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用光学镊子测量细菌多钩的顺应性。

Compliance of bacterial polyhooks measured with optical tweezers.

作者信息

Block S M, Blair D F, Berg H C

机构信息

Rowland Institute for Science, Cambridge Massachusetts 02142.

出版信息

Cytometry. 1991;12(6):492-6. doi: 10.1002/cyto.990120605.

Abstract

In earlier work, a single-beam gradient force optical trap ("optical tweezers") was used to measure the torsional compliance of flagella in wild-type cells of Escherichia coli that had been tethered to glass by a single flagellum. This compliance was nonlinear, exhibiting a torsionally soft phase up to 180 degrees, followed by a torsionally rigid phase for larger angles. Values for the torsional spring constant in the soft phase were substantially less than estimates based on the rigidity determined for isolated flagellar filaments. It was suggested that the soft phase might correspond to wind-up of the flagellar hook, and the rigid phase to wind-up of the stiffer filament. Here, we have measured the torsional compliance of flagella on cells of an E. coli strain that produces abnormally long hooks but no filaments. The small-angle compliance of these cells, as determined from the elastic rebound of the cell body after wind-up and release, was found to be the same as for wild-type cells. This confirms that the small-angle compliance of wild-type cells is dominated by the response of the hook. Hook flexibility is likely to play a useful role in stabilizing the flagellar bundle.

摘要

在早期的研究中,单光束梯度力光阱(“光镊”)被用于测量通过单根鞭毛固定在玻璃上的大肠杆菌野生型细胞中鞭毛的扭转柔顺性。这种柔顺性是非线性的,在180度以内呈现出扭转柔软阶段,之后对于更大的角度则呈现出扭转刚性阶段。柔软阶段的扭转弹簧常数的值远小于基于对分离的鞭毛丝测定的刚性所做的估计。有人提出,柔软阶段可能对应于鞭毛钩的缠绕,而刚性阶段对应于更硬的鞭毛丝的缠绕。在此,我们测量了一种产生异常长的钩但没有鞭毛丝的大肠杆菌菌株细胞上鞭毛的扭转柔顺性。通过缠绕和释放后细胞体的弹性反弹确定,这些细胞的小角度柔顺性与野生型细胞相同。这证实了野生型细胞的小角度柔顺性主要由钩的响应主导。钩的柔韧性可能在稳定鞭毛束中发挥有益作用。

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