Stem Cell & Leukemia Lab, Cancer Biology & Inflammatory Disorder Division, CSIR-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Jadavpur, Kolkata 700032, West Bengal, India; Translational Research Unit of Excellence (TRUE), CN 6, Sector V, Salt Lake, Kolkata 700091, West Bengal, India.
Centre for Stem Cell Research, Christian Medical College, Bagayam, Vellore 632002, Tamil Nadu, India.
Cell Rep. 2020 Apr 28;31(4):107570. doi: 10.1016/j.celrep.2020.107570.
Bone morphogenic protein (BMP)/transforming growth factor β (TGF-β) signaling determines mesenchymal-stromal-cell (MSC) osteolineage commitment and tissue identity. However, molecular integration of developmental signaling with MSC-intrinsic chromatin regulation remains incompletely understood. SWI/SNF-(BAF) is an ATP-dependent chromatin remodeler implicated in multi-cellular development. We show that BMPs and long-term osteogenic signals in MSCs selectively induce expression of polybromo BAF (PBAF) components Pbrm1, Arid2, and Brd7. Loss of Pbrm1/Arid2/Brd7 profoundly impairs osteolineage gene expression and osteogenesis without compromising adipogenesis. Pbrm1 loss attenuates MSC in vivo ossification. Mechanistically, Pbrm1/PBAF deficiency impairs Smad1/5/8 activation through locus-specific epi-genomic remodeling, involving Pbrm1 bromodomains, along with transcriptional downregulation of Bmpr/TgfβrII affecting BMP-early-responsive gene expression. Gain of function of BmprIβ, TgfβrII in PBAF-deficient MSCs partly restores Smad1/5/8 activation and osteogenesis. Pbrm1 loss further affects hematopoietic stem and progenitor activity through non-cell-autonomous regulation of microenvironment and niche-factor expression. Together, these findings reveal a link illustrating epi-genomic feedforward control of BMP/TGF-β signaling to transcriptional and cellular plasticity in the mesenchymal microenvironment and account for stromal-SWI/SNF in hematopoiesis.
骨形态发生蛋白(BMP)/转化生长因子β(TGF-β)信号决定间充质基质细胞(MSC)成骨谱系的承诺和组织身份。然而,发育信号与 MSC 内在染色质调节的分子整合仍不完全了解。SWI/SNF-(BAF) 是一种 ATP 依赖性染色质重塑酶,与多细胞发育有关。我们表明,BMP 和 MSC 中的长期成骨信号选择性诱导多溴 BAF(PBAF)成分 Pbrm1、Arid2 和 Brd7 的表达。Pbrm1/Arid2/Brd7 的缺失严重损害成骨谱系基因表达和成骨作用,而不影响脂肪生成。Pbrm1 缺失会减弱 MSC 在体内的成骨作用。从机制上讲,Pbrm1/PBAF 缺陷通过特定于基因座的表观遗传重塑来损害 Smad1/5/8 的激活,涉及 Pbrm1 溴结构域,以及影响 BMP-早期反应基因表达的 Bmpr/TgfβrII 的转录下调。PBAF 缺陷 MSC 中 BmprIβ、TgfβrII 的功能获得部分恢复 Smad1/5/8 的激活和成骨作用。Pbrm1 缺失还通过微环境和龛位因子表达的非细胞自主调节进一步影响造血干/祖细胞的活性。总之,这些发现揭示了一种联系,说明了染色质组学对 BMP/TGF-β 信号的前馈控制与间充质微环境中的转录和细胞可塑性,以及基质-SWI/SNF 在造血中的关系。