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首页> 外文期刊>Nature Communications >Cancer-associated ASXL1 mutations may act as gain-of-function mutations of the ASXL1-BAP1 complex
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Cancer-associated ASXL1 mutations may act as gain-of-function mutations of the ASXL1-BAP1 complex

机译:癌症相关的ASXL1突变可能充当ASXL1-BAP1复合体的功能获得性突变

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摘要

ASXL1 is the obligate regulatory subunit of a deubiquitinase complex whose catalytic subunit is BAP1. Heterozygous mutations of ASXL1 that result in premature truncations are frequent in myeloid leukemias and Bohring-Opitz syndrome. Here we demonstrate that ASXL1 truncations confer enhanced activity on the ASXL1-BAP1 complex. Stable expression of truncated, hyperactive ASXL1-BAP1 complexes in a haematopoietic precursor cell line results in global erasure of H2AK119Ub, striking depletion of H3K27me3, selective upregulation of a subset of genes whose promoters are marked by both H2AK119Ub and H3K4me3, and spontaneous differentiation to the mast cell lineage. These outcomes require the catalytic activity of BAP1, indicating that they are downstream consequences of H2AK119Ub erasure. In bone marrow precursors, expression of truncated ASXL1-BAP1 complex cooperates with TET2 loss-of-function to increase differentiation to the myeloid lineage in vivo. Our data raise the possibility that ASXL1 truncation mutations confer gain-of-function on the ASXL-BAP1 complex.
机译:ASXL1是去泛素酶复合物的专性调节亚基,其催化亚基是BAP1。在骨髓性白血病和Bohring-Opitz综合征中,导致提前截断的ASXL1杂合突变很常见。在这里,我们证明ASXL1截短赋予ASXL1-BAP1复合体增强的活性。截短的,过度活跃的ASXL1-BAP1复合物在造血前体细胞系中的稳定表达会导致H2AK119Ub的整体擦除,H3K27me3的耗尽,启动子以H2AK119Ub和H3K4me3标记的基因子集的选择性上调以及自发分化肥大细胞谱系。这些结果需要BAP1的催化活性,表明它们是H2AK119Ub擦除的下游结果。在骨髓前体中,截短的ASXL1-BAP1复合体的表达与TET2的功能丧失协同作用,以增加体内对髓系的分化。我们的数据提高了ASXL1截短突变赋予ASXL-BAP1复合体功能获得的可能性。

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