Allshire R C, Klar A J, Grewal S I
Cold Spring Harbor Laboratory, PO Box 100, Cold Spring Harbor, NY 11724, National Cancer Institute, Frederick, MD, USA and MRC Human Genetics Unit, Edinburgh, UK.
EMBO J. 2001 Jun 1;20(11):2857-66. doi: 10.1093/emboj/20.11.2857.
In the fission yeast Schizosaccharomyces pombe, transcriptional silencing at the mating-type region, centromeres and telomeres is epigenetically controlled, and results from the assembly of higher order chromatin structures. Chromatin proteins associated with these silenced loci are believed to serve as molecular bookmarks that help promote inheritance of the silenced state during cell division. Specifically, a chromodomain protein Swi6 is believed to be an important determinant of the epigenetic imprint. Here, we show that a mutation in DNA polymerase alpha (pol(alpha)) affects Swi6 localization at the mating-type region and causes a 45-fold increase in spontaneous transition from the silenced epigenetic state to the expressed state. We also demonstrate that pol(alpha) mutant cells are defective in Swi6 localization at centromeres and telomeres. Genetic analysis suggests that Polalpha and Swi6 are part of the same silencing pathway. Interestingly, we found that Swi6 directly binds to Pol(alpha) in vitro. Moreover, silencing-defective mutant Pol(alpha) displays reduced binding to Swi6 protein. This work indicates involvement of a DNA replication protein, Pol(alpha), in heterochromatin assembly and inheritance of epigenetic chromatin structures.
在裂殖酵母粟酒裂殖酵母中,交配型区域、着丝粒和端粒处的转录沉默受表观遗传控制,是高阶染色质结构组装的结果。与这些沉默位点相关的染色质蛋白被认为可作为分子书签,有助于在细胞分裂过程中促进沉默状态的遗传。具体而言,一种色域蛋白Swi6被认为是表观遗传印记的重要决定因素。在此,我们表明DNA聚合酶α(pol(α))中的一个突变会影响Swi6在交配型区域的定位,并导致从沉默的表观遗传状态到表达状态的自发转变增加45倍。我们还证明,pol(α)突变细胞在着丝粒和端粒处的Swi6定位存在缺陷。遗传分析表明,Polα和Swi6是同一沉默途径的一部分。有趣的是,我们发现Swi6在体外直接与Pol(α)结合。此外,沉默缺陷型突变体Pol(α)与Swi6蛋白的结合减少。这项工作表明,一种DNA复制蛋白Pol(α)参与了异染色质组装和表观遗传染色质结构的遗传。