首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Altered interactions within FY/AtCPSF complexes required for Arabidopsis FCA-mediated chromatin silencing
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Altered interactions within FY/AtCPSF complexes required for Arabidopsis FCA-mediated chromatin silencing

机译:拟南芥FCA介导的染色质沉默所需的FY / AtCPSF复合物中相互作用的改变

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The role of RNA metabolism in chromatin silencing is now widely recognized. We have studied the Arabidopsis RNA-binding protein FCA that down-regulates an endogenous floral repressor gene through a chromatin mechanism involving histone demethylase activity. This mechanism needs FCA to interact with an RNA 3' processing/polyadenylation factor (FY/Pfs2p), but the subsequent events leading to chromatin changes are unknown. Here, we show that this FCA-FY interaction is required for general chromatin silencing roles where hairpin transgenes induce DNA methylation of an endogenous gene. We also show 2 conserved RNA processing factors, AtCPSFlOO and AtCPSF160, but not FCA, are stably associated with FY in vivo and form a range of different-sized complexes. A hypomorphic fy allele producing a shorter protein, able to provide some FY functions but unable to interact with FCA, reduces abundance of some of the larger MW complexes. Suppressor mutants, which specifically disrupt the FY motif through which FCA interacts, also lacked these larger complexes. Our data support a model whereby FCA, perhaps after recognition of a specific RNA feature, transiently interacts with FY, an integral component of the canonical RNA 3' processing machinery, changing the interactions of the different RNA processing components. These altered interactions would appear to be a necessary step in this RNA-mediated chromatin silencing.
机译:RNA代谢在染色质沉默中的作用现已得到广泛认可。我们已经研究了拟南芥RNA结合蛋白FCA,它通过涉及组蛋白脱甲基酶活性的染色质机制下调内源性花卉抑制基因。该机制需要FCA与RNA 3'加工/聚腺苷酸化因子(FY / Pfs2p)相互作用,但是导致染色质改变的后续事件尚不清楚。在这里,我们显示这种FCA-FY相互作用是一般染色质沉默角色所必需的,其中发夹转基因诱导内源基因的DNA甲基化。我们还显示了2个保守的RNA加工因子AtCPSF100和AtCPSF160,但不是FCA,与FY在体内稳定相关并形成了一系列不同大小的复合物。产生较短蛋白质,能够提供某些FY功能但无法与FCA相互作用的亚态fy等位基因会减少一些较大的MW复合物的丰度。抑制突变体,特别是破坏FCA通过其相互作用的FY基序,也缺少这些较大的复合物。我们的数据支持一个模型,在此模型中,也许在识别出特定的RNA特征后,FCA会与FY瞬时相互作用,而FY是规范RNA 3'加工机制的组成部分,从而改变了不同RNA加工组分的相互作用。这些相互作用的改变似乎是这种RNA介导的染色质沉默的必要步骤。

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