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硫醇化增强蜡样芽孢杆菌D-丙氨酰载体蛋白连接酶DltA对底物的识别。

Thiolation-enhanced substrate recognition by D-alanyl carrier protein ligase DltA from Bacillus cereus.

作者信息

Du Liqin, Luo Yu

机构信息

Department of Biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan, S7N 5E5, Canada.

出版信息

F1000Res. 2014 May 13;3:106. doi: 10.12688/f1000research.4097.1. eCollection 2014.

Abstract

D-alanylation of the lipoteichoic acid on Gram-positive cell wall is dependent on dlt gene-encoded proteins DltA, DltB, DltC and DltD. The D-alanyl carrier protein ligase DltA, as a remote homolog of acyl-(coenzyme A) (CoA) synthetase, cycles through two active conformations for the catalysis of adenylation and subsequent thiolation of D-alanine (D-Ala). The crystal structure of DltA in the absence of any substrate was observed to have a noticeably more disordered pocket for ATP which would explain why DltA has relatively low affinity for ATP in the absence of any D-alanyl carrier. We have previously enabled the thiolation of D-alanine in the presence of CoA as the mimic of D-alanyl carrier protein DltC which carries a 4'-phosphopantetheine group on a serine residue. Here we show that the resulting Michaelis constants in the presence of saturating CoA for both ATP and D-alanine were reduced more than 10 fold as compared to the values obtained in the absence of CoA. The presence of CoA also made DltA ~100-fold more selective on D-alanine over L-alanine. The CoA-enhanced substrate recognition further implies that the ATP and D-alanine substrates of the adenylation reaction are incorporated when the DltA enzyme cycles through its thiolation conformation.

摘要

革兰氏阳性菌细胞壁上脂磷壁酸的D-丙氨酰化依赖于dlt基因编码的蛋白质DltA、DltB、DltC和DltD。D-丙氨酰载体蛋白连接酶DltA作为酰基-(辅酶A)(CoA)合成酶的远亲同源物,通过两种活性构象循环,催化D-丙氨酸(D-Ala)的腺苷化和随后的硫醇化。在没有任何底物的情况下,观察到DltA的晶体结构中ATP口袋明显更无序,这可以解释为什么在没有任何D-丙氨酰载体的情况下,DltA对ATP的亲和力相对较低。我们之前在辅酶A存在的情况下实现了D-丙氨酸的硫醇化,辅酶A模拟了在丝氨酸残基上携带4'-磷酸泛酰巯基乙胺基团的D-丙氨酰载体蛋白DltC。在这里我们表明,与在没有辅酶A的情况下获得的值相比,在饱和辅酶A存在下,ATP和D-丙氨酸的米氏常数降低了10倍以上。辅酶A的存在也使DltA对D-丙氨酸的选择性比对L-丙氨酸高约100倍。辅酶A增强的底物识别进一步表明,当DltA酶通过其硫醇化构象循环时,腺苷化反应的ATP和D-丙氨酸底物被结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22ec/4176424/4479f1c61fb4/f1000research-3-4389-g0000.jpg

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