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3RGG

Crystal structure of Treponema denticola PurE bound to AIR

3RGG の概要
エントリーDOI10.2210/pdb3rgg/pdb
関連するPDBエントリー3RG8
分子名称Phosphoribosylaminoimidazole carboxylase, PurE protein, 5-AMINOIMIDAZOLE RIBONUCLEOTIDE (3 entities in total)
機能のキーワードpurine biosynthesis, carboxylase, lyase
由来する生物種Treponema denticola
タンパク質・核酸の鎖数4
化学式量合計70228.27
構造登録者
Mathews, I.I.,Starks, C.M.,Kappock, T.J. (登録日: 2011-04-08, 公開日: 2011-05-18, 最終更新日: 2024-04-03)
主引用文献Tranchimand, S.,Starks, C.M.,Mathews, I.I.,Hockings, S.C.,Kappock, T.J.
Treponema denticola PurE Is a Bacterial AIR Carboxylase.
Biochemistry, 50:4623-4637, 2011
Cited by
PubMed Abstract: De novo purine biosynthesis proceeds by two divergent paths. In bacteria, yeasts, and plants, 5-aminoimidazole ribonucleotide (AIR) is converted to 4-carboxy-AIR (CAIR) by two enzymes: N(5)-carboxy-AIR (N(5)-CAIR) synthetase (PurK) and N(5)-CAIR mutase (class I PurE). In animals, the conversion of AIR to CAIR requires a single enzyme, AIR carboxylase (class II PurE). The CAIR carboxylate derives from bicarbonate or CO(2), respectively. Class I PurE is a promising antimicrobial target. Class I and class II PurEs are mechanistically related but bind different substrates. The spirochete dental pathogen Treponema denticola lacks a purK gene and contains a class II purE gene, the hallmarks of CO(2)-dependent CAIR synthesis. We demonstrate that T. denticola PurE (TdPurE) is AIR carboxylase, the first example of a prokaryotic class II PurE. Steady-state and pre-steady-state experiments show that TdPurE binds AIR and CO(2) but not N(5)-CAIR. Crystal structures of TdPurE alone and in complex with AIR show a conformational change in the key active site His40 residue that is not observed for class I PurEs. A contact between the AIR phosphate and a differentially conserved residue (TdPurE Lys41) enforces different AIR conformations in each PurE class. As a consequence, the TdPurE·AIR complex contains a portal that appears to allow the CO(2) substrate to enter the active site. In the human pathogen T. denticola, purine biosynthesis should depend on available CO(2) levels. Because spirochetes lack carbonic anhydrase, the corresponding reduction in bicarbonate demand may confer a selective advantage.
PubMed: 21548610
DOI: 10.1021/bi102033a
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (1.82 Å)
構造検証レポート
Validation report summary of 3rgg
検証レポート(詳細版)ダウンロードをダウンロード

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件を2024-10-30に公開中

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