细胞因子与白细胞介素-2受体γ链相互作用的信号传导。

J B Demoulin, J C Renauld
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引用次数: 0

摘要

白细胞介素-2 (IL-2)受体γ链(gammac)是由IL-2、IL-4、IL-7、IL-9和IL-15使用的受体复合物共享的,它们都是参与淋巴细胞发育和/或激活的细胞因子。Gammac在生理和功能上与JAK3酪氨酸激酶相关。这对分子可能被认为是信号级联反应的触发器,在与细胞因子特异性受体组分异二聚化时诱导JAK1的激活。JAK1, JAK3和其他酪氨酸激酶,其性质因细胞因子而异,使受体磷酸化,从而为信号分子创造对接位点。其中,PI 3-激酶及其下游效应物在每一种与γ相互作用的细胞因子的增殖和细胞凋亡抑制的信号传导过程中起着核心作用,尽管细胞因子之间的激活机制可能不同。其他重要的介质——STAT转录因子——调节特定基因的表达。IL-2、IL-7、IL-9和IL-15激活STAT3和STAT5,而IL-4激活STAT6。这些细胞因子还会触发特定的通路,如MAP激酶级联反应IL-2和IL-15,以及免疫球蛋白基因V-D-J重排反应IL-7。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signalling by cytokines interacting with the interleukin-2 receptor gamma chain.

The interleukin-2 (IL-2) receptor gamma chain (gammac) is shared by receptor complexes used by IL-2, IL-4, IL-7, IL-9 and IL-15, all of which are cytokines involved in lymphocyte development and/or activation. Gammac is physically and functionally associated with the JAK3 tyrosine kinase. This molecular pair may be considered as the trigger of the signalling cascades, inducing the activation of JAK1 upon heterodimerization with a cytokine-specific receptor component. JAK1, JAK3 and other tyrosine kinases, the nature of which varies between cytokines, phosphorylate the receptor, thereby creating docking sites for signalling molecules. Among them, PI 3-kinase and downstream effectors play a central role in the signalling processes involved in proliferation and inhibition of apoptosis for every gammac-interacting cytokine, although the mechanism of activation may vary between cytokines. Other important mediators--STAT transcription factors--regulate the expression of specific genes. IL-2, IL-7, IL-9 and IL-15 activate STAT3 and STAT5, in contrast to IL-4, which activates STAT6. These cytokines also trigger specific pathways, such as the MAP kinase cascade for IL-2 and IL-15, and the cascade responsible for immunoglobulin gene V-D-J rearrangement in response to IL-7.

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