Kao Tzu-Hao, Liao Hung-Fu, Wolf Daniel, Tai Kang-Yu, Chuang Ching-Yu, Lee Hsuan-Shu, Kuo Hung-Chih, Hata Kenichiro, Zhang Xing, Cheng Xiaodong, Goff Stephen P, Ooi Steen K T, Bestor Timothy H, Lin Shau-Ping
Institute of Biotechnology, National Taiwan University, Taipei, Taiwan.
Department of Biochemistry and Molecular Biophysics, Howard Hughes Medical Institute, College of Physicians and Surgeons, Columbia University, New York, New York, USA.
J Virol. 2014 Sep;88(18):10680-95. doi: 10.1128/JVI.01176-14. Epub 2014 Jul 2.
Mammalian genomes are replete with retrotransposable elements, including endogenous retroviruses. DNA methyltransferase 3-like (DNMT3L) is an epigenetic regulator expressed in prospermatogonia, growing oocytes, and embryonic stem (ES) cells. Here, we demonstrate that DNMT3L enhances the interaction of repressive epigenetic modifiers, including histone deacetylase 1 (HDAC1), SET domain, bifurcated 1 (SETDB1), DNA methyltransferase 3A (DNMT3A), and tripartite motif-containing protein 28 (TRIM28; also known as TIF1β and KAP1) in ES cells and orchestrates retroviral silencing activity with TRIM28 through mechanisms including, but not limited to, de novo DNA methylation. Ectopic expression of DNMT3L in somatic cells causes methylation-independent retroviral silencing activity by recruitment of the TRIM28/HDAC1/SETDB1/DNMT3A/DNMT3L complex to newly integrated Moloney murine leukemia virus (Mo-MuLV) proviral DNA. Concurrent with this recruitment, we also observed the accumulation of histone H3 lysine 9 trimethylation (H3K9me3) and heterochromatin protein 1 gamma (HP1γ), as well as reduced H3K9 and H3K27 acetylation at Mo-MuLV proviral sequences. Ectopic expression of DNMT3L in late-passage mouse embryonic fibroblasts (MEFs) recruited cytoplasmically localized HDAC1 to the nucleus. The formation of this epigenetic modifying complex requires interaction of DNMT3L with DNMT3A as well as with histone H3. In fetal testes at embryonic day 17.5, endogenous DNMT3L also enhanced the binding among TRIM28, DNMT3A, SETDB1, and HDAC1. We propose that DNMT3L may be involved in initiating a cascade of repressive epigenetic modifications by assisting in the preparation of a chromatin context that further attracts DNMT3A-DNMT3L binding and installs longer-term DNA methylation marks at newly integrated retroviruses.
Almost half of the mammalian genome is composed of endogenous retroviruses and other retrotransposable elements that threaten genomic integrity. These elements are usually subject to epigenetic silencing. We discovered that two epigenetic regulators that lack enzymatic activity, DNA methyltransferase 3-like (DNMT3L) and tripartite motif-containing protein 28 (TRIM28), collaborate with each other to impose retroviral silencing. In addition to modulating de novo DNA methylation, we found that by interacting with TRIM28, DNMT3L can attract various enzymes to form a DNMT3L-induced repressive complex to remove active marks and add repressive marks to histone proteins. Collectively, these results reveal a novel and pivotal function of DNMT3L in shaping the chromatin modifications necessary for retroviral and retrotransposon silencing.
哺乳动物基因组中充斥着逆转录转座元件,包括内源性逆转录病毒。DNA甲基转移酶3样蛋白(DNMT3L)是一种表观遗传调控因子,在精原细胞、生长中的卵母细胞和胚胎干细胞中表达。在此,我们证明DNMT3L增强了抑制性表观遗传修饰因子之间的相互作用,这些因子包括组蛋白去乙酰化酶1(HDAC1)、SET结构域分叉1蛋白(SETDB1)、DNA甲基转移酶3A(DNMT3A)和含三联基序蛋白28(TRIM28,也称为TIF1β和KAP1),在胚胎干细胞中,并通过包括但不限于从头DNA甲基化等机制,与TRIM28协同调控逆转录病毒沉默活性。DNMT3L在体细胞中的异位表达通过将TRIM28/HDAC1/SETDB1/DNMT3A/DNMT3L复合物招募到新整合的莫洛尼氏鼠白血病病毒(Mo-MuLV)前病毒DNA上,导致不依赖甲基化的逆转录病毒沉默活性。伴随着这种招募,我们还观察到组蛋白H3赖氨酸9三甲基化(H3K9me3)和异染色质蛋白1γ(HP1γ)的积累,以及Mo-MuLV前病毒序列处H3K9和H3K27乙酰化的减少。DNMT3L在传代后期的小鼠胚胎成纤维细胞(MEF)中的异位表达将细胞质定位的HDAC1招募到细胞核中。这种表观遗传修饰复合物的形成需要DNMT3L与DNMT3A以及组蛋白H3相互作用。在胚胎第17.5天的胎儿睾丸中,内源性DNMT3L也增强了TRIM28、DNMT3A、SETDB1和HDAC1之间的结合。我们提出,DNMT3L可能通过协助准备染色质环境来启动一系列抑制性表观遗传修饰级联反应,该染色质环境进一步吸引DNMT3A-DNMT3L结合,并在新整合的逆转录病毒上建立长期的DNA甲基化标记。
几乎一半的哺乳动物基因组由威胁基因组完整性的内源性逆转录病毒和其他逆转录转座元件组成。这些元件通常受到表观遗传沉默的调控。我们发现,两种缺乏酶活性的表观遗传调控因子,DNA甲基转移酶3样蛋白(DNMT3L)和含三联基序蛋白28(TRIM28),相互协作以实现逆转录病毒沉默。除了调节从头DNA甲基化外,我们发现通过与TRIM28相互作用,DNMT3L可以吸引各种酶形成由DNMT3L诱导的抑制复合物,以去除活性标记并向组蛋白添加抑制标记。总的来说,这些结果揭示了DNMT3L在塑造逆转录病毒和逆转录转座子沉默所需的染色质修饰方面的一种新的关键功能。