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Biophysical Tools to Study Cellular Mechanotransduction

机译:研究细胞机械转导的生物物理工具

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摘要

The cell membrane is the interface that volumetrically isolates cellular components from the cell’s environment. Proteins embedded within and on the membrane have varied biological functions: reception of external biochemical signals, as membrane channels, amplification and regulation of chemical signals through secondary messenger molecules, controlled exocytosis, endocytosis, phagocytosis, organized recruitment and sequestration of cytosolic complex proteins, cell division processes, organization of the cytoskeleton and more. The membrane’s bioelectrical role is enabled by the physiologically controlled release and accumulation of electrochemical potential modulating molecules across the membrane through specialized ion channels (e.g., Na+, Ca2+, K+ channels). The membrane’s biomechanical functions include sensing external forces and/or the rigidity of the external environment through force transmission, specific conformational changes and/or signaling through mechanoreceptors (e.g., platelet endothelial cell adhesion molecule (PECAM), vascular endothelial (VE)-cadherin, epithelial (E)-cadherin, integrin) embedded in the membrane. Certain mechanical stimulations through specific receptor complexes induce electrical and/or chemical impulses in cells and propagate across cells and tissues. These biomechanical sensory and biochemical responses have profound implications in normal physiology and disease. Here, we discuss the tools that facilitate the understanding of mechanosensitive adhesion receptors. This article is structured to provide a broad biochemical and mechanobiology background to introduce a freshman mechano-biologist to the field of mechanotransduction, with deeper study enabled by many of the references cited herein.
机译:细胞膜是将细胞成分与细胞环境隔离的界面。嵌入膜内和膜上的蛋白质具有多种生物学功能:作为膜通道的外部生化信号的接收,通过次级信使分子的化学信号的扩增和调节,胞吐作用的控制,内吞作用,吞噬作用,胞质复合蛋白的有组织募集和螯合,细胞分裂过程,细胞骨架的组织等等。通过专门的离子通道(例如,Na + ,Ca 2 + ,K等)通过电势调节分子在膜上的生理控制释放和积累,从而实现了膜的生物电作用。 + 渠道)。膜的生物力学功能包括通过力传递,特定的构象变化和/或通过机械感受器(例如,血小板内皮细胞粘附分子(PECAM),血管内皮(VE)-钙黏着蛋白,上皮(E)-钙黏着蛋白,整联蛋白)嵌入膜中。通过特定受体复合物的某些机械刺激在细胞中诱导电和/或化学脉冲,并在细胞和组织中传播。这些生物力学的感觉和生化反应对正常的生理和疾病具有深远的影响。在这里,我们讨论有助于理解机械敏感粘附受体的工具。本文的结构旨在提供广泛的生化和力学生物学背景,以将新生的力学生物学家介绍给机械转导领域,并通过本文引用的许多参考文献进行更深入的研究。

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