2e1b: Difference between revisions

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New page: left|200px<br /><applet load="2e1b" size="350" color="white" frame="true" align="right" spinBox="true" caption="2e1b, resolution 2.70Å" /> '''Crystal structure of...
 
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==Overview==
==Overview==
The editing domain of alanyl-tRNA synthetase (AlaRS) contributes to, high-fidelity aminoacylation by hydrolyzing (editing) the incorrect, products Ser-tRNA(Ala) and Gly-tRNA(Ala) (cis-editing). The AlaX protein, shares sequence homology to the editing domain of AlaRS. There are three, types of AlaX proteins, with different numbers of amino-acid residues, (AlaX-S, AlaX-M and AlaX-L). In this report, AlaX-M from Pyrococcus, horikoshii is shown to deacylate Ser-tRNA(Ala) and Gly-tRNA(Ala), (trans-editing). The crystal structure of P. horikoshii AlaX-M has been, determined at 2.7 A resolution. AlaX-M consists of an N-terminal domain, (N-domain) and a C-terminal domain (C-domain). A zinc ion is coordinated, by the conserved zinc-binding cluster in the C-domain, which is expected, to be the enzymatic active site. The glycine-rich motif, consisting of, successive conserved glycine residues in the N-domain, forms a loop (the, ;glycine-rich loop'). The glycine-rich loop is located near the active, site and may be involved in substrate recognition and/or catalysis.
The editing domain of alanyl-tRNA synthetase (AlaRS) contributes to high-fidelity aminoacylation by hydrolyzing (editing) the incorrect products Ser-tRNA(Ala) and Gly-tRNA(Ala) (cis-editing). The AlaX protein shares sequence homology to the editing domain of AlaRS. There are three types of AlaX proteins, with different numbers of amino-acid residues (AlaX-S, AlaX-M and AlaX-L). In this report, AlaX-M from Pyrococcus horikoshii is shown to deacylate Ser-tRNA(Ala) and Gly-tRNA(Ala) (trans-editing). The crystal structure of P. horikoshii AlaX-M has been determined at 2.7 A resolution. AlaX-M consists of an N-terminal domain (N-domain) and a C-terminal domain (C-domain). A zinc ion is coordinated by the conserved zinc-binding cluster in the C-domain, which is expected to be the enzymatic active site. The glycine-rich motif, consisting of successive conserved glycine residues in the N-domain, forms a loop (the 'glycine-rich loop'). The glycine-rich loop is located near the active site and may be involved in substrate recognition and/or catalysis.


==About this Structure==
==About this Structure==
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[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Fukunaga, R.]]
[[Category: Fukunaga, R.]]
[[Category: RSGI, RIKEN.Structural.Genomics/Proteomics.Initiative.]]
[[Category: RSGI, RIKEN Structural Genomics/Proteomics Initiative.]]
[[Category: Yokoyama, S.]]
[[Category: Yokoyama, S.]]
[[Category: ZN]]
[[Category: ZN]]
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[[Category: zinc-binding motif]]
[[Category: zinc-binding motif]]


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