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WD Repeat-containing Protein 5, a Ubiquitously Expressed Histone Methyltransferase Adaptor Protein, Regulates Smooth Muscle Cell-selective Gene Activation through Interaction with Pituitary Homeobox 2*

机译:含有WD重复序列的蛋白5,一种普遍表达的组蛋白甲基转移酶衔接蛋白,通过与垂体同源盒2的相互作用调节平滑肌细胞选择性基因的激活*

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摘要

WD repeat-containing protein 5 (WDR5) is a common component of mammalian mixed lineage leukemia methyltransferase family members and is important for histone H3 lysine 4 methylation (H3K4me), which has been implicated in control of activation of cell lineage genes during embryogenesis. However, WDR5 has not been considered to play a specific regulatory role in epigenetic programming of cell lineage because it is ubiquitously expressed. Previous work from our laboratory showed the appearance of histone H3K4me within smooth muscle cell (SMC)-marker gene promoters during the early stages of development of SMC from multipotential embryonic cells but did not elucidate the underlying mechanisms that mediate SMC-specific and locus-selective H3K4me. Results presented herein show that knockdown of WDR5 significantly decreased SMC-marker gene expression in cultured SMC differentiation systems and in Xenopus laevis embryos in vivo. In addition, we showed that WDR5 complexes within SMC progenitor cells contained H3K4 methyltransferase enzymatic activity and that knockdown of WDR5 selectively decreased H3K4me1 and H3K4me3 enrichment within SMC-marker gene promoter loci. Moreover, we present evidence that it is recruited to these gene promoter loci through interaction with a SMC-selective pituitary homeobox 2 (Pitx2). Taken together, studies provide evidence for a novel mechanism for epigenetic control of SMC-marker gene expression during development through interaction of WDR5, homeodomain proteins, and chromatin remodeling enzymes.
机译:包含WD重复序列的蛋白5(WDR5)是哺乳动物混合谱系白血病甲基转移酶家族成员的常见成分,对于组蛋白H3赖氨酸4甲基化(H3K4me)很重要,该组蛋白与胚胎发生过程中细胞谱系基因的激活有关。但是,由于WDR5被广泛表达,因此尚未被认为在细胞谱系的表观遗传编程中起特定的调节作用。我们实验室的先前工作表明,在多能胚胎细胞从SMC发育的早期阶段,组蛋白H3K4me出现在平滑肌细胞(SMC)标记基因启动子中,但并未阐明介导SMC特异性和基因座选择性的潜在机制。 H3K4me。本文呈现的结果表明,在体内培养的SMC分化系统和非洲爪蟾胚胎中,WDR5的敲低显着降低了SMC标记基因的表达。此外,我们显示SMC祖细胞内的WDR5复合体包含H3K4甲基转移酶的酶活性,而敲除WDR5则选择性地降低了SMC标记基因启动子基因座内的H3K4me1和H3K4me3富集。此外,我们目前的证据表明,它是通过与SMC选择性垂体同源盒2(Pitx2)相互作用而被募集到这些基因启动子位点的。综上所述,研究提供了通过WDR5,同源域蛋白和染色质重塑酶相互作用,在发育过程中对SMC标记基因表达进行表观遗传控制的新机制的证据。

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