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成瘾抗毒素MazE的结构转变能量学:程序性细菌细胞死亡是否依赖于抗毒素的内在柔性本质?

Energetics of structural transitions of the addiction antitoxin MazE: is a programmed bacterial cell death dependent on the intrinsically flexible nature of the antitoxins?

作者信息

Lah Jurij, Simic Mario, Vesnaver Gorazd, Marianovsky Irina, Glaser Gad, Engelberg-Kulka Hanna, Loris Remy

机构信息

University of Ljubljana, Faculty of Chemistry and Chemical Technology, Askerceva 5, 1000 Ljubljana, Slovenia.

出版信息

J Biol Chem. 2005 Apr 29;280(17):17397-407. doi: 10.1074/jbc.M501128200. Epub 2005 Feb 27.

DOI:10.1074/jbc.M501128200
PMID:15735309
Abstract

The Escherichia coli mazEF addiction module plays a crucial role in the cell death program that is triggered under various stress conditions. It codes for the toxin MazF and the antitoxin MazE, which interferes with the lethal action of the toxin. To better understand the role of various conformations of MazE in bacterial life, its order-disorder transitions were monitored by differential scanning calorimetry, spectropolarimetry, and fluorimetry. The changes in spectral and thermodynamic properties accompanying MazE dimer denaturation can be described in terms of a compensating reversible process of the partial folding of the unstructured C-terminal half (high mean net charge, low mean hydrophobicity) and monomerization coupled with the partial unfolding of the structured N-terminal half (low mean net charge, high mean hydrophobicity). At pH<or=4.5 and T<50 degrees C, the unstructured polypeptide chains of the MazE dimer fold into (pre)molten globule-like conformations that thermally stabilize the dimeric form of the protein. The simulation based on the thermodynamic and structural information on various addiction modules suggests that both the conformational adaptability of the dimeric antitoxin form (binding to the toxins and DNA) and the reversible transformation to the more flexible monomeric form are essential for the regulation of bacterial cell life and death.

摘要

大肠杆菌mazEF成瘾模块在各种应激条件下触发的细胞死亡程序中起着关键作用。它编码毒素MazF和抗毒素MazE,后者可干扰毒素的致死作用。为了更好地理解MazE的各种构象在细菌生命中的作用,通过差示扫描量热法、旋光光谱法和荧光法监测了其有序-无序转变。伴随MazE二聚体变性的光谱和热力学性质变化可以用无结构的C端一半(平均净电荷高,平均疏水性低)的部分折叠和单体化与结构化的N端一半(平均净电荷低,平均疏水性高)的部分解折叠的补偿性可逆过程来描述。在pH≤4.5且T<50℃时,MazE二聚体的无结构多肽链折叠成(预)熔球样构象,从而热稳定蛋白质的二聚体形式。基于各种成瘾模块的热力学和结构信息的模拟表明,二聚体抗毒素形式的构象适应性(与毒素和DNA结合)以及向更灵活的单体形式的可逆转变对于细菌细胞生死的调节都是必不可少的。

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