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细胞骨架张力积极维持迁移 T 细胞突触接触。

Cytoskeletal tension actively sustains the migratory T-cell synaptic contact.

机构信息

Koch Institute of Integrative Research, MIT, Cambridge, MA, USA.

Ragon Institute of Harvard, MIT and MGH, Cambridge, MA, USA.

出版信息

EMBO J. 2020 Mar 2;39(5):e102783. doi: 10.15252/embj.2019102783. Epub 2020 Jan 2.

Abstract

When migratory T cells encounter antigen-presenting cells (APCs), they arrest and form radially symmetric, stable intercellular junctions termed immunological synapses which facilitate exchange of crucial biochemical information and are critical for T-cell immunity. While the cellular processes underlying synapse formation have been well characterized, those that maintain the symmetry, and thereby the stability of the synapse, remain unknown. Here we identify an antigen-triggered mechanism that actively promotes T-cell synapse symmetry by generating cytoskeletal tension in the plane of the synapse through focal nucleation of actin via Wiskott-Aldrich syndrome protein (WASP), and contraction of the resultant actin filaments by myosin II. Following T-cell activation, WASP is degraded, leading to cytoskeletal unraveling and tension decay, which result in synapse breaking. Thus, our study identifies and characterizes a mechanical program within otherwise highly motile T cells that sustains the symmetry and stability of the T cell-APC synaptic contact.

摘要

当迁移性 T 细胞遇到抗原呈递细胞 (APCs) 时,它们会停止并形成称为免疫突触的径向对称、稳定的细胞间连接,这有助于交换关键的生化信息,对于 T 细胞免疫至关重要。虽然已经很好地描述了形成突触的细胞过程,但维持对称性的过程,从而维持突触的稳定性,仍然未知。在这里,我们确定了一种抗原触发的机制,该机制通过通过 Wiskott-Aldrich 综合征蛋白 (WASP) 在突触平面上通过焦点成核来产生细胞骨架张力,从而主动促进 T 细胞突触的对称性,并且通过肌球蛋白 II 收缩所得的肌动蛋白丝。在 T 细胞激活后,WASP 被降解,导致细胞骨架解体和张力衰减,从而导致突触破裂。因此,我们的研究在其他高度运动的 T 细胞中鉴定并描述了一个机械程序,该程序维持了 T 细胞-APC 突触接触的对称性和稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcf4/7049817/97b02cebff90/EMBJ-39-e102783-g002.jpg

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