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Clr7和Clr8方向性因子以及Pcu4泛素连接酶在裂殖酵母粟酒裂殖酵母中介导异染色质形成。

The Clr7 and Clr8 directionality factors and the Pcu4 cullin mediate heterochromatin formation in the fission yeast Schizosaccharomyces pombe.

作者信息

Thon Geneviève, Hansen Klavs R, Altes Susagna Padrissa, Sidhu Deepak, Singh Gurjeet, Verhein-Hansen Janne, Bonaduce Michael J, Klar Amar J S

机构信息

Department of Genetics, Institute of Molecular Biology and Physiology, University of Copenhagen, Øster Farimasgade 2A, DK-1353 Copenhagen K, Denmark.

出版信息

Genetics. 2005 Dec;171(4):1583-95. doi: 10.1534/genetics.105.048298. Epub 2005 Sep 12.

Abstract

Fission yeast heterochromatin is formed at centromeres, telomeres, and in the mating-type region where it mediates the transcriptional silencing of the mat2-P and mat3-M donor loci and the directionality of mating-type switching. We conducted a genetic screen for directionality mutants. This screen revealed the essential role of two previously uncharacterized factors, Clr7 and Clr8, in heterochromatin formation. Clr7 and Clr8 are required for localization of the Swi6 chromodomain protein and for histone H3 lysine 9 methylation, thereby influencing not only mating-type switching but also transcriptional silencing in all previously characterized heterochromatic regions, chromosome segregation, and meiotic recombination in the mating-type region. We present evidence for physical interactions between Clr7 and the mating-type region and between Clr7 and the S. pombe cullin Pcu4, indicating that a complex containing these proteins mediates an early step in heterochromatin formation and implying a role for ubiquitination at this early stage prior to the action of the Clr4 histone methyl-transferase. Like Clr7 and Clr8, Pcu4 is required for histone H3 lysine 9 methylation, and bidirectional centromeric transcripts that are normally processed into siRNA by the RNAi machinery in wild-type cells are easily detected in cells lacking Clr7, Clr8, or Pcu4. Another physical interaction, between the nucleoporin Nup189 and Clr8, suggests that Clr8 might be involved in tethering heterochromatic regions to the nuclear envelope by association with the nuclear-pore complex.

摘要

裂殖酵母异染色质在着丝粒、端粒以及交配型区域形成,在交配型区域它介导mat2 - P和mat3 - M供体位点的转录沉默以及交配型转换的方向性。我们针对方向性突变体进行了遗传筛选。该筛选揭示了两个先前未被表征的因子Clr7和Clr8在异染色质形成中的关键作用。Clr7和Clr8是Swi6染色质结构域蛋白定位以及组蛋白H3赖氨酸9甲基化所必需的,从而不仅影响交配型转换,还影响所有先前已表征的异染色质区域中的转录沉默、染色体分离以及交配型区域的减数分裂重组。我们提供了Clr7与交配型区域之间以及Clr7与粟酒裂殖酵母cullin蛋白Pcu4之间存在物理相互作用的证据,这表明包含这些蛋白的复合物介导了异染色质形成的早期步骤,并暗示在Clr4组蛋白甲基转移酶作用之前的这个早期阶段泛素化发挥了作用。与Clr7和Clr8一样,Pcu4是组蛋白H3赖氨酸9甲基化所必需的,并且在缺乏Clr7、Clr8或Pcu4的细胞中很容易检测到通常在野生型细胞中由RNAi机制加工成siRNA的双向着丝粒转录本。核孔蛋白Nup189与Clr8之间的另一种物理相互作用表明,Clr8可能通过与核孔复合体结合而参与将异染色质区域 tether 到核膜上。

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