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SOCS3 通过直接抑制激酶与特定的受体-JAK 复合物结合来控制细胞因子信号。

SOCS3 binds specific receptor-JAK complexes to control cytokine signaling by direct kinase inhibition.

机构信息

Department of Structural Biology, Walter and Eliza Hall Institute, Parkville, Australia.

出版信息

Nat Struct Mol Biol. 2013 Apr;20(4):469-76. doi: 10.1038/nsmb.2519. Epub 2013 Mar 3.

Abstract

The inhibitory protein SOCS3 plays a key part in the immune and hematopoietic systems by regulating signaling induced by specific cytokines. SOCS3 functions by inhibiting the catalytic activity of Janus kinases (JAKs) that initiate signaling within the cell. We determined the crystal structure of a ternary complex between mouse SOCS3, JAK2 (kinase domain) and a fragment of the interleukin-6 receptor β-chain. The structure shows that SOCS3 binds JAK2 and receptor simultaneously, using two opposing surfaces. While the phosphotyrosine-binding groove on the SOCS3 SH2 domain is occupied by receptor, JAK2 binds in a phosphoindependent manner to a noncanonical surface. The kinase-inhibitory region of SOCS3 occludes the substrate-binding groove on JAK2, and biochemical studies show that it blocks substrate association. These studies reveal that SOCS3 targets specific JAK-cytokine receptor pairs and explains the mechanism and specificity of SOCS action.

摘要

抑制蛋白 SOCS3 通过调节特定细胞因子诱导的信号,在免疫和造血系统中发挥关键作用。SOCS3 通过抑制起始细胞内信号的 Janus 激酶 (JAK) 的催化活性来发挥作用。我们确定了小鼠 SOCS3、JAK2(激酶结构域)和白细胞介素-6 受体 β 链片段之间三元复合物的晶体结构。该结构表明,SOCS3 使用两个相对的表面同时结合 JAK2 和受体。虽然 SOCS3 SH2 结构域上的磷酸酪氨酸结合槽被受体占据,但 JAK2 以非磷酸依赖性方式结合到非典型表面。SOCS3 的激酶抑制区阻塞 JAK2 的底物结合槽,生化研究表明它阻止底物结合。这些研究揭示了 SOCS3 靶向特定的 JAK-细胞因子受体对,并解释了 SOCS 作用的机制和特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f3b/3618588/a8ff7c8fe77c/nihms435299f1.jpg

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