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Opposing LSD1 complexes function in developmental gene activation and repression programmes

机译:相反的LSD1复合体在发育基因激活和抑制程序中起作用

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Precise control of transcriptional programmes underlying metazoan development is modulated by enzymatically active co-regulatory complexes, coupled with epigenetic strategies. One thing that remains unclear is how specific members of histone modification enzyme families, such as histone methyltransferases and demethylases, are used in vivo to simultaneously orchestrate distinct developmental gene activation and repression programmes. Here, we report that the histone lysine demethylase, LSD1—a component of the CoREST—CtBP co-repressor complex—is required for late cell-lineage determination and differentiation during pituitary organogenesis. LSD1 seems to act primarily on target gene activation programmes, as well as in gene repression programmes, on the basis of recruitment of distinct LSDI-containing co-activator or co-repressor complexes. LSDI-dependent gene repression programmes can be extended late in development with the induced expression of ZEB1, a Kriippel-like repressor that can act as a molecular beacon for recruitment of the LSDI-containing CoREST—CtBP co-repressor complex, causing repression of an additional cohort of genes, such as Gh, which previously required LSD1 for activation. These findings suggest that temporal patterns of expression of specific components of LSD1 complexes modulate gene regulatory programmes in many mammalian organs.
机译:对后生动物发育的转录程序的精确控制是通过酶活性的共调节复合物以及表观遗传学策略来调节的。尚不清楚的一件事是,如何在体内使用组蛋白修饰酶家族的特定成员(例如组蛋白甲基转移酶和脱甲基酶)同时协调不同的发育基因激活和抑制程序。在这里,我们报道组蛋白赖氨酸脱甲基酶LSD1(CoREST-CtBP协同阻遏物复合物的组成部分)是垂体器官发生后期细胞谱系确定和分化所必需的。 LSD1似乎主要是在招募不同的含LSDI的共激活因子或共抑制因子复合物的基础上,作用于靶基因激活程序以及基因抑制程序。依赖LSDI的基因抑制程序可以在ZEB1的诱导表达中进行扩展,ZEB1是一种Kriippel类阻遏物,可作为分子信标募集含有LSDI的CoREST-CtBP阻遏物复合物,从而抑制另外一组基因,例如Gh,以前需要LSD1才能激活。这些发现表明,LSD1复合物特定成分表达的时间模式可调节许多哺乳动物器官中的基因调控程序。

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