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首页> 外文期刊>The Journal of Experomental Medicine >EAT-2, a SAP-like adaptor, controls NK cell activation through phospholipase Cγ, Ca++, and Erk, leading to granule polarization
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EAT-2, a SAP-like adaptor, controls NK cell activation through phospholipase Cγ, Ca++, and Erk, leading to granule polarization

机译:EAT-2是类SAP的衔接子,可通过磷脂酶Cγ,Ca ++和Erk控制NK细胞的活化,从而导致颗粒极化

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Ewing’s sarcoma-associated transcript 2 (EAT-2) is an Src homology 2 domain-containing intracellular adaptor related to signaling lymphocytic activation molecule (SLAM)–associated protein (SAP), the X-linked lymphoproliferative gene product. Both EAT-2 and SAP are expressed in natural killer (NK) cells, and their combined expression is essential for NK cells to kill abnormal hematopoietic cells. SAP mediates this function by coupling SLAM family receptors to the protein tyrosine kinase Fyn and the exchange factor Vav, thereby promoting conjugate formation between NK cells and target cells. We used a variety of genetic, biochemical, and imaging approaches to define the molecular and cellular mechanisms by which EAT-2 controls NK cell activation. We found that EAT-2 mediates its effects in NK cells by linking SLAM family receptors to phospholipase Cγ, calcium fluxes, and Erk kinase. These signals are triggered by one or two tyrosines located in the carboxyl-terminal tail of EAT-2 but not found in SAP. Unlike SAP, EAT-2 does not enhance conjugate formation. Rather, it accelerates polarization and exocytosis of cytotoxic granules toward hematopoietic target cells. Hence, EAT-2 promotes NK cell activation by molecular and cellular mechanisms distinct from those of SAP. These findings explain the cooperative and essential function of these two adaptors in NK cell activation.
机译:Ewing的肉瘤相关转录本2(EAT-2)是包含Src同源性2结构域的细胞内衔接子,与信号转导的淋巴细胞活化分子(SLAM)相关的蛋白质(SAP)(X连锁的淋巴增生性基因产物)有关。 EAT-2和SAP均在自然杀伤(NK)细胞中表达,它们的联合表达对于NK细胞杀死异常造血细胞至关重要。 SAP通过将SLAM家族受体与蛋白酪氨酸激酶Fyn和交换因子Vav偶联来介导此功能,从而促进NK细胞与靶细胞之间的缀合物形成。我们使用了多种遗传,生化和成像方法来定义EAT-2控制NK细胞活化的分子和细胞机制。我们发现EAT-2通过将SLAM家族受体连接至磷脂酶Cγ,钙通量和Erk激酶介导其在NK细胞中的作用。这些信号由位于EAT-2羧基末端的一个或两个酪氨酸触发,但在SAP中找不到。与SAP不同,EAT-2不会增强结合物的形成。相反,它加速了细胞毒性颗粒向造血靶细胞的极化和胞吐作用。因此,EAT-2通过不同于SAP的分子和细胞机制促进NK细胞活化。这些发现解释了这两个衔接子在NK细胞激活中的协同和基本功能。

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