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BAP1 通过精细调节骨内膜间充质基质细胞中的表观遗传特征来塑造骨髓造血龛。

BAP1 shapes the bone marrow niche for lymphopoiesis by fine-tuning epigenetic profiles in endosteal mesenchymal stromal cells.

机构信息

School of Biological Sciences, Seoul National University, Seoul, 08826, Korea.

Institute of Molecular Biology and Genetics, Seoul National University, Seoul, 08826, Korea.

出版信息

Cell Death Differ. 2022 Nov;29(11):2151-2162. doi: 10.1038/s41418-022-01006-y. Epub 2022 Apr 26.

Abstract

Hematopoiesis occurs within a unique bone marrow (BM) microenvironment, which consists of various niche cells, cytokines, growth factors, and extracellular matrix components. These multiple components directly or indirectly regulate the maintenance and differentiation of hematopoietic stem cells (HSCs). Here we report that BAP1 in BM mesenchymal stromal cells (MSCs) is critical for the maintenance of HSCs and B lymphopoiesis. Mice lacking BAP1 in MSCs show aberrant differentiation of hematopoietic stem and progenitor cells, impaired B lymphoid differentiation, and expansion of myeloid lineages. Mechanistically, BAP1 loss in distinct endosteal MSCs, expressing PRX1 but not LEPR, leads to aberrant expression of genes affiliated with BM niche functions. BAP1 deficiency leads to a reduced expression of pro-hematopoietic factors such as Scf caused by increased H2AK119-ub1 and H3K27-me3 levels on the promoter region of these genes. On the other hand, the expression of myelopoiesis stimulating factors including Csf3 was increased by enriched H3K4-me3 and H3K27-ac levels on their promoter, causing myeloid skewing. Notably, loss of BAP1 substantially blocks B lymphopoiesis and skews the differentiation of hematopoietic precursors toward myeloid lineages in vitro, which is reversed by G-CSF neutralization. Thus, our study uncovers a key role for BAP1 expressed in endosteal MSCs in controlling normal hematopoiesis in mice by modulating expression of various niche factors governing lymphopoiesis and myelopoiesis via histone modifications.

摘要

造血发生在独特的骨髓 (BM) 微环境中,该微环境由各种龛细胞、细胞因子、生长因子和细胞外基质成分组成。这些多种成分直接或间接地调节造血干细胞 (HSCs) 的维持和分化。在这里,我们报告骨髓间充质基质细胞 (MSCs) 中的 BAP1 对于 HSCs 和 B 淋巴发生的维持是至关重要的。MSC 中缺乏 BAP1 的小鼠表现出造血干细胞和祖细胞的异常分化、B 淋巴样分化受损以及髓系谱系的扩增。在机制上,表达 PRX1 但不表达 LEPR 的不同骨内膜 MSC 中 BAP1 的缺失导致与 BM 龛位功能相关的基因异常表达。BAP1 缺失导致这些基因启动子区域上 H2AK119-ub1 和 H3K27-me3 水平增加,从而导致造血前体细胞中促造血因子(如 Scf)的表达减少。另一方面,由于其启动子上富集的 H3K4-me3 和 H3K27-ac 水平,刺激髓系生成的因子(包括 Csf3)的表达增加,导致髓系偏向。值得注意的是,BAP1 的缺失在体外显著阻断 B 淋巴发生,并使造血前体细胞向髓系谱系分化偏向,这可以通过 G-CSF 中和来逆转。因此,我们的研究揭示了表达在内皮 MSC 中的 BAP1 通过调节控制淋巴发生和髓样发生的各种龛位因子的表达,通过组蛋白修饰来控制小鼠正常造血的关键作用。

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