Department of Physics , National University of Singapore , 117542 Singapore.
Mechanobiology Institute , National University of Singapore , 117411 Singapore.
Biochemistry. 2019 Nov 26;58(47):4696-4709. doi: 10.1021/acs.biochem.9b00453. Epub 2019 Aug 1.
Life is an emergent property of transient interactions between biomolecules and other organic and inorganic molecules that somehow leads to harmony and order. Measurement and quantitation of these biological interactions are of value to scientists and are major goals of biochemistry, as affinities provide insight into biological processes. In an organism, these interactions occur in the context of forces and the need for a consideration of binding affinities in the context of a changing mechanical landscape necessitates a new way to consider the biochemistry of protein-protein interactions. In the past few decades, the field of mechanobiology has exploded, as both the appreciation of, and the technical advances required to facilitate the study of, how forces impact biological processes have become evident. The aim of this review is to introduce the concept of force dependence of biomolecular interactions and the requirement to be able to measure force-dependent binding constants. The focus of this discussion will be on the mechanotransduction that occurs at the integrin-mediated adhesions with the extracellular matrix and the major mechanosensors talin and vinculin. However, the approaches that the cell uses to sense and respond to forces can be applied to other systems, and this therefore provides a general discussion of the force dependence of biomolecule interactions.
生命是生物分子与其他有机和无机分子之间短暂相互作用的突现属性,这种相互作用以某种方式导致了和谐与秩序。这些生物相互作用的测量和定量对于科学家来说具有价值,也是生物化学的主要目标,因为亲和力为生物过程提供了深入的了解。在生物体中,这些相互作用发生在力的背景下,需要考虑结合亲和力在不断变化的力学景观背景下,这就需要一种新的方法来考虑蛋白质-蛋白质相互作用的生物化学。在过去的几十年中,机械生物学领域蓬勃发展,因为人们越来越意识到力对生物过程的影响,并且需要技术进步来促进对其的研究。本综述的目的是介绍生物分子相互作用的力依赖性以及测量力依赖性结合常数的要求的概念。本讨论的重点将放在整合素介导的细胞与细胞外基质之间的黏附处发生的机械转导,以及主要的机械感受器talin 和 vinculin 上。然而,细胞用于感知和响应力的方法可以应用于其他系统,因此这为生物分子相互作用的力依赖性提供了一般性讨论。