Hong Eun-Jin Erica, Villén Judit, Gerace Erica L, Gygi Steven P, Moazed Danesh
Department of Cell Biology, Harvard Medical School, Boston, Masachusetts 02115, USA.
RNA Biol. 2005 Jul-Sep;2(3):106-11. doi: 10.4161/rna.2.3.2131. Epub 2005 Jul 30.
The assembly of heterochromatin in fission yeast and metazoans requires histone H3-lysine 9 (-K9) methylation by the conserved Clr4/Suv39h methyltransferase. In fission yeast, H3-K9 methylation requires components of the RNAi machinery and is initiated by the RNA-Induced Transcriptional Silencing (RITS) complex. Here we report the purification of a novel complex that associates with the Clr4 methyltransferase, termed the CLRC (CLr4-Rik1-Cul4) complex. By affinity purification of the Clr4-associated protein Rik1, we show that, in addition to Clr4, Rik1 is associated with the fission yeast E3 ubiquitin ligase Cullin4 (Cul4, encoded by cul4(+)), the ubiquitin-like protein, Ned8, and two previously uncharacterized proteins, designated Cmc1 and Cmc2. In addition, the complex contains substochiometric amounts of histones H2B and H4, and the 14-3-3 protein, Rad24. Deletion of cul4(+), cmc1(+), cmc2(+) and rad24(+) results in a complete loss of silencing of a ura4(+) reporter gene inserted within centromeric DNA repeats or the silent mating type locus. Each of the above deletions also results in accumulation of noncoding RNAs transcribed from centromeric repeats and telomeric DNA regions, and a corresponding loss of small RNAs that are homologous to centromeric repeats, suggesting a defect in the processing of noncoding RNA to small RNA. Based on these results, we propose that the components of the Clr4-Rik1-Cul4 complex act concertedly at an early step in heterochromatin formation.
在裂殖酵母和后生动物中,异染色质的组装需要保守的Clr4/Suv39h甲基转移酶对组蛋白H3赖氨酸9(-K9)进行甲基化。在裂殖酵母中,H3-K9甲基化需要RNA干扰机制的组分,并由RNA诱导的转录沉默(RITS)复合体启动。在此,我们报告了一种与Clr4甲基转移酶相关的新型复合体的纯化,该复合体称为CLRC(Clr4-Rik1-Cul4复合体)。通过对与Clr4相关的蛋白Rik1进行亲和纯化,我们发现,除了Clr4之外,Rik1还与裂殖酵母E3泛素连接酶Cullin4(Cul4,由cul4(+)编码)、泛素样蛋白Ned8以及两种先前未鉴定的蛋白(命名为Cmc1和Cmc2)相关。此外,该复合体还含有亚化学计量的组蛋白H2B和H4以及14-3-3蛋白Rad24。缺失cul4(+)、cmc1(+)、cmc2(+)和rad24(+)会导致插入着丝粒DNA重复序列或沉默交配型位点内的ura4(+)报告基因的沉默完全丧失。上述每个缺失还会导致着丝粒重复序列和端粒DNA区域转录的非编码RNA积累,以及与着丝粒重复序列同源的小RNA相应减少,这表明在非编码RNA加工成小RNA过程中存在缺陷。基于这些结果,我们提出Clr4-Rik1-Cul4复合体的组分在异染色质形成的早期步骤中协同发挥作用。