Département de Biologie, Faculté des Sciences, Université de Sherbrooke, Sherbrooke, QC, CA.
Cell Cycle. 2010 Jan 15;9(2):364-70. doi: 10.4161/cc.9.2.10465. Epub 2010 Jan 28.
We recently showed that histone H2A.Z, as well as members of the ATP-dependent p400 chromatin remodeling complex (p400.com), are essential components of estrogen receptor alpha (ERalpha) signaling. More specifically, we showed that H2A.Z and p400.com are incorporated into the promoter regions of ERalpha target genes only upon gene induction, and also in a cyclic fashion. RNAi-mediated cellular depletion of H2A.Z and p400.com strongly impedes estrogen-dependent growth of breast cancer cells as well as strongly affect ERalpha-target gene expression. Two mechanisms emerged from our studies of how H2A.Z incorporation within ERalpha-target regulatory regions can actually regulate estrogen-mediated signaling: (1) by stabilizing nucleosomes within the translational DNA axis, a process that allows general transcription factors to be efficiently recruited to promoter regions; (2) by allowing estrogen-responsive enhancer function. In the current study, we now show that in MCF7 cells, ectopic overexpression of H2A.Z increases proliferation, and such in conditions where estrogen levels are low. Also, immunohistochemical studies of breast cancer biopsies show that the presence of H2A.Z correlates highly with that of ERalpha, but is associated with high-grade ER-negative cancers. Finally we show that ERalpha directly associates to the H2A.Z promoter, and consequently modulates its expression. Our study provides a possible link between H2A.Z and endocrine resistance by showing that H2A.Z overexpression leads to increased growth, particularly when estrogen levels are very low.
我们最近表明,组蛋白 H2A.Z 以及 ATP 依赖性 p400 染色质重塑复合物(p400.com)的成员,是雌激素受体 alpha(ERalpha)信号的必需组成部分。更具体地说,我们表明 H2A.Z 和 p400.com 仅在基因诱导时才被纳入 ERalpha 靶基因的启动子区域,并且是以循环方式纳入。RNAi 介导的细胞 H2A.Z 和 p400.com 的消耗强烈阻碍了乳腺癌细胞的雌激素依赖性生长,并强烈影响 ERalpha 靶基因的表达。我们的研究表明 H2A.Z 如何纳入 ERalpha 靶调节区域实际上可以调节雌激素介导的信号转导,出现了两种机制:(1)通过稳定翻译 DNA 轴内的核小体,使一般转录因子能够有效地被募集到启动子区域;(2)通过允许雌激素反应性增强子功能。在当前的研究中,我们现在表明在 MCF7 细胞中,H2A.Z 的异位过表达会增加增殖,即使在雌激素水平较低的情况下也是如此。此外,乳腺癌活检的免疫组织化学研究表明,H2A.Z 的存在与 ERalpha 高度相关,但与高级别 ER 阴性癌症相关。最后,我们表明 ERalpha 直接与 H2A.Z 启动子结合,从而调节其表达。我们的研究通过表明 H2A.Z 过表达会导致生长增加,特别是在雌激素水平非常低的情况下,为 H2A.Z 与内分泌抵抗之间提供了可能的联系。