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枯草芽孢杆菌大纤维的扭曲状态反映了细胞壁的结构状态。

Twisted states of Bacillus subtilis macrofibers reflect structural states of the cell wall.

作者信息

Mendelson N H, Favre D, Thwaites J J

出版信息

Proc Natl Acad Sci U S A. 1984 Jun;81(11):3562-6. doi: 10.1073/pnas.81.11.3562.

Abstract

Static and dynamic studies of helical Bacillus subtilis macrofibers reveal that a spectrum of twisted states exists ranging from tight left-handed structures with twist equal to approximately equal to 40 left turns per mm to tight right-handed structures with twist equal to 57 right turns per mm. In the lytic-deficient strain FJ7 , twist varies as a function of growth temperature above or below 39 degrees C, where there is zero twist. The relationship between the temperature (below 39 degrees C) at which right-hand structures are produced to the time it takes for them to begin the inversion process in which they become left-handed following transfer to 48 degrees C reveals that structures with less twist are more rapidly converted to left-handedness than are those with higher values of twist. The initial response of live macrofibers to digestion by lysozyme consists of "relaxation" motions in which the twist of both left- and right-handed structures changes towards the right-hand end of the spectrum. The rate of relaxation is approximately equal to 5-fold higher at the left-hand end than at the right-hand end. These findings suggest that cell wall polymers can assume a range of structural states during helical growth and that these determine the quantitative aspects of macrofiber shape as well as the sensitivity of walls to attack by lysozyme.

摘要

枯草芽孢杆菌螺旋状大纤维的静态和动态研究表明,存在一系列扭曲状态,范围从每毫米约40个左旋的紧密左旋结构到每毫米57个右旋的紧密右旋结构。在裂解缺陷菌株FJ7中,在39摄氏度以上或以下,扭曲随生长温度而变化,在39摄氏度时扭曲为零。产生右手结构的温度(低于39摄氏度)与它们在转移到48摄氏度后开始转变为左手结构的反转过程所需时间之间的关系表明,扭曲较小的结构比扭曲值较高的结构更快地转变为左旋。活的大纤维对溶菌酶消化的初始反应包括“松弛”运动,其中左旋和右旋结构的扭曲都朝着光谱的右手端变化。左手端的松弛速率比右手端高约5倍。这些发现表明,细胞壁聚合物在螺旋生长过程中可以呈现一系列结构状态,并且这些状态决定了大纤维形状的定量方面以及细胞壁对溶菌酶攻击的敏感性。

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