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开花时间调控因子FCA和FPA在RNA介导的染色质沉默中具有广泛作用。

Widespread role for the flowering-time regulators FCA and FPA in RNA-mediated chromatin silencing.

作者信息

Bäurle Isabel, Smith Lisa, Baulcombe David C, Dean Caroline

机构信息

Department of Cell and Developmental Biology, John Innes Centre, Norwich NR4 7UH, UK.

出版信息

Science. 2007 Oct 5;318(5847):109-12. doi: 10.1126/science.1146565.

Abstract

The RRM-domain proteins FCA and FPA have previously been characterized as flowering-time regulators in Arabidopsis. We show that they are required for RNA-mediated chromatin silencing of a range of loci in the genome. At some target loci, FCA and FPA promote asymmetric DNA methylation, whereas at others they function in parallel to DNA methylation. Female gametophytic development and early embryonic development are particularly susceptible to malfunctions in FCA and FPA. We propose that FCA and FPA regulate chromatin silencing of single and low-copy genes and interact in a locus-dependent manner with the canonical small interfering RNA-directed DNA methylation pathway to regulate common targets.

摘要

RRM结构域蛋白FCA和FPA此前已被鉴定为拟南芥中的开花时间调节因子。我们发现,它们是基因组中一系列位点的RNA介导的染色质沉默所必需的。在一些靶位点,FCA和FPA促进不对称DNA甲基化,而在其他位点,它们与DNA甲基化平行发挥作用。雌配子体发育和早期胚胎发育对FCA和FPA的功能异常尤为敏感。我们提出,FCA和FPA调节单拷贝和低拷贝基因的染色质沉默,并以位点依赖的方式与经典的小干扰RNA介导的DNA甲基化途径相互作用,以调节共同的靶标。

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