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分子内异肽键赋予化脓性链球菌主要菌毛蛋白热力学稳定性和抗蛋白酶稳定性。

Intramolecular isopeptide bonds give thermodynamic and proteolytic stability to the major pilin protein of Streptococcus pyogenes.

作者信息

Kang Hae Joo, Baker Edward N

机构信息

School of Biological Sciences, University of Auckland, Auckland 1142, New Zealand.

出版信息

J Biol Chem. 2009 Jul 31;284(31):20729-37. doi: 10.1074/jbc.M109.014514. Epub 2009 Jun 4.

Abstract

The pili expressed by Streptococcus pyogenes and certain other Gram-positive bacterial pathogens are based on a polymeric backbone in which individual pilin subunits are joined end-to-end by covalent isopeptide bonds through the action of sortase enzymes. The crystal structure of the major pilin of S. pyogenes, Spy0128, revealed that each domain of the two domain protein contained an intramolecular isopeptide bond cross-link joining a Lys side chain to an Asn side chain. In the present work, mutagenesis was used to create mutant proteins that lacked either one isopeptide bond (E117A, N168A, and E258A mutants) or both isopeptide bonds (E117A/E258A). Both the thermal stability and proteolytic stability of Spy0128 were severely compromised by loss of the isopeptide bonds. Unfolding experiments, monitored by circular dichroism, revealed a transition temperature T(m) of 85 degrees C for the wild type protein. In contrast, mutants with only one isopeptide bond showed biphasic unfolding, with the domain lacking an isopeptide bond having a T(m) that was approximately 30 degrees C lower than the unaltered domain. High resolution crystal structures of the E117A and N168A mutants showed that the loss of an isopeptide bond did not change the overall pilin structure but caused local disturbance of the protein core that was greater for E117A than for N168A. These effects on stability appear also to be important for pilus assembly.

摘要

化脓性链球菌及某些其他革兰氏阳性细菌病原体所表达的菌毛基于一种聚合主链,其中单个菌毛蛋白亚基通过分选酶的作用经共价异肽键首尾相连。化脓性链球菌主要菌毛蛋白Spy0128的晶体结构显示,该双结构域蛋白的每个结构域都含有一个分子内异肽键交联,将一个赖氨酸侧链与一个天冬酰胺侧链相连。在本研究中,通过诱变产生了缺乏一个异肽键(E117A、N168A和E258A突变体)或两个异肽键(E117A/E258A)的突变蛋白。Spy0128的热稳定性和蛋白水解稳定性均因异肽键的缺失而严重受损。通过圆二色性监测的去折叠实验显示,野生型蛋白的转变温度T(m)为85℃。相比之下,仅含有一个异肽键的突变体表现出双相去折叠,缺乏异肽键的结构域的T(m)比未改变的结构域低约30℃。E117A和N168A突变体的高分辨率晶体结构表明,异肽键的缺失并未改变菌毛蛋白的整体结构,但导致了蛋白核心的局部紊乱,E117A的紊乱程度大于N168A。这些对稳定性的影响似乎对菌毛组装也很重要。

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