首页> 外文期刊>Journal of Molecular Biology >The crystal structure analysis of group B streptococcus sortase C1: A model for the 'lid' movement upon substrate binding
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The crystal structure analysis of group B streptococcus sortase C1: A model for the 'lid' movement upon substrate binding

机译:B组链球菌分选酶C1的晶体结构分析:底物结合后“上盖”运动的模型

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摘要

A unique feature of the class-C-type sortases, enzymes essential for Gram-positive pilus biogenesis, is the presence of a flexible "lid" anchored in the active site. However, the mechanistic details of the "lid" displacement, suggested to be a critical prelude for enzyme catalysis, are not yet known. This is partly due to the absence of enzyme-substrate and enzyme-inhibitor complex crystal structures. We have recently described the crystal structures of the Streptococcus agalactiae SAG2603 V/R sortase SrtC1 in two space groups (type II and type III) and that of its "lid" mutant and proposed a role of the "lid" as a protector of the active-site hydrophobic environment. Here, we report the crystal structures of SAG2603 V/R sortase C1 in a different space group (type I) and that of its complex with a small-molecule cysteine protease inhibitor. We observe that the catalytic Cys residue is covalently linked to the small-molecule inhibitor without lid displacement. However, the type I structure provides a view of the sortase SrtC1 lid displacement while having structural elements similar to a substrate sorting motif suitably positioned in the active site. We propose that these major conformational changes seen in the presence of a substrate mimic in the active site may represent universal features of class C sortase substrate recognition and enzyme activation.
机译:C类分选酶(对革兰氏阳性菌毛生物发生必不可少的酶)的独特功能是锚定在活性位点上的柔性“盖子”的存在。然而,尚不清楚“盖”位移的机理细节,这被认为是酶催化的关键前奏。这部分是由于缺乏酶-底物和酶-抑制剂复合物晶体结构。我们最近在两个空间组(II型和III型)及其“ lid”突变体的晶体中描述了无乳链球菌SAG2603 V / R分选酶SrtC1的晶体结构,并提出了“ lid”作为其保护子的作用。活性部位疏水环境。在这里,我们报告不同空间组(I型)中的SAG2603 V / R分选酶C1的晶体结构及其与小分子半胱氨酸蛋白酶抑制剂的复合物的晶体结构。我们观察到,催化的Cys残基与小分子抑制剂共价连接而没有盖移位。但是,I型结构提供了分选酶SrtC1盖移位的视图,同时具有类似于基质分选基序的结构元素,该基序适当地位于活性位点中。我们提出,在活性位点存在底物模拟物时所见的这些主要构象变化可能代表了C类分选酶底物识别和酶激活的普遍特征。

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