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p300、P/CAF和HER2/Neu对ETS蛋白ER81的乙酰化介导的转录激活作用。

Acetylation-mediated transcriptional activation of the ETS protein ER81 by p300, P/CAF, and HER2/Neu.

作者信息

Goel Apollina, Janknecht Ralf

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

Mol Cell Biol. 2003 Sep;23(17):6243-54. doi: 10.1128/MCB.23.17.6243-6254.2003.

Abstract

The regulated expression of the ETS transcription factor ER81 is a prerequisite for normal development, and its dysregulation contributes to neoplasia. Here, we demonstrate that ER81 is acetylated by two coactivators/acetyltransferases, p300 and p300- and CBP-associated factor (P/CAF) in vitro and in vivo. Whereas p300 acetylates two lysine residues (K33 and K116) within the ER81 N-terminal transactivation domain, P/CAF targets only K116. Acetylation of ER81 not only enhances its ability to transactivate but also increases its DNA binding activity and in vivo half-life. Furthermore, oncogenic HER2/Neu, which induces phosphorylation and thereby activation of ER81, was less able to activate acetylation-deficient ER81 mutants, indicating that both acetyltransferase and protein kinase-specific regulatory mechanisms control ER81 activity. Importantly, HER2/Neu overexpression stimulates the ability of p300 to acetylate ER81, likely by inducing phosphorylation of p300 through the Ras-->Raf-->mitogen-activated protein kinase pathway. This represents a novel mechanism by which oncogenic HER2/Neu, Ras, or Raf may promote tumor formation by enhancing acetylation not only of ER81 but also of other downstream effector transcription factors as well as histones.

摘要

ETS转录因子ER81的表达调控是正常发育的前提条件,其失调会导致肿瘤形成。在此,我们证明在体外和体内,ER81可被两种共激活因子/乙酰转移酶p300以及p300和CBP相关因子(P/CAF)乙酰化。p300可乙酰化ER81 N端反式激活域内的两个赖氨酸残基(K33和K116),而P/CAF仅作用于K116。ER81的乙酰化不仅增强其反式激活能力,还增加其DNA结合活性及体内半衰期。此外,致癌性HER2/Neu可诱导ER81磷酸化并激活之,但它激活乙酰化缺陷型ER81突变体的能力较弱,这表明乙酰转移酶和蛋白激酶特异性调控机制均控制着ER81的活性。重要的是,HER2/Neu的过表达可能通过Ras→Raf→丝裂原活化蛋白激酶途径诱导p300磷酸化,从而刺激p300对ER81进行乙酰化。这代表了一种新机制,致癌性HER2/Neu、Ras或Raf可能通过增强ER81以及其他下游效应转录因子和组蛋白的乙酰化来促进肿瘤形成。

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