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New page: left|200px<br /><applet load="1sff" size="450" color="white" frame="true" align="right" spinBox="true" caption="1sff, resolution 1.9Å" /> '''Structure of gamma-am...
 
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[[Image:1sff.gif|left|200px]]<br /><applet load="1sff" size="450" color="white" frame="true" align="right" spinBox="true"  
[[Image:1sff.gif|left|200px]]<br /><applet load="1sff" size="350" color="white" frame="true" align="right" spinBox="true"  
caption="1sff, resolution 1.9&Aring;" />
caption="1sff, resolution 1.9&Aring;" />
'''Structure of gamma-aminobutyrate aminotransferase complex with aminooxyacetate'''<br />
'''Structure of gamma-aminobutyrate aminotransferase complex with aminooxyacetate'''<br />


==Overview==
==Overview==
The X-ray crystal structures of Escherichia coli gamma-aminobutyrate, aminotransferase unbound and bound to the inhibitor aminooxyacetate are, reported. The enzyme crystallizes from ammonium sulfate solutions in the, P3(2)21 space group with a tetramer in the asymmetric unit. Diffraction, data were collected to 2.4 A resolution for the unliganded enzyme and 1.9, A resolution for the aminooxyacetate complex. The overall structure of the, enzyme is similar to those of other aminotransferase subgroup II enzymes., The ability of gamma-aminobutyrate aminotransferase to act on primary, amine substrates (gamma-aminobutyrate) in the first half-reaction and, alpha-amino acids in the second is proposed to be enabled by the presence, of Glu211, whose side chain carboxylate alternates between interactions, with Arg398 in the primary amine half-reaction and an alternative binding, site in the alpha-amino acid half-reaction, in which Arg398 binds the, substrate alpha-carboxylate. The specificity for a carboxylate group on, the substrate side chain is due primarily to the presence of Arg141, but, also requires substantial local main chain rearrangements relative to the, structurally homologous enzyme dialkylglycine decarboxylase, which is, specific for small alkyl side chains. No iron-sulfur cluster is found in, the bacterial enzyme as was found in the pig enzyme [Storici, P., De, Biase, D., Bossa, F., Bruno, S., Mozzarelli, A., Peneff, C., Silverman, R., B., and Schirmer, T. (2004) J. Biol. Chem. 279, 363-73.]. The binding of, aminooxyacetate causes remarkably small changes in the active site, structure, and no large domain movements are observed. Active site, structure comparisons with pig gamma-aminobutyrate aminotransferase and, dialkylglycine decarboxylase are discussed.
The X-ray crystal structures of Escherichia coli gamma-aminobutyrate aminotransferase unbound and bound to the inhibitor aminooxyacetate are reported. The enzyme crystallizes from ammonium sulfate solutions in the P3(2)21 space group with a tetramer in the asymmetric unit. Diffraction data were collected to 2.4 A resolution for the unliganded enzyme and 1.9 A resolution for the aminooxyacetate complex. The overall structure of the enzyme is similar to those of other aminotransferase subgroup II enzymes. The ability of gamma-aminobutyrate aminotransferase to act on primary amine substrates (gamma-aminobutyrate) in the first half-reaction and alpha-amino acids in the second is proposed to be enabled by the presence of Glu211, whose side chain carboxylate alternates between interactions with Arg398 in the primary amine half-reaction and an alternative binding site in the alpha-amino acid half-reaction, in which Arg398 binds the substrate alpha-carboxylate. The specificity for a carboxylate group on the substrate side chain is due primarily to the presence of Arg141, but also requires substantial local main chain rearrangements relative to the structurally homologous enzyme dialkylglycine decarboxylase, which is specific for small alkyl side chains. No iron-sulfur cluster is found in the bacterial enzyme as was found in the pig enzyme [Storici, P., De Biase, D., Bossa, F., Bruno, S., Mozzarelli, A., Peneff, C., Silverman, R. B., and Schirmer, T. (2004) J. Biol. Chem. 279, 363-73.]. The binding of aminooxyacetate causes remarkably small changes in the active site structure, and no large domain movements are observed. Active site structure comparisons with pig gamma-aminobutyrate aminotransferase and dialkylglycine decarboxylase are discussed.


==About this Structure==
==About this Structure==
1SFF is a [http://en.wikipedia.org/wiki/Single_protein Single protein] structure of sequence from [http://en.wikipedia.org/wiki/Escherichia_coli Escherichia coli] with SO4, EDO and IK2 as [http://en.wikipedia.org/wiki/ligands ligands]. Active as [http://en.wikipedia.org/wiki/4-aminobutyrate_transaminase 4-aminobutyrate transaminase], with EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=2.6.1.19 2.6.1.19] Full crystallographic information is available from [http://ispc.weizmann.ac.il/oca-bin/ocashort?id=1SFF OCA].  
1SFF is a [http://en.wikipedia.org/wiki/Single_protein Single protein] structure of sequence from [http://en.wikipedia.org/wiki/Escherichia_coli Escherichia coli] with <scene name='pdbligand=SO4:'>SO4</scene>, <scene name='pdbligand=EDO:'>EDO</scene> and <scene name='pdbligand=IK2:'>IK2</scene> as [http://en.wikipedia.org/wiki/ligands ligands]. Active as [http://en.wikipedia.org/wiki/4-aminobutyrate_transaminase 4-aminobutyrate transaminase], with EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=2.6.1.19 2.6.1.19] Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=1SFF OCA].  


==Reference==
==Reference==
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[[Category: Escherichia coli]]
[[Category: Escherichia coli]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Carter, R.J.]]
[[Category: Carter, R J.]]
[[Category: Fisher, A.J.]]
[[Category: Fisher, A J.]]
[[Category: Langston, J.A.]]
[[Category: Langston, J A.]]
[[Category: Liu, W.]]
[[Category: Liu, W.]]
[[Category: Peterson, P.E.]]
[[Category: Peterson, P E.]]
[[Category: Toney, M.D.]]
[[Category: Toney, M D.]]
[[Category: Zhou, X.]]
[[Category: Zhou, X.]]
[[Category: EDO]]
[[Category: EDO]]
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[[Category: enzyme complexes]]
[[Category: enzyme complexes]]


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