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树突状细胞突触:致力于T细胞激活的一生。

The Dendritic Cell Synapse: A Life Dedicated to T Cell Activation.

作者信息

Benvenuti Federica

机构信息

Cellular Immunology, International Centre for Genetic Engineering and Biotechnology , Trieste , Italy.

出版信息

Front Immunol. 2016 Mar 7;7:70. doi: 10.3389/fimmu.2016.00070. eCollection 2016.

Abstract

T-cell activation within immunological synapses is a complex process whereby different types of signals are transmitted from antigen-presenting cells to T cells. The molecular strategies developed by T cells to interpret and integrate these signals have been systematically dissected in recent years and are now in large part understood. On the other side of the immune synapse, dendritic cells (DCs) participate actively in synapse formation and maintenance by remodeling of membrane receptors and intracellular content. However, the details of such changes have been only partially characterized. The DCs actin cytoskeleton has been one of the first systems to be identified as playing an important role in T-cell priming and some of the underlying mechanisms have been elucidated. Similarly, the DCs microtubule cytoskeleton undergoes major spatial changes during synapse formation that favor polarization of the DCs subcellular space toward the interacting T cell. Recently, we have begun to investigate the trafficking machinery that controls polarized delivery of endosomal vesicles at the DC-T immune synapse with the aim of understanding the functional relevance of polarized secretion of soluble factors during T-cell priming. Here, we will review the current knowledge of events occurring in DCs during synapse formation and discuss the open questions that still remain unanswered.

摘要

免疫突触内的T细胞活化是一个复杂的过程,在此过程中,不同类型的信号从抗原呈递细胞传递至T细胞。近年来,T细胞用于解读和整合这些信号的分子策略已得到系统剖析,目前在很大程度上已为人所知。在免疫突触的另一侧,树突状细胞(DCs)通过重塑膜受体和细胞内成分,积极参与突触的形成和维持。然而,此类变化的细节仅得到部分表征。DCs的肌动蛋白细胞骨架是最早被确定在T细胞启动中起重要作用的系统之一,一些潜在机制已得到阐明。同样,DCs的微管细胞骨架在突触形成过程中会发生重大空间变化,这有利于DCs亚细胞空间向相互作用的T细胞极化。最近,我们开始研究在DC-T免疫突触处控制内体囊泡极化递送的运输机制,目的是了解T细胞启动过程中可溶性因子极化分泌的功能相关性。在此,我们将综述目前关于突触形成过程中DCs内发生事件的知识,并讨论仍未得到解答的开放性问题。

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