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微菌素 J25 中自发套索形成的实验与计算研究。

An experimental and computational investigation of spontaneous lasso formation in microcin J25.

机构信息

Department of Chemical and Biological Engineering, Princeton University, Princeton, New Jersey.

出版信息

Biophys J. 2010 Nov 3;99(9):3056-65. doi: 10.1016/j.bpj.2010.08.073.

Abstract

The antimicrobial peptide microcin J25 (MccJ25) is posttranslationally matured from a linear preprotein into its native lasso conformation by two enzymes. One of these enzymes cleaves the preprotein and the second enzyme installs the requisite isopeptide bond to establish the lasso structure. Analysis of a mimic of MccJ25 that can be cyclized without the influence of the maturation enzymes suggests that MccJ25 does not spontaneously adopt a near-lasso structure. In addition, we conducted atomistically detailed replica-exchange molecular dynamics simulations of pro-microcin J25 (pro-MccJ25), the 21-residue uncyclized analog of MccJ25, to determine the conformational ensemble explored in the absence of the leader sequence or maturation enzymes. We applied a nonlinear dimensionality reduction technique known as the diffusion map to the simulation trajectories to extract two global order parameters describing the fundamental dynamical motions of the system, and identify three distinct pathways. One path corresponds to the spontaneous adoption of a left-handed lasso, in which the N-terminus wraps around the C-terminus in the opposite sense to the right-handed topology of native MccJ25. Our computational and experimental results suggest a role for the MccJ25 leader sequence and/or its maturation enzymes in facilitating the adoption of the right-handed topology.

摘要

抗菌肽微菌素 J25(MccJ25)通过两种酶从线性前体蛋白成熟为其天然套索构象。其中一种酶切割前体蛋白,第二种酶安装必要的异肽键以建立套索结构。对可以在成熟酶的影响下环化的 MccJ25 模拟物的分析表明,MccJ25 不会自发采用近套索结构。此外,我们对前体微菌素 J25(pro-MccJ25)进行了原子细节的复制交换分子动力学模拟,这是 MccJ25 的 21 个残基未环化的类似物,以确定在没有前导序列或成熟酶的情况下探索的构象集合。我们应用了一种称为扩散映射的非线性维度降低技术来处理模拟轨迹,以提取描述系统基本动力学运动的两个全局序参数,并确定了三种不同的途径。一条路径对应于左手套索的自发采用,其中 N 端以与天然 MccJ25 的右手拓扑相反的方向环绕 C 端。我们的计算和实验结果表明,MccJ25 前导序列及其成熟酶在促进采用右手拓扑结构方面发挥作用。

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