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. 2017 Dec:231:71-78.
doi: 10.1016/j.bpc.2017.03.010. Epub 2017 Mar 30.

High-pressure microscopy for tracking dynamic properties of molecular machines

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High-pressure microscopy for tracking dynamic properties of molecular machines

Masayoshi Nishiyama. Biophys Chem. 2017 Dec.

Abstract

High-pressure microscopy is one of the powerful techniques to visualize the effects of hydrostatic pressures on research targets. It could be used for monitoring the pressure-induced changes in the structure and function of molecular machines in vitro and in vivo. This review focuses on the dynamic properties of the assemblies and machines, analyzed by means of high-pressure microscopy measurement. We developed a high-pressure microscope that is optimized both for the best image formation and for the stability to hydrostatic pressure up to 150 MPa. Application of pressure could change polymerization and depolymerization processes of the microtubule cytoskeleton, suggesting a modulation of the intermolecular interaction between tubulin molecules. A novel motility assay demonstrated that high hydrostatic pressure induces counterclockwise (CCW) to clockwise (CW) reversals of the Escherichia coli flagellar motor. The present techniques could be extended to study how molecular machines in complicated systems respond to mechanical stimuli.

Keywords: Bacterial flagellar motor; High-pressure microscope; Mechanobiology; Microtubule; Molecular motor.

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