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基于磷酸吡哆醛依赖性酶CqsA的晶体结构对霍乱弧菌主要自诱导物CAI-1生物合成的见解。

Insights into the biosynthesis of the Vibrio cholerae major autoinducer CAI-1 from the crystal structure of the PLP-dependent enzyme CqsA.

作者信息

Jahan Nasrin, Potter Jane A, Sheikh Md Arif, Botting Catherine H, Shirran Sally L, Westwood Nicholas J, Taylor Garry L

机构信息

Centre for Biomolecular Sciences, University of St. Andrews, UK.

出版信息

J Mol Biol. 2009 Sep 25;392(3):763-73. doi: 10.1016/j.jmb.2009.07.042. Epub 2009 Jul 22.

Abstract

CqsA is an enzyme involved in the biosynthesis of cholerae autoinducer-1 (CAI-1), the major Vibrio cholerae autoinducer engaged in quorum sensing. The amino acid sequence of CqsA suggests that it belongs to the family of alpha-oxoamine synthases that catalyse the condensation of an amino acid to an acyl-CoA substrate. Here we present the apo- and PLP-bound crystal structures of CqsA and confirm that it shares structural homology with the dimeric alpha-oxoamine synthases, including a conserved PLP-binding site. The chemical structure of CAI-1 suggests that decanoyl-CoA may be one substrate of CqsA and that another substrate may be l-threonine or l-2-aminobutyric acid. A crystal structure of CqsA at 1.9-A resolution obtained in the presence of PLP and l-threonine reveals an external aldimine that has lost the l-threonine side chain. Similarly, a 1.9-A-resolution crystal structure of CqsA in the presence of PLP, l-threonine, and decanoyl-CoA shows a trapped external aldimine intermediate, suggesting that the condensation and decarboxylation steps have occurred, again with loss of the l-threonine side chain. It is suggested that this side-chain loss, an observation supported by mass spectrometry, is due to a retro-aldol reaction. Although no structural data have been obtained on CqsA using l-2-aminobutyric acid and decanoyl-CoA as substrates, mass spectrometry confirms the expected product of the enzyme reaction. It is proposed that a region of structure that is disordered in the apo structure is involved in the release of product. While not confirming if CqsA alone is able to synthesize CAI-1, these results suggest possible synthetic routes.

摘要

CqsA是一种参与霍乱自诱导物-1(CAI-1)生物合成的酶,CAI-1是霍乱弧菌参与群体感应的主要自诱导物。CqsA的氨基酸序列表明它属于α-氧代胺合酶家族,该家族催化氨基酸与酰基辅酶A底物的缩合反应。在此,我们展示了CqsA的脱辅基和结合磷酸吡哆醛(PLP)的晶体结构,并证实它与二聚体α-氧代胺合酶具有结构同源性,包括一个保守的PLP结合位点。CAI-1的化学结构表明癸酰辅酶A可能是CqsA的一种底物,另一种底物可能是L-苏氨酸或L-2-氨基丁酸。在PLP和L-苏氨酸存在下获得的分辨率为1.9埃的CqsA晶体结构显示出一个失去了L-苏氨酸侧链的外部醛亚胺。同样,在PLP、L-苏氨酸和癸酰辅酶A存在下的分辨率为1.9埃的CqsA晶体结构显示出一个捕获的外部醛亚胺中间体,这表明缩合和脱羧步骤已经发生,同样伴随着L-苏氨酸侧链的丢失。据推测,这种侧链丢失是由于逆羟醛反应导致的,质谱分析也支持了这一观察结果。尽管尚未获得以L-2-氨基丁酸和癸酰辅酶A为底物的CqsA的结构数据,但质谱分析证实了酶反应的预期产物。有人提出,在脱辅基结构中无序的一个结构区域参与了产物的释放。虽然没有证实CqsA单独是否能够合成CAI-1,但这些结果提示了可能的合成途径。

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