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MBD5 和 MBD6 稳定 BAP1 复合物,并促进 BAP1 依赖性癌症。

MBD5 and MBD6 stabilize the BAP1 complex and promote BAP1-dependent cancer.

机构信息

Department of Biochemistry and Molecular Genetics, Feinberg School of Medicine, Northwestern University, Chicago, IL, 60611, USA.

Simpson Querrey Center for Epigenetics, Feinberg School of Medicine, Northwestern University, SQBRC 7-404, 303 E. Superior St., Chicago, IL, 60611, USA.

出版信息

Genome Biol. 2022 Sep 30;23(1):206. doi: 10.1186/s13059-022-02776-x.

Abstract

BACKGROUND

BRCA1-associated protein 1 (BAP1) is an ubiquitin carboxy-terminal hydrolase, which forms a multi-protein complex with different epigenetic factors, such as ASXL1-3 and FOXK1/2. At the chromatin level, BAP1 catalyzes the removal of mono-ubiquitination on histone H2AK119 in collaboration with other subunits within the complex and functions as a transcriptional activator in mammalian cells. However, the crosstalk between different subunits and how these subunits impact BAP1's function remains unclear.

RESULTS

We report the identification of the methyl-CpG-binding domain proteins 5 and 6 (MBD5 and MBD6) that bind to the C-terminal PHD fingers of the large scaffold subunits ASXL1-3 and stabilize the BAP1 complex at the chromatin. We further identify a novel Drosophila protein, the six-banded (SBA), as an ortholog of human MBD5 and MBD6, and demonstrate that the core modules of the BAP1 complex is structurally and functionally conserved from Drosophila (Calypso/ASX/SBA) to human cells (BAP1/ASXL/MBD). Dysfunction of the BAP1 complex induced by the misregulation/mutations in its subunit(s) are frequent in many human cancers. In BAP1-dependent human cancers, such as small cell lung cancer (SCLC), MBD6 tends to be a part of the predominant complex formed. Therefore, depletion of MBD6 leads to a global loss of BAP1 occupancy at the chromatin, resulting in a reduction of BAP1-dependent gene expression and tumor growth in vitro and in vivo.

CONCLUSIONS

We characterize MBD5 and MBD6 as important regulators of the BAP1 complex and maintain its transcriptional landscape, shedding light on the therapeutic potential of targeting MBD5 and MBD6 in BAP1-dependent human cancers.

摘要

背景

BRCA1 相关蛋白 1(BAP1)是一种泛素羧基末端水解酶,它与不同的表观遗传因子,如 ASXL1-3 和 FOXK1/2 形成多蛋白复合物。在染色质水平上,BAP1 与复合物中的其他亚基合作,催化组蛋白 H2AK119 上单泛素化的去除,并在哺乳动物细胞中作为转录激活因子发挥作用。然而,不同亚基之间的相互作用以及这些亚基如何影响 BAP1 的功能尚不清楚。

结果

我们报告了鉴定出甲基-CpG 结合域蛋白 5 和 6(MBD5 和 MBD6),它们与大支架亚基 ASXL1-3 的 C 端 PHD 指结合,并稳定染色质上的 BAP1 复合物。我们进一步鉴定出一种新的果蝇蛋白,即六带(SBA),作为人 MBD5 和 MBD6 的同源物,并证明 BAP1 复合物的核心模块在结构和功能上从果蝇(Calypso/ASX/SBA)到人类细胞(BAP1/ASXL/MBD)都是保守的。其亚基的失调/突变引起的 BAP1 复合物功能障碍在许多人类癌症中很常见。在 BAP1 依赖性人类癌症中,如小细胞肺癌(SCLC),MBD6 往往是形成的主要复合物的一部分。因此,MBD6 的耗竭导致染色质上 BAP1 占据的整体丢失,导致 BAP1 依赖性基因表达减少,并在体外和体内减少肿瘤生长。

结论

我们将 MBD5 和 MBD6 表征为 BAP1 复合物的重要调节因子,并维持其转录景观,为靶向 BAP1 依赖性人类癌症中的 MBD5 和 MBD6 提供了治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5604/9523997/51a4b2723614/13059_2022_2776_Fig1_HTML.jpg

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