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p110α磷酸肌醇-3-羟基激酶在生长和代谢调节中的关键作用。

Critical role for the p110alpha phosphoinositide-3-OH kinase in growth and metabolic regulation.

作者信息

Foukas Lazaros C, Claret Marc, Pearce Wayne, Okkenhaug Klaus, Meek Stephen, Peskett Emma, Sancho Sara, Smith Andrew J H, Withers Dominic J, Vanhaesebroeck Bart

机构信息

Ludwig Institute for Cancer Research, 91 Riding House Street, London W1W 7BS, UK.

出版信息

Nature. 2006 May 18;441(7091):366-70. doi: 10.1038/nature04694. Epub 2006 Apr 12.

DOI:10.1038/nature04694
PMID:16625210
Abstract

The eight catalytic subunits of the mammalian phosphoinositide-3-OH kinase (PI(3)K) family form the backbone of an evolutionarily conserved signalling pathway; however, the roles of most PI(3)K isoforms in organismal physiology and disease are unknown. To delineate the role of p110alpha, a ubiquitously expressed PI(3)K involved in tyrosine kinase and Ras signalling, here we generated mice carrying a knockin mutation (D933A) that abrogates p110alpha kinase activity. Homozygosity for this kinase-dead p110alpha led to embryonic lethality. Mice heterozygous for this mutation were viable and fertile, but displayed severely blunted signalling via insulin-receptor substrate (IRS) proteins, key mediators of insulin, insulin-like growth factor-1 and leptin action. Defective responsiveness to these hormones led to reduced somatic growth, hyperinsulinaemia, glucose intolerance, hyperphagia and increased adiposity in mice heterozygous for the D933A mutation. This signalling function of p110alpha derives from its highly selective recruitment and activation to IRS signalling complexes compared to p110beta, the other broadly expressed PI(3)K isoform, which did not contribute to IRS-associated PI(3)K activity. p110alpha was the principal IRS-associated PI(3)K in cancer cell lines. These findings demonstrate a critical role for p110alpha in growth factor and metabolic signalling and also suggest an explanation for selective mutation or overexpression of p110alpha in a variety of cancers.

摘要

哺乳动物磷酸肌醇-3-羟基激酶(PI(3)K)家族的八个催化亚基构成了一条进化上保守的信号通路的主干;然而,大多数PI(3)K亚型在机体生理和疾病中的作用尚不清楚。为了阐明广泛表达的参与酪氨酸激酶和Ras信号传导的PI(3)K——p110α的作用,我们构建了携带敲入突变(D933A)的小鼠,该突变消除了p110α激酶活性。这种激酶失活的p110α纯合子导致胚胎致死。该突变的杂合子小鼠存活且可育,但通过胰岛素受体底物(IRS)蛋白的信号传导严重减弱,IRS蛋白是胰岛素、胰岛素样生长因子-1和瘦素作用的关键介质。对这些激素的反应性缺陷导致D933A突变杂合子小鼠的体细胞生长减少、高胰岛素血症、葡萄糖不耐受、食欲亢进和肥胖增加。与另一种广泛表达的PI(3)K亚型p110β相比,p110α的这种信号传导功能源于其对IRS信号复合物的高度选择性募集和激活,而p110β对与IRS相关的PI(3)K活性没有贡献。p110α是癌细胞系中主要的与IRS相关的PI(3)K。这些发现证明了p110α在生长因子和代谢信号传导中的关键作用,也为p110α在多种癌症中的选择性突变或过表达提供了解释。

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