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本文引用的文献

1
The structure of the inter-SH2 domain of class IA phosphoinositide 3-kinase determined by site-directed spin labeling EPR and homology modeling.通过定点自旋标记电子顺磁共振和同源建模确定的IA类磷酸肌醇3激酶的SH2结构域间结构。
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2
Identification and characterization of the autophosphorylation sites of phosphoinositide 3-kinase isoforms beta and gamma.
J Biol Chem. 2003 Mar 28;278(13):11536-45. doi: 10.1074/jbc.M210351200. Epub 2002 Dec 26.
3
Direct effects of caffeine and theophylline on p110 delta and other phosphoinositide 3-kinases. Differential effects on lipid kinase and protein kinase activities.咖啡因和茶碱对p110δ及其他磷酸肌醇3激酶的直接作用。对脂质激酶和蛋白激酶活性的不同影响。
J Biol Chem. 2002 Oct 4;277(40):37124-30. doi: 10.1074/jbc.M202101200. Epub 2002 Jul 26.
4
Small GTPases and tyrosine kinases coregulate a molecular switch in the phosphoinositide 3-kinase regulatory subunit.小GTP酶和酪氨酸激酶共同调节磷酸肌醇3激酶调节亚基中的分子开关。
Cancer Cell. 2002 Mar;1(2):181-91. doi: 10.1016/s1535-6108(02)00033-8.
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The phosphoinositide 3-kinase pathway.磷酸肌醇3激酶通路
Science. 2002 May 31;296(5573):1655-7. doi: 10.1126/science.296.5573.1655.
6
Molecular balance between the regulatory and catalytic subunits of phosphoinositide 3-kinase regulates cell signaling and survival.磷酸肌醇3激酶调节亚基与催化亚基之间的分子平衡调节细胞信号传导与存活。
Mol Cell Biol. 2002 Feb;22(3):965-77. doi: 10.1128/MCB.22.3.965-977.2002.
7
Reduced expression of the murine p85alpha subunit of phosphoinositide 3-kinase improves insulin signaling and ameliorates diabetes.磷酸肌醇3激酶的小鼠p85α亚基表达降低可改善胰岛素信号传导并改善糖尿病。
J Clin Invest. 2002 Jan;109(1):141-9. doi: 10.1172/JCI13305.
8
Class II phosphoinositide 3-kinase is activated by insulin but not by contraction in skeletal muscle.II类磷酸肌醇3激酶在骨骼肌中被胰岛素激活,但不被收缩激活。
Arch Biochem Biophys. 2001 Dec 15;396(2):244-8. doi: 10.1006/abbi.2001.2587.
9
The phosphatidylinositol 3'-kinase p85alpha gene is an oncogene in human ovarian and colon tumors.磷脂酰肌醇3'-激酶p85α基因是人类卵巢癌和结肠癌中的一种癌基因。
Cancer Res. 2001 Oct 15;61(20):7426-9.
10
Synthesis and function of 3-phosphorylated inositol lipids.3-磷酸化肌醇脂质的合成与功能
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体内磷酸肌醇3激酶通过其内在丝氨酸激酶活性进行的调节

Regulation of phosphoinositide 3-kinase by its intrinsic serine kinase activity in vivo.

作者信息

Foukas Lazaros C, Beeton Caroline A, Jensen Jorgen, Phillips Wayne A, Shepherd Peter R

机构信息

Department of Biochemistry and Molecular Biology, University College London, London WC1E 6BT, United Kingdom.

出版信息

Mol Cell Biol. 2004 Feb;24(3):966-75. doi: 10.1128/MCB.24.3.966-975.2004.

DOI:10.1128/MCB.24.3.966-975.2004
PMID:14729945
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC321424/
Abstract

One potentially important mechanism for regulating class Ia phosphoinositide 3-kinase (PI 3-kinase) activity is autophosphorylation of the p85 alpha adapter subunit on Ser608 by the intrinsic protein kinase activity of the p110 catalytic subunit, as this downregulates the lipid kinase activity in vitro. Here we investigate whether this phosphorylation can occur in vivo. We find that p110 alpha phosphorylates p85 alpha Ser608 in vivo with significant stoichiometry. However, p110 beta is far less efficient at phosphorylating p85 alpha Ser608, identifying a potential difference in the mechanisms by which these two isoforms are regulated. The p85 alpha Ser608 phosphorylation was increased by treatment with insulin, platelet-derived growth factor, and the phosphatase inhibitor okadaic acid. The functional effects of this phosphorylation are highlighted by mutation of Ser608, which results in reduced lipid kinase activity and reduced association of the p110 alpha catalytic subunit with p85 alpha. The importance of this phosphorylation was further highlighted by the finding that autophosphorylation on Ser608 was impaired, while lipid kinase activity was increased, in a p85 alpha mutant recently discovered in human tumors. These results provide the first evidence that phosphorylation of Ser608 plays a role as a shutoff switch in growth factor signaling and contributes to the differences in functional properties of different PI 3-kinase isoforms in vivo.

摘要

调节I类磷酸肌醇3激酶(PI 3激酶)活性的一种潜在重要机制是p110催化亚基的内在蛋白激酶活性使p85α衔接子亚基在Ser608位点发生自磷酸化,因为这在体外会下调脂质激酶活性。在此,我们研究这种磷酸化是否能在体内发生。我们发现p110α在体内能以显著的化学计量比使p85α的Ser608位点发生磷酸化。然而,p110β使p85α的Ser608位点磷酸化的效率要低得多,这表明这两种同工型的调节机制存在潜在差异。用胰岛素、血小板衍生生长因子和磷酸酶抑制剂冈田酸处理可增加p85α的Ser608磷酸化。Ser608位点的突变突出了这种磷酸化的功能效应,该突变导致脂质激酶活性降低以及p110α催化亚基与p85α的结合减少。在人类肿瘤中最近发现的一种p85α突变体中,Ser608位点的自磷酸化受损,而脂质激酶活性增加,这一发现进一步突出了这种磷酸化的重要性。这些结果提供了首个证据,即Ser608位点的磷酸化在生长因子信号传导中起关闭开关的作用,并导致不同PI 3激酶同工型在体内功能特性的差异。