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链球菌 ComA 双功能 ATP 结合盒转运蛋白的肽酶结构域的晶体结构,该蛋白参与群体感应途径。

Crystal structure of the peptidase domain of Streptococcus ComA, a bifunctional ATP-binding cassette transporter involved in the quorum-sensing pathway.

机构信息

Department of Biochemistry, Osaka Medical College, Takatsuki, Osaka 569-8686, Japan.

出版信息

J Biol Chem. 2010 Apr 2;285(14):10777-85. doi: 10.1074/jbc.M109.093781. Epub 2010 Jan 25.

DOI:10.1074/jbc.M109.093781
PMID:20100826
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2856284/
Abstract

ComA of Streptococcus is a member of the bacteriocin-associated ATP-binding cassette transporter family and is postulated to be responsible for both the processing of the propeptide ComC and secretion of the mature quorum-sensing signal. The 150-amino acid peptidase domain (PEP) of ComA specifically recognizes an extended region of ComC that is 15 amino acids in length. It has been proposed that an amphipathic alpha-helix formed by the N-terminal leader region of ComC, as well as the Gly-Gly motif at the cleavage site, is critical for the PEP-ComC interaction. To elucidate the substrate recognition mechanism, we determined the three-dimensional crystal structure of Streptococcus mutans PEP and then constructed models for the PEP.ComC complexes. PEP had an overall structure similar to the papain-like cysteine proteases as has long been predicted. The active site was located at the bottom of a narrow cleft, which is suitable for binding the Gly-Gly motif. Together with the results from mutational experiments, a shallow hydrophobic concave surface of PEP was proposed as a site that accommodates the N-terminal helix of ComC. This dual mode of substrate recognition would provide the small PEP domain with an extremely high substrate specificity.

摘要

链球菌 ComA 是细菌素相关的 ATP 结合盒转运蛋白家族的成员,据推测它负责成熟群体感应信号的前体 ComC 的加工和分泌。ComA 的 150 个氨基酸肽酶结构域 (PEP) 特异性识别 ComC 的一个 15 个氨基酸长的扩展区域。有人提出,ComC 的 N 端前导区形成的两亲性α螺旋以及切割位点处的 Gly-Gly 基序对于 PEP-ComC 相互作用至关重要。为了阐明底物识别机制,我们测定了变形链球菌 PEP 的三维晶体结构,然后构建了 PEP.ComC 复合物的模型。PEP 的整体结构类似于长期以来预测的木瓜蛋白酶样半胱氨酸蛋白酶。活性位点位于狭窄裂缝的底部,非常适合结合 Gly-Gly 基序。与突变实验的结果相结合,提出 PEP 的浅疏水性凹面是容纳 ComC 的 N 端螺旋的部位。这种双重底物识别模式将为小的 PEP 结构域提供极高的底物特异性。