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Mechanical systems biology of C. elegans touch sensation

机译:秀丽隐杆线虫触觉的机械系统生物学

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摘要

The sense of touch informs us of the physical properties of our surroundings and is a critical aspect of communication. Before touches are perceived, mechanical signals are transmitted quickly and reliably from the skin’s surface to mechano-electrical transduction channels embedded within specialized sensory neurons. We are just beginning to understand how soft tissues participate in force transmission and how they are deformed. Here, we review empirical and theoretical studies of single molecules and molecular ensembles thought to be involved in mechanotransmission and apply the concepts emerging from this work to the sense of touch. We focus on the nematode Caenorhabditis elegans as a well-studied model for touch sensation in which mechanics can be studied on the molecular, cellular, and systems level. Finally, we conclude that force transmission is an emergent property of macromolecular cellular structures that mutually stabilize one another.
机译:触觉会告诉我们周围环境的物理属性,并且是沟通的重要方面。在感知到触摸之前,机械信号会从皮肤表面快速可靠地传输到嵌入专门感觉神经元内的机电转换通道。我们才刚刚开始了解软组织如何参与力传递以及它们如何变形。在这里,我们回顾对涉及机械传递的单分子和分子集成体的经验和理论研究,并将这项工作中出现的概念应用到触觉上。我们将线虫秀丽隐杆线虫作为一种研究良好的触觉模型,其中可以在分子,细胞和系统水平上研究力学。最后,我们得出结论,力传递是彼此稳定的大分子细胞结构的新兴属性。

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