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免疫突触中的肌动蛋白引擎。

Actin engine in immunological synapse.

机构信息

Immune Synapse Research Center and Cell Dynamics Research Center, School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.

出版信息

Immune Netw. 2012 Jun;12(3):71-83. doi: 10.4110/in.2012.12.3.71. Epub 2012 Jun 30.

Abstract

T cell activation and function require physical contact with antigen presenting cells at a specialized junctional structure known as the immunological synapse. Once formed, the immunological synapse leads to sustained T cell receptor-mediated signalling and stabilized adhesion. High resolution microscopy indeed had a great impact in understanding the function and dynamic structure of immunological synapse. Trends of recent research are now moving towards understanding the mechanical part of immune system, expanding our knowledge in mechanosensitivity, force generation, and biophysics of cell-cell interaction. Actin cytoskeleton plays inevitable role in adaptive immune system, allowing it to bear dynamic and precise characteristics at the same time. The regulation of mechanical engine seems very complicated and overlapping, but it enables cells to be very sensitive to external signals such as surface rigidity. In this review, we focus on actin regulators and how immune cells regulate dynamic actin rearrangement process to drive the formation of immunological synapse.

摘要

T 细胞的激活和功能需要在一个称为免疫突触的特化连接结构中与抗原呈递细胞进行物理接触。一旦形成,免疫突触就会导致持续的 T 细胞受体介导的信号转导和稳定的黏附。高分辨率显微镜确实对理解免疫突触的功能和动态结构产生了重大影响。最近的研究趋势现在正朝着理解免疫系统的力学部分发展,扩大我们在机械敏感性、力产生和细胞间相互作用的生物物理学方面的知识。肌动蛋白细胞骨架在适应性免疫系统中起着不可或缺的作用,使它能够同时具有动态和精确的特性。机械引擎的调节似乎非常复杂和重叠,但它使细胞能够对表面刚性等外部信号非常敏感。在这篇综述中,我们重点介绍了肌动蛋白调节剂以及免疫细胞如何调节动态肌动蛋白重排过程来驱动免疫突触的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/759b/3422712/6a04c31fabad/in-12-71-g001.jpg

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