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The Variable Hinge Region of Novel PKCs Determines Localization to Distinct Regions of the Immunological Synapse

机译:新型PKC的可变铰链区决定了免疫突触不同区域的定位

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摘要

The immunological synapse (IS) formed between a T cell and its cognate antigen-presenting cell (APC) enables the directional secretion of cytolytic and inflammatory molecules. Synaptic architecture is established in part by a two-step cascade of novel protein kinase C (nPKC) isozymes. PKCε and PKCη arrive at the IS first, and occupy the entire synaptic membrane. Then, PKCθ accumulates in a smaller zone at the center of the contact. We investigated the molecular basis for this differential recruitment behavior using chimeric nPKC constructs and total internal reflection fluorescence microscopy. Our studies revealed that the V3 linker just N-terminal to the kinase domain plays a crucial role in specifying nPKC localization. Substitution of this linker switched the scope and the kinetics of PKCθ accumulation to that of PKCε and PKCη, and vice versa. Although the V3 was necessary for synaptic compartmentalization, it was not sufficient, as the tandem C1 domains were also required to mediate membrane association. Together, these results suggest a model whereby the V3 linker controls nPKC sub-compartmentalization after initial C1 domain-mediated accumulation at the IS.
机译:T细胞与其关联的抗原呈递细胞(APC)之间形成的免疫突触(IS)可以定向分泌细胞溶解性分子和炎性分子。突触结构部分由新型蛋白激酶C(nPKC)同工酶的两步串联建立。 PKCε和PKCη首先到达IS,并占据整个突触膜。然后,PKCθ累积在接触中心的较小区域中。我们使用嵌合nPKC构造和全内反射荧光显微镜研究了这种差异募集行为的分子基础。我们的研究表明,仅在激酶结构域N端的V3接头在指定nPKC定位中起着至关重要的作用。取代该接头将PKCθ积累的范围和动力学切换为PKCε和PKCη,反之亦然。尽管V3对于突触分隔是必需的,但它还不够,因为串联C1域也需要介导膜缔合。总之,这些结果提出了一个模型,通过该模型,V3接头在IS处最初的C1域介导的积累后,控制nPKC的子区分开。

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