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脂质激酶 p110β/p85β 的结构阐明了一种不寻常的 SH2 结构域介导的抑制机制。

Structure of lipid kinase p110β/p85β elucidates an unusual SH2-domain-mediated inhibitory mechanism.

机构信息

Medical Research Council Laboratory of Molecular Biology, Hills Road, Cambridge CB2 0QH, UK.

出版信息

Mol Cell. 2011 Mar 4;41(5):567-78. doi: 10.1016/j.molcel.2011.01.026.

Abstract

Phosphoinositide 3-kinases (PI3Ks) are essential for cell growth, migration, and survival. The structure of a p110β/p85β complex identifies an inhibitory function for the C-terminal SH2 domain (cSH2) of the p85 regulatory subunit. Mutagenesis of a cSH2 contact residue activates downstream signaling in cells. This inhibitory contact ties up the C-terminal region of the p110β catalytic subunit, which is essential for lipid kinase activity. In vitro, p110β basal activity is tightly restrained by contacts with three p85 domains: the cSH2, nSH2, and iSH2. RTK phosphopeptides relieve inhibition by nSH2 and cSH2 using completely different mechanisms. The binding site for the RTK's pYXXM motif is exposed on the cSH2, requiring an extended RTK motif to reach and disrupt the inhibitory contact with p110β. This contrasts with the nSH2 where the pY-binding site itself forms the inhibitory contact. This establishes an unusual mechanism by which p85 SH2 domains contribute to RTK signaling specificities.

摘要

磷酸肌醇 3-激酶(PI3Ks)对于细胞的生长、迁移和存活是必不可少的。p110β/p85β 复合物的结构确定了 p85 调节亚基的 C 端 SH2 结构域(cSH2)的抑制功能。cSH2 接触残基的突变使细胞内的下游信号转导激活。这种抑制接触束缚了 p110β 催化亚基的 C 端区域,这对于脂质激酶活性是必需的。在体外,p110β 的基础活性受到与三个 p85 结构域的接触的严格限制:cSH2、nSH2 和 iSH2。RTK 磷酸肽通过完全不同的机制使用 nSH2 和 cSH2 来解除抑制。RTK 的 pYXXM 基序的结合位点暴露在 cSH2 上,需要延伸的 RTK 基序来达到并破坏与 p110β 的抑制接触。这与 nSH2 形成鲜明对比,nSH2 中 pY 结合位点本身形成抑制接触。这建立了一个不寻常的机制,其中 p85 SH2 结构域有助于 RTK 信号的特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8251/3670040/72f2f294868e/fx1.jpg

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