Massachusetts General Hospital Cancer Center and Department of Medicine, Harvard Medical School, 13th Street, Charlestown, MA 02129, USA.
Mol Cell. 2010 Dec 10;40(5):736-48. doi: 10.1016/j.molcel.2010.11.008.
The KDM4/JMJD2 family of histone demethylases is amplified in human cancers. However, little is known about their physiologic or tumorigenic roles. We have identified a conserved and unappreciated role for the JMJD2A/KDM4A H3K9/36 tridemethylase in cell cycle progression. We demonstrate that JMJD2A protein levels are regulated in a cell cycle-dependent manner and that JMJD2A overexpression increased chromatin accessibility, S phase progression, and altered replication timing of specific genomic loci. These phenotypes depended on JMJD2A enzymatic activity. Strikingly, depletion of the only C. elegans homolog, JMJD-2, slowed DNA replication and increased ATR/p53-dependent apoptosis. Importantly, overexpression of HP1γ antagonized JMJD2A-dependent progression through S phase, and depletion of HPL-2 rescued the DNA replication-related phenotypes in jmjd-2(-/-) animals. Our findings describe a highly conserved model whereby JMJD2A regulates DNA replication by antagonizing HP1γ and controlling chromatin accessibility.
KDM4/JMJD2 家族的组蛋白去甲基酶在人类癌症中扩增。然而,它们的生理或致瘤作用知之甚少。我们已经确定了 JMJD2A/KDM4A H3K9/36 三联甲基酶在细胞周期进展中的保守且未被认识的作用。我们证明 JMJD2A 蛋白水平受细胞周期依赖性调节,并且 JMJD2A 过表达增加了染色质可及性、S 期进展,并改变了特定基因组位点的复制时间。这些表型取决于 JMJD2A 的酶活性。引人注目的是,唯一的秀丽隐杆线虫同源物 JMJD-2 的耗尽会减缓 DNA 复制并增加 ATR/p53 依赖性细胞凋亡。重要的是,HP1γ 的过表达拮抗了 JMJD2A 依赖的 S 期进展,而 hpl-2 的耗尽挽救了 jmjd-2(-/-) 动物中与 DNA 复制相关的表型。我们的研究结果描述了一个高度保守的模型,即 JMJD2A 通过拮抗 HP1γ 和控制染色质可及性来调节 DNA 复制。