Interactive mechanisms between caveolin-1 and actin filaments or vimentin intermediate filaments instruct cell mechanosensing and migration.

Interactive mechanisms between caveolin-1 and actin filaments or vimentin intermediate filaments instruct cell mechanosensing and migration.
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DOI:
10.1093/jmcb/mjac066
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发表时间:
2023-04-06
影响因子:
5.5
通讯作者:
--
中科院分区:
生物学1区
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--
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细胞机械传感是细胞通过机械传感器感知细胞外机械信号并将其传导至下游信号通路以改变细胞力学和行为的过程,参与胚胎发育(Gaetani等人,2020)、组织再生(Fu等人,2019)、炎症反应(Worbs等人,2017)和肿瘤侵袭和转移(Gargalionis et al.,2018年)。这种能力对于细胞适应机械刺激(压缩力、剪切应力、基底刚性、拓扑结构、剪切力等)至关重要。并维持体内平衡(Chen等人,2017年)。力传递到细胞的主要部位是质膜(PM)(Martino等人,2018年)。作为一种动态力学传感器,微囊是具有特定脂质和蛋白质组成的PM内陷微区,广泛存在于机械挑战组织(肌肉、肺、血管等)中。(Del Pozo等人,2021年)。小窝可以出芽产生内吞小泡,称为小窝体,也可以解体,起到机械保护作用,
Cell mechanosensing is the process that cell senses extracellular mechanical cues through mechanosensors and transduces them to downstream signaling pathways to alter cell mechanics and behaviors, which is involved in embryonic development (Gaetani et al., 2020), tissue regeneration (Fu et al., 2019), inflammatory response ( Worbs et al., 2017), and tumor invasion and metasta-sis (Gargalionis et al., 2018). This ability is crucial for cells to adapt to mechanical stimuli (compressive force, shear stress, substrate rigidity, topology, adhesiveness, etc.) and maintain homeostasis (Chen et al., 2017). The primary site of force transmission to a cell is the plasma membrane (PM)(Martino et al., 2018). As a dynamic mechanosensor, caveolae are PM-invaginated microdomains with specific lipid and protein composition, which are widely abundant in mechanically challenged tissues (muscles, lungs, vessels, etc.)(Del Pozo et al., 2021). Caveolae can bud to generate endocytic vesicles named caveosome or undergo disassembly to play a role in mechanoprotection,
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