Constructing mechanosensitive signalling pathways de novo in synthetic cells.

IF 3.8 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
James W Hindley
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引用次数: 0

Abstract

Biological mechanotransduction enables cells to sense and respond to mechanical forces in their local environment through changes in cell structure and gene expression, resulting in downstream changes in cell function. However, the complexity of living systems obfuscates the mechanisms of mechanotransduction, and hence the study of these processes in vitro has been critical in characterising the function of existing mechanosensitive membrane proteins. Synthetic cells are biomolecular compartments that aim to mimic the organisation, functionality and behaviours of biological systems, and represent the next step in the development of in vitro cell models. In recent years, mechanosensitive channels have been incorporated into synthetic cells to create de novo mechanosensitive signalling pathways. Here, I will discuss these developments, from the molecular parts used to construct existing pathways, the functionality of such systems, and potential future directions in engineering synthetic mechanotransduction. The recapitulation of mechanotransduction in synthetic biology will facilitate an improved understanding of biological signalling through the study of molecular interactions across length scales, whilst simultaneously generating new biotechnologies that can be applied as diagnostics, microreactors and therapeutics.

在合成细胞中从头构建机械敏感信号通路。
生物机械转导通过改变细胞结构和基因表达,使细胞感知和响应局部环境中的机械力,从而导致细胞功能的下游变化。然而,生命系统的复杂性模糊了机械转导的机制,因此在体外研究这些过程对于表征现有机械敏感膜蛋白的功能至关重要。合成细胞是旨在模拟生物系统的组织、功能和行为的生物分子室,代表了体外细胞模型发展的下一步。近年来,机械敏感通道已被整合到合成细胞中,以创建全新的机械敏感信号通路。在这里,我将讨论这些发展,从用于构建现有途径的分子部分,这些系统的功能,以及工程合成机械转导的潜在未来方向。合成生物学中机械转导的重述将通过跨长度尺度的分子相互作用的研究促进对生物信号的更好理解,同时产生可应用于诊断,微反应器和治疗的新生物技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemical Society transactions
Biochemical Society transactions 生物-生化与分子生物学
CiteScore
7.80
自引率
0.00%
发文量
351
审稿时长
3-6 weeks
期刊介绍: Biochemical Society Transactions is the reviews journal of the Biochemical Society. Publishing concise reviews written by experts in the field, providing a timely snapshot of the latest developments across all areas of the molecular and cellular biosciences. Elevating our authors’ ideas and expertise, each review includes a perspectives section where authors offer comment on the latest advances, a glimpse of future challenges and highlighting the importance of associated research areas in far broader contexts.
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