Suppr超能文献

PIP4Kβ 与高活性 PtdIns5P-4-激酶同工型 PIP4Kα 相互作用,并调节其核定位。

PIP4Kbeta interacts with and modulates nuclear localization of the high-activity PtdIns5P-4-kinase isoform PIP4Kalpha.

机构信息

CRUK Inositide Laboratory, the Paterson Institute for Cancer Research, Wilmslow Road, Manchester, UK.

出版信息

Biochem J. 2010 Sep 1;430(2):223-35. doi: 10.1042/BJ20100341.

Abstract

The beta-isoform of PIP4K (PtdIns5P-4-kinase) regulates the levels of nuclear PtdIns5P, which in turn modulates the acetylation of the tumour suppressor p53. The crystal structure of PIP4Kbeta demonstrated that it can form a homodimer with the two subunits arranged in opposite orientations. Using MS, isoform-specific antibodies against PIP4Ks, RNAi (RNA interference) suppression and overexpression studies, we show that PIP4Kbeta interacts in vitro and in vivo with the PIP4Kalpha isoform. As the two isoforms phosphorylate the same substrate to generate the same product, the interaction could be considered to be functionally redundant. However, contrary to expectation, we find that PIP4Kbeta has 2000-fold less activity towards PtdIns5P compared with PIP4Kalpha, and that the majority of PIP4K activity associated with PIP4Kbeta comes from its interaction with PIP4Kalpha. Furthermore, PIP4Kbeta can modulate the nuclear localization of PIP4Kalpha, and PIP4Kalpha has a role in regulating PIP4Kbeta functions. The results of the present study suggest a rationale for the functional interaction between PIP4Kalpha and PIP4Kbeta and provide insight into how the relative levels of the two enzymes may be important in their physiological and pathological roles.

摘要

PIP4K(PtdIns5P-4-kinase)的β同工型调节核 PtdIns5P 的水平,进而调节肿瘤抑制因子 p53 的乙酰化。PIP4Kβ的晶体结构表明,它可以形成具有相反取向的两个亚基的同源二聚体。使用 MS、针对 PIP4Ks 的同工型特异性抗体、RNAi(RNA 干扰)抑制和过表达研究,我们表明 PIP4Kβ在体外和体内与 PIP4Kα相互作用。由于这两种同工型同工酶磷酸化相同的底物生成相同的产物,这种相互作用可以被认为是功能冗余的。然而,与预期相反,我们发现 PIP4Kβ对 PtdIns5P 的活性比 PIP4Kα低 2000 倍,并且与 PIP4Kβ相关的大多数 PIP4K 活性来自其与 PIP4Kα的相互作用。此外,PIP4Kβ可以调节 PIP4Kα的核定位,并且 PIP4Kα在调节 PIP4Kβ功能方面具有作用。本研究的结果为 PIP4Kα和 PIP4Kβ 之间的功能相互作用提供了依据,并深入了解了两种酶的相对水平在其生理和病理作用中的重要性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验