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Characterizing the role of SWI/SNF-related chromatin remodeling complexes in planarian regeneration and stem cell function - ScienceDirect

机译:表征SWI / SNF相关的染色质重塑复合物在平面生物再生和干细胞功能中的作用-ScienceDirect

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SWI/SNF-related chromatin remodeling complexes, including the human BAF and PBAF complexes, are involved in controlling stem cell pluripotency and differentiation in many species. However, these complexes have not been fully characterized in planarians, an emerging model for the in vivo study of stem cells. These flatworms have the ability to regenerate following injury or amputation, and we sought to investigate the role of chromatin remodeling in this process through bioinformatic and genetic characterization of the SWI/SNF-like complexes in Schmidtea mediterranea. We identified planarian homologs of all human BAF and PBAF subunits, and then examined their expression patterns and RNAi phenotypes. We found that the genes are expressed in both stem cells and differentiated tissues, and their knockdown results in impaired regeneration and other phenotypes indicating stem cell dysfunction. Knockdown of core complex members and Smed-ARID1 led to an increase in steady-state mitotic cell number, however, the stereotypical proliferative response that follows amputation was reduced following Smed-BRG1/BRM-2 RNAi. The number of differentiating epidermal lineage cells and expression of epidermal and muscle lineage markers were also reduced following SWI/SNF knockdown. Our findings provide insight into the importance of the SWI/SNF complex in stem cell function and cellular differentiation in planarians.
机译:SWI / SNF相关的染色质重塑复合物,包括人类BAF和PBAF复合物,在许多物种中都参与控制干细胞的多能性和分化。但是,这些复合物尚未在涡虫中得到充分表征,涡虫是干细胞体内研究的新兴模型。这些扁虫具有在受伤或截肢后再生的能力,并且我们试图通过对Schmidtea mediterranea中SWI / SNF样复合物的生物信息学和遗传学表征来研究染色质重塑在此过程中的作用。我们确定了所有人类BAF和PBAF亚基的平面同系物,然后检查了它们的表达模式和RNAi表型。我们发现该基因在干细胞和分化的组织中均有表达,其基因敲低导致再生受损和其他表型表明干细胞功能异常。击倒核心复杂成员和Smed-ARID1导致稳态有丝分裂细胞数量增加,但是,截肢后的定型增殖反应在Smed-BRG1 / BRM-2 RNAi后降低。 SWI / SNF敲低后,分化的表皮谱系细胞的数量以及表皮和肌肉谱系标志物的表达也减少了。我们的发现提供了洞见SWI / SNF复合体在干细胞功能和涡虫细胞分化中的重要性。

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