Mahana Yutaka, Ariyoshi Mariko, Nozawa Ryu-Suke, Shibata Sachiko, Nagao Koji, Obuse Chikashi, Shirakawa Masahiro
Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Nishikyo-Ku, Kyoto 615-8510, Japan.
Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka 565-0871, Japan.
Structure. 2024 Mar 7;32(3):304-315.e5. doi: 10.1016/j.str.2023.12.001. Epub 2023 Dec 29.
SETDB1 and SETDB2 mediate trimethylation of histone H3 lysine 9 (H3K9), an epigenetic hallmark of repressive chromatin. They contain a non-canonical methyl-CpG-binding domain (MBD) and bifurcated SET domain, implying interplay between H3K9 trimethylation and DNA methylation in SETDB functions. Here, we report the crystal structure of human SETDB2 MBD bound to the cysteine-rich domain of a zinc-binding protein, C11orf46. SETDB2 MBD comprises the conserved MBD core and a unique N-terminal extension. Although the MBD core has the conserved basic concave surface for DNA binding, it utilizes it for recognition of the cysteine-rich domain of C11orf46. This interaction involves the conserved arginine finger motif and the unique N-terminal extension of SETDB2 MBD, with a contribution from intermolecular β-sheet formation. Thus, the non-canonical MBD of SETDB1/2 seems to have lost methylated DNA-binding ability but gained a protein-protein interaction surface. Our findings provide insight into the molecular assembly of SETDB-associated repression complexes.
SETDB1和SETDB2介导组蛋白H3赖氨酸9(H3K9)的三甲基化,这是抑制性染色质的一种表观遗传特征。它们含有一个非典型的甲基化CpG结合结构域(MBD)和分叉的SET结构域,这意味着在SETDB功能中H3K9三甲基化与DNA甲基化之间存在相互作用。在此,我们报道了与锌结合蛋白C11orf46的富含半胱氨酸结构域结合的人SETDB2 MBD的晶体结构。SETDB2 MBD由保守的MBD核心和独特的N端延伸组成。尽管MBD核心具有用于DNA结合的保守碱性凹面,但它利用该表面来识别C11orf46的富含半胱氨酸结构域。这种相互作用涉及保守的精氨酸指基序和SETDB2 MBD独特的N端延伸,分子间β折叠的形成也有贡献。因此,SETDB1/2的非典型MBD似乎失去了结合甲基化DNA的能力,但获得了一个蛋白质-蛋白质相互作用表面。我们的研究结果为深入了解SETDB相关抑制复合物的分子组装提供了线索。