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突变 U2AF1 诱导 H2afy(macroH2A1)的可变剪接调控小鼠的 B 淋巴细胞发生。

Mutant U2AF1-induced alternative splicing of H2afy (macroH2A1) regulates B-lymphopoiesis in mice.

机构信息

Division of Oncology, Department of Internal Medicine, Washington University School of Medicine, St Louis, MO 63110, USA.

Department of Pathology and Immunology, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Cell Rep. 2021 Aug 31;36(9):109626. doi: 10.1016/j.celrep.2021.109626.

Abstract

Somatic mutations in spliceosome genes are found in ∼50% of patients with myelodysplastic syndromes (MDS), a myeloid malignancy associated with low blood counts. Expression of the mutant splicing factor U2AF1(S34F) alters hematopoiesis and mRNA splicing in mice. Our understanding of the functionally relevant alternatively spliced target genes that cause hematopoietic phenotypes in vivo remains incomplete. Here, we demonstrate that reduced expression of H2afy1.1, an alternatively spliced isoform of the histone H2A variant gene H2afy, is responsible for reduced B cells in U2AF1(S34F) mice. Deletion of H2afy or expression of U2AF1(S34F) reduces expression of Ebf1 (early B cell factor 1), a key transcription factor for B cell development, and mechanistically, H2AFY is enriched at the EBF1 promoter. Induced expression of H2AFY1.1 in U2AF1(S34F) cells rescues reduced EBF1 expression and B cells numbers in vivo. Collectively, our data implicate alternative splicing of H2AFY as a contributor to lymphopenia induced by U2AF1(S34F) in mice and MDS.

摘要

剪接体基因中的体细胞突变存在于约 50%的骨髓增生异常综合征 (MDS) 患者中,MDS 是一种与低血细胞计数相关的髓系恶性肿瘤。突变剪接因子 U2AF1(S34F) 的表达改变了小鼠的造血和 mRNA 剪接。我们对导致体内造血表型的具有功能相关性的可变剪接靶基因的理解仍然不完全。在这里,我们证明 H2afy1.1 的表达减少,H2afy 基因的组蛋白 H2A 变体的可变剪接异构体,是 U2AF1(S34F) 小鼠中 B 细胞减少的原因。H2afy 的缺失或 U2AF1(S34F) 的表达减少了 Ebf1(早期 B 细胞因子 1)的表达,Ebf1 是 B 细胞发育的关键转录因子,从机制上讲,H2AFY 富集在 EBF1 启动子上。在 U2AF1(S34F) 细胞中诱导表达 H2AFY1.1 可挽救体内 EBF1 表达和 B 细胞数量的减少。总之,我们的数据表明,H2AFY 的可变剪接是导致 U2AF1(S34F) 诱导的小鼠和 MDS 淋巴细胞减少的一个因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/386d/8454217/9af5e6af2d2e/nihms-1737336-f0002.jpg

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