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首页> 外文期刊>Journal of Molecular Biology >Molecular basis for the activation of a catalytic asparagine residue in a self-cleaving bacterial autotransporter
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Molecular basis for the activation of a catalytic asparagine residue in a self-cleaving bacterial autotransporter

机译:自裂解细菌自转运蛋白中催化天冬酰胺残基活化的分子基础

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Autotransporters are secreted proteins produced by pathogenic Gram-negative bacteria. They consist of a membrane-embedded β-domain and an extracellular passenger domain that is sometimes cleaved and released from the cell surface. We solved the structures of three noncleavable mutants of the autotransporter EspP to examine how it promotes asparagine cyclization to cleave its passenger. We found that cyclization is facilitated by multiple factors. The active-site asparagine is sterically constrained to conformations favorable for cyclization, while electrostatic interactions correctly orient the carboxamide group for nucleophilic attack. During molecular dynamics simulations, water molecules were observed to enter the active site and to form hydrogen bonds favorable for increasing the nucleophilicity of the active-site asparagine. When the activated asparagine attacks its main-chain carbonyl carbon, the resulting oxyanion is stabilized by a protonated glutamate. Upon cleavage, this proton could be transferred to the leaving amine group, helping overcome a significant energy barrier. Together, these findings provide insight into factors important for asparagine cyclization, a mechanism broadly used for protein cleavage.
机译:自转运蛋白是致病性革兰氏阴性细菌产生的分泌蛋白。它们由膜包埋的β结构域和胞外过客结构域组成,有时被裂解并从细胞表面释放出来。我们解决了自转运蛋白EsP的三个不可裂解的突变​​体的结构,以检查其如何促进天冬酰胺环化以裂解其乘客。我们发现环化是由多种因素促进的。活性位天冬酰胺在空间上被约束为有利于环化的构象,而静电相互作用正确地使羧酰胺基团定向为亲核攻击。在分子动力学模拟中,观察到水分子进入活性位点并形成有利于增加活性位天冬酰胺的亲核性的氢键。当活化的天冬酰胺攻击其主链羰基碳时,所得的氧阴离子被质子化的谷氨酸稳定。裂解后,该质子可以转移到离去的胺基上,从而有助于克服明显的能垒。在一起,这些发现提供了对天冬酰胺环化重要的因素的见解,天冬酰胺环化是一种广泛用于蛋白质裂解的机制。

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