOLUTION NMR
Resolution :  NOT APPLICABLE
Chains :  NMR Structure  :  A  (35x)
Keywords :  Oxido-Reductase(Acyltransferase), Oxidoreductase (Keyword Search: [Gene Ontology, PubMed, Web (Google))
 
Reference :  Y. N. Kalia, S. M. Brocklehurst, D. S. Hipps, E. Appella, K. Sakaguchi, R. N. Perham
The High-Resolution Structure Of The Peripheral Subunit-Binding Domain Of Dihydrolipoamide Acetyltransferase From The Pyruvate Dehydrogenase Multienzyme Complex Of Bacillus Stearothermophilus.
J. Mol. Biol. V. 230 323 1993
PubMed-ID: 8450544  |  Reference-DOI: 10.1006/JMBI.1993.1145
(for further references see the PDB file header)

(-) Compounds

Molecule 1 - DIHYDROLIPOAMIDE ACETYLTRANSFERASE
    ChainsA
    EC Number1.8.1.4
    EngineeredYES

 Structural Features

(-) Chains, Units

  
NMR Structure (35x)

Summary Information (see also Sequences/Alignments below)

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 Sequence-Structure Mapping

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(-) PROSITE Motifs  (1, 1)

NMR Structure (1, 1)
 PROSITEUniProtKBPDB
No.IDACDescriptionIDLocationCountLocation
1PSBDPS51826 Peripheral subunit-binding (PSBD) domain profile.ODP2_GEOSE130-167  1A:2-39

(-) Exons   (0, 0)

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(-) Sequences/Alignments

NMR Structure
   Reformat: Number of residues per line =  ('0' or empty: single-line sequence representation)
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  UniProt sequence: complete  aligned part    
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Chain A from PDB  Type:PROTEIN  Length:43
 aligned with ODP2_GEOSE | P11961 from UniProtKB/Swiss-Prot  Length:428

    Alignment length:43
                                   138       148       158       168   
           ODP2_GEOSE   129 VIAMPSVRKYAREKGVDIRLVQGTGKNGRVLKEDIDAFLAGGA 171
               SCOP domains d2pdda_ A:                                  SCOP domains
               CATH domains 2pddA00 A:1-43 Dihydrolipoamide Transferase CATH domains
               Pfam domains ------------------------------------------- Pfam domains
         Sec.struct. author ......hhhhhhhhh.hhhhh..........hhhhhhhh.... Sec.struct. author
                 SAPs(SNPs) ------------------------------------------- SAPs(SNPs)
                    PROSITE -PSBD  PDB: A:2-39 UniProt: 130-167    ---- PROSITE
                 Transcript ------------------------------------------- Transcript
                 2pdd A   1 VIAMPSVRKYAREKGVDIRLVQGTGKNGRVLKEDIDAFLAGGA  43
                                    10        20        30        40   

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 Classification and Annotation

(-) SCOP Domains  (1, 1)

NMR Structure

(-) CATH Domains  (1, 1)

NMR Structure

(-) Pfam Domains  (0, 0)

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(-) Gene Ontology  (5, 5)

NMR Structure(hide GO term definitions)
Chain A   (ODP2_GEOSE | P11961)
molecular function
    GO:0004742    dihydrolipoyllysine-residue acetyltransferase activity    Catalysis of the reaction: acetyl-CoA + dihydrolipoamide = CoA + S-acetyldihydrolipoamide.
    GO:0016740    transferase activity    Catalysis of the transfer of a group, e.g. a methyl group, glycosyl group, acyl group, phosphorus-containing, or other groups, from one compound (generally regarded as the donor) to another compound (generally regarded as the acceptor). Transferase is the systematic name for any enzyme of EC class 2.
    GO:0016746    transferase activity, transferring acyl groups    Catalysis of the transfer of an acyl group from one compound (donor) to another (acceptor).
biological process
    GO:0006096    glycolytic process    The chemical reactions and pathways resulting in the breakdown of a carbohydrate into pyruvate, with the concomitant production of a small amount of ATP and the reduction of NAD(P) to NAD(P)H. Glycolysis begins with the metabolism of a carbohydrate to generate products that can enter the pathway and ends with the production of pyruvate. Pyruvate may be converted to acetyl-coenzyme A, ethanol, lactate, or other small molecules.
    GO:0008152    metabolic process    The chemical reactions and pathways, including anabolism and catabolism, by which living organisms transform chemical substances. Metabolic processes typically transform small molecules, but also include macromolecular processes such as DNA repair and replication, and protein synthesis and degradation.

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 Related Entries

(-) Entries Sharing at Least One Protein Chain (UniProt ID)

UniProtKB/Swiss-Prot
        ODP2_GEOSE | P119611b5s 1ebd 1lab 1lac 1w3d 1w4e 1w4f 1w4g 1w4h 1w85 1w88 2pde 3duf 3dv0 3dva

(-) Related Entries Specified in the PDB File

2pde