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细菌鞭毛马达作为一种多模式生物传感器。

Bacterial flagellar motor as a multimodal biosensor.

机构信息

Centre for Synthetic and Systems Biology, School of Biological Sciences, The University of Edinburgh, Edinburgh, United Kingdom.

Laboratoire Jean Perrin, Sorbonne Université, Paris, France.

出版信息

Methods. 2021 Sep;193:5-15. doi: 10.1016/j.ymeth.2020.06.012. Epub 2020 Jul 5.

Abstract

Bacterial Flagellar Motor is one of nature's rare rotary molecular machines. It enables bacterial swimming and it is the key part of the bacterial chemotactic network, one of the best studied chemical signalling networks in biology, which enables bacteria to direct its movement in accordance with the chemical environment. The network can sense down to nanomolar concentrations of specific chemicals on the time scale of seconds. Motor's rotational speed is linearly proportional to the electrochemical gradients of either proton or sodium driving ions, while its direction is regulated by the chemotactic network. Recently, it has been discovered that motor is also a mechanosensor. Given these properties, we discuss the motor's potential to serve as a multifunctional biosensor and a tool for characterising and studying the external environment, the bacterial physiology itself and single molecular motor biophysics.

摘要

细菌鞭毛马达是自然界罕见的旋转分子机器之一。它使细菌能够游动,是细菌趋化网络的关键部分。趋化网络是生物学中研究得最好的化学信号网络之一,使细菌能够根据化学环境来引导其运动。该网络能够在秒的时间尺度上检测到低至纳摩尔浓度的特定化学物质。马达的旋转速度与质子或钠离子驱动离子的电化学梯度成正比,而其方向则由趋化网络调节。最近,人们发现马达也是一种机械感受器。鉴于这些特性,我们讨论了马达作为多功能生物传感器的潜力,以及用于描述和研究外部环境、细菌生理学本身和单个分子马达生物物理学的工具。

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