Vradii Diana, Wagner Stefan, Doan Diem N, Nickerson Jeffrey A, Montecino Martin, Lian Jane B, Stein Janet L, van Wijnen Andre J, Imbalzano Anthony N, Stein Gary S
Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester, Massachusetts 01655-0106, USA.
J Cell Physiol. 2006 Jan;206(1):112-8. doi: 10.1002/jcp.20432.
Many mammalian SWI/SNF complexes use Brahma-related gene 1 (Brg1) as a catalytic subunit to remodel nucleosomes for transcription regulation. In several mesenchymal cells and tissues, expression of a defective Brg1 protein negates the normal activity of the SWI/SNF complex and delays or blocks differentiation. To investigate the role of SWI/SNF complexes during myelopoiesis, we stably expressed a dominant negative (dn) Brg1 mutant in the myeloid lineage. Forced expression of dnBrg1 in IL-3-dependent murine 32Dcl3 myeloid progenitor cells results in a profound delay in the granulocyte-colony stimulating factor (G-CSF) induced granulocytic maturation. These cells also exhibit a significant decrease in the expression of both CD11b and Gr-1 surface receptors, which are normally upregulated during granulopoiesis, and show sustained expression of myeloperoxidase, which is synthesized primarily during the promyelocytic (blast) stage of myeloid development. Thus, dnBrg1 expression causes a developmental block at the promyelocytic/metamyelocytic stage of myeloid differentiation. Our findings indicate that the normal chromatin remodeling function of Brg1 is necessary for the G-CSF dependent differentiation of myeloid cells towards the granulocytic lineage. This dependency on Brg1 may reflect a stringent requirement for chromatin remodeling at a critical stage of hematopoietic cell maturation.
许多哺乳动物的SWI/SNF复合物利用与布拉马相关的基因1(Brg1)作为催化亚基来重塑核小体,以进行转录调控。在几种间充质细胞和组织中,有缺陷的Brg1蛋白的表达会使SWI/SNF复合物的正常活性丧失,并延迟或阻断分化。为了研究SWI/SNF复合物在骨髓生成过程中的作用,我们在髓系谱系中稳定表达了一种显性负性(dn)Brg1突变体。在依赖白细胞介素-3的小鼠32Dcl3髓系祖细胞中强制表达dnBrg1会导致粒细胞集落刺激因子(G-CSF)诱导的粒细胞成熟出现严重延迟。这些细胞还表现出CD11b和Gr-1表面受体的表达显著降低,这两种受体在粒细胞生成过程中通常会上调,并且显示髓过氧化物酶持续表达,髓过氧化物酶主要在髓系发育的早幼粒细胞(母细胞)阶段合成。因此,dnBrg1的表达导致髓系分化在早幼粒细胞/中幼粒细胞阶段出现发育阻滞。我们的研究结果表明,Brg1的正常染色质重塑功能对于髓系细胞在G-CSF依赖下向粒细胞谱系的分化是必需的。这种对Brg1的依赖性可能反映了造血细胞成熟关键阶段对染色质重塑的严格要求。