Katoh Kazuo
Laboratory of Human Anatomy and Cell Biology, Faculty of Health Sciences, Tsukuba University of Technology, Tsukuba 305-8521, Japan.
Biomolecules. 2025 Jan 23;15(2):166. doi: 10.3390/biom15020166.
Mechano-signal transduction is a process in which cells perceive extracellular mechanical signals, convert them into intracellular biochemical signals, and produce a response. Integrins are cell surface receptors that sense the extracellular mechanical cues and bind to the extracellular matrix (ECM). This binding induces integrin clustering and activation. Cytoplasmic tails of activated integrins interact and induce cytoskeleton tensions via several adaptor proteins. Integrins monitor extracellular stiffness via cytoskeleton tensions and modulate ECM stiffness via downstream signaling pathways regulating the expression of genes of ECM components. Integrin-mediated mechano-transduction is very crucial for the cell as it regulates the cell physiology both in normal and diseased conditions according to extracellular mechanical cues. It regulates cell proliferation, survival, and migration. Abnormal mechanical cues such as extreme and prolonged mechanical stress result in pathological conditions including fibrosis, cancers, skin, and autoimmune disorders. This paper aims to explore the role of integrins and their associated proteins in mechano-signal transduction. It highlights the integrins and their associated proteins as targets for therapy development. Furthermore, it also presents the challenges to the targeted drug development, which can be drug resistance and cytotoxicity. It is concluded in this paper that research on integrin-mediated mechano-signal transduction and its relationship with cell physiology and pathologies will be an important step towards the development of effective therapies.
机械信号转导是一个细胞感知细胞外机械信号、将其转化为细胞内生化信号并产生反应的过程。整合素是细胞表面受体,可感知细胞外机械信号并与细胞外基质(ECM)结合。这种结合会诱导整合素聚集和激活。活化整合素的细胞质尾巴通过几种衔接蛋白相互作用并诱导细胞骨架张力。整合素通过细胞骨架张力监测细胞外硬度,并通过调节ECM成分基因表达的下游信号通路调节ECM硬度。整合素介导的机械转导对细胞非常关键,因为它根据细胞外机械信号在正常和患病条件下调节细胞生理。它调节细胞增殖、存活和迁移。异常的机械信号,如极端和长期的机械应力,会导致包括纤维化、癌症、皮肤病和自身免疫性疾病在内的病理状况。本文旨在探讨整合素及其相关蛋白在机械信号转导中的作用。它强调整合素及其相关蛋白是治疗开发的靶点。此外,它还提出了靶向药物开发面临的挑战,即耐药性和细胞毒性。本文得出结论,对整合素介导的机械信号转导及其与细胞生理和病理关系的研究将是朝着开发有效疗法迈出的重要一步。