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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Lymphocyte mechanotransduction: The regulatory role of cytoskeletal dynamics in signaling cascades and effector functions
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Lymphocyte mechanotransduction: The regulatory role of cytoskeletal dynamics in signaling cascades and effector functions

机译:淋巴细胞机械调节:细胞骨骼动力学在信号传导级联和效应器功能中的调节作用

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Abstract The process of mechanotransduction, that is, conversion of physical forces into biochemical signaling cascades, has attracted interest as a potential mechanism for regulating immune cell activation. The cytoskeleton serves a critical role in a variety of lymphocyte functions, from cellular activation, proliferation, adhesion, and migration, to creation of stable immune synapses, and execution of functions such as directed cytotoxicity. Though traditionally considered a scaffold that enables formation of signaling complexes that maintain stable immune synapses, the cytoskeleton was additionally shown to play a dynamic role in lymphocyte signaling cascades by sensing physical cues such as substrate rigidity, and transducing these mechanical features into chemical signals that ultimately influence lymphocyte effector functions. It is thus becoming clear that cytoskeletal dynamics are essential for the lymphocyte response, beyond the role of the cytoskeleton as a stationary framework. Here, we describe the transduction of extracellular forces to activate signaling pathways and effector functions mediated through the cytoskeleton in lymphocytes. We also highlight recent discoveries of cytoskeleton‐mediated mechanotransduction on intracellular signaling pathways in NK cells.
机译:摘要机械手机的过程,即物理力转化为生化信号传导级联,吸引了兴趣作为调节免疫细胞活化的潜在机制。细胞骨架在各种淋巴细胞功能中,从细胞活化,增殖,粘附和迁移,稳定的免疫突触的产生,以及诸如指向细胞毒性等功能的致力作用。虽然传统上被认为是能够形成保持稳定的免疫突触的信号络合物的支架,但另外显示细胞骨架,通过感测诸如衬底刚性等物理提示,并将这些机械特征转换为最终的化学信号,在淋巴细胞信号传导级联中起动力作用。影响淋巴细胞效应器功能。因此,显而易见的是,细胞骨骼动态对于淋巴细胞反应至关重要,超出了细胞骨架作为静止框架的作用。这里,我们描述了细胞外力的转导,以激活通过淋巴细胞中细胞骨架介导的信号传导途径和效应函数。我们还突出了NK细胞内细胞内信号通路上的最近近期的细胞骨架介导的机电机构。

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