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Stress-induced ECM alteration modulates cellular microRNAs that feedback to readjust the extracellular environment and cell behavior

机译:应激诱导的ECM改变可调节细胞microRNA并反馈以重新调节细胞外环境和细胞行为

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摘要

The extracellular environment is a complex entity comprising of the extracellular matrix (ECM) and regulatory molecules. It is highly dynamic and under cell-extrinsic stress, transmits the stressed organism’s state to each individual ECM-connected cell. microRNAs (miRNAs) are regulatory molecules involved in virtually all the processes in the cell, especially under stress. In this review, we analyse how miRNA expression is regulated downstream of various signal transduction pathways induced by changes in the extracellular environment. In particular, we focus on the muscular dystrophy-associated cell adhesion molecule dystroglycan capable of signal transduction. Then we show how exactly the same miRNAs feedback to regulate the extracellular environment. The ultimate goal of this bi-directional signal transduction process is to change cell behavior under cell-extrinsic stress in order to respond to it accordingly.
机译:细胞外环境是由细胞外基质(ECM)和调节分子组成的复杂实体。它是高度动态的,并且在细胞外源压力下,将受压力的生物体状态传递给每个与ECM连接的细胞。 microRNA(miRNA)是实际上参与细胞内所有过程的调节分子,尤其是在压力下。在这篇综述中,我们分析了如何在细胞外环境变化诱导的各种信号转导途径下游调控miRNA表达。特别地,我们专注于能够进行信号转导的肌肉营养不良相关的细胞粘附分子营养不良聚糖。然后,我们展示了完全相同的miRNA如何反馈调节细胞外环境。这种双向信号转导过程的最终目标是改变细胞外源性应激下的细胞行为,以便对其做出相应的响应。

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