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BMP Signaling and Its pSMAD1/5 Target Genes Differentially Regulate Hair Follicle Stem Cell Lineages

机译:BMP信号及其pSMAD1 / 5目标基因差异地调节毛囊干细胞谱系。

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摘要

Hair follicle stem cells (HFSCs) and their transit amplifying cell (TAC) progeny sense BMPs at defined stages of the hair cycle to control their proliferation and differentiation. Here, we exploit the distinct spatial and temporal localizations of these cells to selectively ablate BMP signaling in each compartment and examine its functional role. We find that BMP signaling is required for HFSC quiescence and to promote TAC differentiation along different lineages as the hair cycle progresses. We also combine in vivo genome-wide chromatin immunoprecipitation and deep-sequencing, transcriptional profiling, and loss-of-function genetics to define BMP-regulated genes. We show that some pSMAD1/5 targets, like Gata3, function specifically in TAC lineage-progression. Others, like Id1 and Id3, function in both HFSCs and TACs, but in distinct ways. Our study therefore illustrates the complex differential roles that a key signaling pathway can play in regulation of closely-related stem/progenitor cells within the context of their overall niche.
机译:毛囊干细胞(HFSC)及其转运扩增细胞(TAC)后代在毛发周期的定义阶段感知BMP,以控制其增殖和分化。在这里,我们利用这些细胞的独特的空间和时间定位来选择性地消融每个隔室中的BMP信号传导并检查其功能作用。我们发现,随着头发周期的进行,HFSC静止并促进TAC沿不同谱系分化所需的BMP信号传导。我们还将体内全基因组染色质免疫沉淀和深度测序,转录谱以及功能丧失遗传学相结合,以定义BMP调控的基因。我们显示,某些pSMAD1 / 5靶标(如Gata3)在TAC谱系进展中具有特定功能。其他功能(如Id1和Id3)在HFSC和TAC中均起作用,但方式不同。因此,我们的研究表明了关键信号通路在整体利基环境中在密切相关的干/祖细胞的调节中所起的复杂的差异作用。

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