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首页> 外文期刊>Trends in Plant Science >From flour to flower: how Polycomb group proteins influence multiple aspects of plant development [Review]
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From flour to flower: how Polycomb group proteins influence multiple aspects of plant development [Review]

机译:从面粉到花朵:Polycomb组蛋白如何影响植物发育的多个方面[综述]

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摘要

Cell identity and differentiation are determined by patterns of regulatory gene expression. Spatially and temporally regulated homeotic gene expression defines segment identities along the anterior-posterior axis of animal embryos. Polycomb group (PcG) proteins form a cellular memory system that maintains the repressed state of homeotic gene expression. Conserved PcG proteins control multiple aspects of Arabidopsis development and maintain homeotic gene repression. In animals, PcG proteins repress their target genes by modifying histone tails through deacetylation and methylation, generating a PcG-specific histone code that recruits other chromatin remodeling proteins to establish a stable, heritable mechanism of epigenetic expression control. Plant PcG proteins might function through a similar biochemical mechanism owing to their conserved structural and functional relationship to animal PcG proteins.
机译:细胞身份和分化取决于调节基因表达的模式。时空调控的同源基因表达定义了沿动物胚胎前后轴的区段同一性。 polycomb group(PcG)蛋白形成了一个细胞记忆系统,可以维持同源基因表达的抑制状态。保守的PcG蛋白控制拟南芥发育的多个方面,并维持同源基因的抑制。在动物中,PcG蛋白通过脱乙酰基和甲基化修饰组蛋白尾巴来抑制其靶基因,从而生成PcG特异性组蛋白代码,该组蛋白代码可以募集其他染色质重塑蛋白来建立表观遗传表达控制的稳定,可遗传机制。植物PcG蛋白由于与动物PcG蛋白具有保守的结构和功能关系,因此可能通过类似的生化机制发挥作用。

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