Zofall M, Grewal S I S
Laboratory of Molecular Cell Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Cold Spring Harb Symp Quant Biol. 2006;71:487-96. doi: 10.1101/sqb.2006.71.059.
The organization of DNA into heterochromatin domains is critical for a variety of chromosomal functions, including gene silencing, recombination suppression, and chromosome segregation. In fission yeast, factors involved in the RNAi pathway such as Argonaute, Dicer, and RNA-dependent RNA polymerase are required for assembly of heterochromatin structures. The RNAi Argonaute-containing RITS complex and RNA-dependent RNA polymerase localize throughout heterochromatin domains. These factors are important components of a self-reinforcing loop mechanism operating in cis to process repeat transcripts into siRNAs, which involve in heterochromatin assembly. In this paper, we describe our results suggesting that slicing of repeat transcripts by the Argonaute is an important step in their conversion into siRNAs and heterochromatic silencing. Mutations in conserved residues known to be essential for slicer activity of Argonautes result in loss of siRNAs corresponding to centromeric repeats, accumulation of repeat transcripts, and defects in heterochromatin assembly. We also discuss our recent finding that heterochromatin proteins such as Swi6/HP1 serve as a platform that could recruit both silencing and antisilencing factors to heterochromatic loci.
将DNA组织成异染色质结构域对于多种染色体功能至关重要,包括基因沉默、重组抑制和染色体分离。在裂殖酵母中,异染色质结构的组装需要RNAi途径中涉及的因子,如AGO蛋白、Dicer和RNA依赖性RNA聚合酶。含RNAi AGO蛋白的RITS复合物和RNA依赖性RNA聚合酶定位于整个异染色质结构域。这些因子是一种顺式作用的自我强化环机制的重要组成部分,该机制将重复转录本加工成siRNA,参与异染色质组装。在本文中,我们描述了我们的结果,表明AGO蛋白对重复转录本的切割是其转化为siRNA和异染色质沉默的重要步骤。AGO蛋白切割活性所必需的保守残基发生突变,会导致对应着丝粒重复序列的siRNA缺失、重复转录本积累以及异染色质组装缺陷。我们还讨论了我们最近的发现,即异染色质蛋白如Swi6/HP1作为一个平台,可以将沉默和反沉默因子募集到异染色质位点。