Zhu Nan, Hansen Ulla
Department of Biology, Boston University, 5 Cummington St., Boston, MA 02215, USA.
Mol Cell Biol. 2007 Dec;27(24):8859-73. doi: 10.1128/MCB.01724-07. Epub 2007 Oct 15.
HMGN1, an abundant nucleosomal binding protein, can affect both the chromatin higher order structure and the modification of nucleosomal histones, but it alters the expression of only a subset of genes. We investigated specific gene targeting by HMGN1 in the context of estrogen induction of gene expression. Knockdown and overexpression experiments indicated that HMGN1 limits the induction of several estrogen-regulated genes, including TFF1 and FOS, which are induced by estrogen through entirely distinct mechanisms. HMGN1 specifically interacts with estrogen receptor alpha (ER alpha), both in vitro and in vivo. At the TFF1 promoter, estrogen increases HMGN1 association through recruitment by the ER alpha. HMGN1 S20E/S24E, although deficient in binding nucleosomal DNA, still interacts with ER alpha and, strikingly, still represses estrogen-driven activation of the TFF1 gene. On the FOS promoter, which lacks the ER alpha binding sites, constitutively bound serum response factor (SRF) mediates estrogen stimulation. HMGN1 also interacts specifically with SRF, but HMGN1 S20E/S24E does not. Consistent with the protein interactions, only wild-type HMGN1 significantly inhibits the estrogen-driven activation of the FOS gene. Mechanistically, the inhibition of estrogen induction of several ER alpha-associated genes, including TFF1, by HMGN1 correlates with decreased levels of acetylation of Lys9 on histone H3. Together, these findings indicate that HMGN1 regulates the expression of particular genes via specific protein-protein interactions with transcription factors at target gene regulatory regions.
HMGN1是一种丰富的核小体结合蛋白,它既能影响染色质的高级结构,也能影响核小体组蛋白的修饰,但它只改变一部分基因的表达。我们在雌激素诱导基因表达的背景下研究了HMGN1对特定基因的靶向作用。敲低和过表达实验表明,HMGN1限制了几种雌激素调节基因的诱导,包括TFF1和FOS,雌激素通过完全不同的机制诱导这些基因。HMGN1在体外和体内都能与雌激素受体α(ERα)特异性相互作用。在TFF1启动子处,雌激素通过ERα的招募增加HMGN1的结合。HMGN1 S20E/S24E虽然缺乏与核小体DNA的结合能力,但仍能与ERα相互作用,而且值得注意的是,它仍然能抑制雌激素驱动的TFF1基因激活。在缺乏ERα结合位点的FOS启动子上,组成性结合的血清反应因子(SRF)介导雌激素刺激。HMGN1也能与SRF特异性相互作用,但HMGN1 S20E/S24E不能。与蛋白质相互作用一致,只有野生型HMGN1能显著抑制雌激素驱动的FOS基因激活。从机制上讲,HMGN1对包括TFF1在内的几种ERα相关基因的雌激素诱导的抑制作用与组蛋白H3上赖氨酸9的乙酰化水平降低有关。总之,这些发现表明,HMGN1通过在靶基因调控区域与转录因子进行特异性蛋白质-蛋白质相互作用来调节特定基因的表达。