Brower-Toland Brent, Findley Seth D, Jiang Ling, Liu Li, Yin Hang, Dus Monica, Zhou Pei, Elgin Sarah C R, Lin Haifan
Department of Biology, Washington University, Saint Louis, MO 63130, USA.
Genes Dev. 2007 Sep 15;21(18):2300-11. doi: 10.1101/gad.1564307.
The interface between cellular systems involving small noncoding RNAs and epigenetic change remains largely unexplored in metazoans. RNA-induced silencing systems have the potential to target particular regions of the genome for epigenetic change by locating specific sequences and recruiting chromatin modifiers. Noting that several genes encoding RNA silencing components have been implicated in epigenetic regulation in Drosophila, we sought a direct link between the RNA silencing system and heterochromatin components. Here we show that PIWI, an ARGONAUTE/PIWI protein family member that binds to Piwi-interacting RNAs (piRNAs), strongly and specifically interacts with heterochromatin protein 1a (HP1a), a central player in heterochromatic gene silencing. The HP1a dimer binds a PxVxL-type motif in the N-terminal domain of PIWI. This motif is required in fruit flies for normal silencing of transgenes embedded in heterochromatin. We also demonstrate that PIWI, like HP1a, is itself a chromatin-associated protein whose distribution in polytene chromosomes overlaps with HP1a and appears to be RNA dependent. These findings implicate a direct interaction between the PIWI-mediated small RNA mechanism and heterochromatin-forming pathways in determining the epigenetic state of the fly genome.
在多细胞动物中,涉及小非编码RNA的细胞系统与表观遗传变化之间的界面在很大程度上仍未被探索。RNA诱导沉默系统有可能通过定位特定序列并招募染色质修饰剂,针对基因组的特定区域进行表观遗传变化。注意到几个编码RNA沉默成分的基因已被证明与果蝇的表观遗传调控有关,我们寻求RNA沉默系统与异染色质成分之间的直接联系。在这里,我们表明PIWI是一种与Piwi相互作用RNA(piRNA)结合的AGO/PIWI蛋白家族成员,它与异染色质蛋白1a(HP1a)强烈且特异性地相互作用,HP1a是异染色质基因沉默的核心参与者。HP1a二聚体结合PIWI N端结构域中的PxVxL型基序。在果蝇中,这个基序对于嵌入异染色质中的转基因的正常沉默是必需的。我们还证明,PIWI与HP1a一样,本身是一种与染色质相关的蛋白质,其在多线染色体中的分布与HP1a重叠,并且似乎依赖于RNA。这些发现表明,在确定果蝇基因组的表观遗传状态时,PIWI介导的小RNA机制与异染色质形成途径之间存在直接相互作用。