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T细胞免疫突触处的微管组织中心/高尔基体复合体

The MTOC/Golgi Complex at the T-Cell Immunological Synapse.

作者信息

Roig-Martinez Meritxell, Saavedra-Lopez Elena, Casanova Paola V, Cribaro George P, Barcia Carlos

机构信息

Institut de Neurociències, Neuroimmunity Research Group, Department of Biochemistry and Molecular Biology, School of Medicine, Lab M2-107, Universitat Autònoma de Barcelona, Barcelona, Spain.

出版信息

Results Probl Cell Differ. 2019;67:223-231. doi: 10.1007/978-3-030-23173-6_9.

Abstract

T cells effectively explore the tissue in search for antigens. When activated, they dedicate a big amount of energy and resources to arrange a complex structure called immunological synapse (IS), containing a particular distribution of molecules defined as supramolecular activation clusters (SMACs), and become polarized toward the target cell in a manner that channels the information specifically. This arrangement is symmetrical and requires the polarization of the MTOC and the Golgi to be operational, especially for the proper delivery of lytic granules and the recycling of molecules three dimensionally segregated at the clustered interface. Alternatively, after the productive encounter, T cells need to rearrange again to newly navigate through the tissue, changing back to a motile state called immunological kinapse (IK). In this IK state, the MTOC and the Golgi apparatus are repositioned and recruited at the back of the T cell to facilitate motility, while the established symmetry of the elements of the SMACs is broken and distributed in a different pattern. Both states, IS and IK, are interchangeable and are mainly orchestrated by the MTOC/Golgi complex, being critical for an effective immune response.

摘要

T细胞有效地在组织中探寻抗原。激活后,它们会投入大量能量和资源来构建一种名为免疫突触(IS)的复杂结构,其中包含一种被定义为超分子激活簇(SMACs)的特定分子分布,并以一种能特异性传递信息的方式向靶细胞极化。这种排列是对称的,需要微管组织中心(MTOC)和高尔基体极化才能发挥作用,特别是对于溶细胞颗粒的正确递送以及在簇状界面三维分离的分子的循环利用。另外,在产生有效接触后,T细胞需要再次重新排列,以便在组织中重新导航,转变回一种名为免疫运动突触(IK)的运动状态。在这种IK状态下,MTOC和高尔基体重新定位并被招募到T细胞的后部以促进运动,而SMACs元件已建立的对称性被打破并以不同模式分布。IS和IK这两种状态是可互换的,主要由MTOC/高尔基体复合体协调,对有效的免疫反应至关重要。

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