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  • High-Speed Optical Traps Address Dynamics of Processive and Non-Processive Molecular Motors.

High-Speed Optical Traps Address Dynamics of Processive and Non-Processive Molecular Motors.

Methods in molecular biology (Clifton, N.J.) (2022-09-06)
Lucia Gardini, Michael S Woody, Anatolii V Kashchuk, Yale E Goldman, E Michael Ostap, Marco Capitanio
摘要

Interactions between biological molecules occur on very different time scales, from the minutes of strong protein-protein bonds, down to below the millisecond duration of rapid biomolecular interactions. Conformational changes occurring on sub-ms time scales and their mechanical force dependence underlie the functioning of enzymes (e.g., motor proteins) that are fundamental for life. However, such rapid interactions are beyond the temporal resolution of most single-molecule methods. We developed ultrafast force-clamp spectroscopy (UFFCS), a single-molecule technique based on laser tweezers that allows us to investigate early and very fast dynamics of a variety of enzymes and their regulation by mechanical load. The technique was developed to investigate the rapid interactions between skeletal muscle myosin and actin, and then applied to the study of different biological systems, from cardiac myosin to processive myosin V, microtubule-binding proteins, transcription factors, and mechanotransducer proteins. Here, we describe two different implementations of UFFCS instrumentation and protocols using either acousto- or electro-optic laser beam deflectors, and their application to the study of processive and non-processive motor proteins.

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Sigma-Aldrich
甘氨酸, ReagentPlus®, ≥99% (HPLC)
Sigma-Aldrich
葡萄糖氧化酶 来源于黑曲霉, Type X-S, lyophilized powder, 100,000-250,000 units/g solid (without added oxygen)
Sigma-Aldrich
肌酸磷酸激酶 来源于兔肌肉, Type I, salt-free, lyophilized powder, ≥150 units/mg protein