Yamashita Kentaro, Shinohara Miki, Shinohara Akira
Department of Biology, Graduate School of Science, and Institute for Protein Research, Osaka University, Suita, Osaka 565-0871, Japan.
Proc Natl Acad Sci U S A. 2004 Aug 3;101(31):11380-5. doi: 10.1073/pnas.0400078101. Epub 2004 Jul 27.
An E2 ubiquitin-conjugating enzyme, Rad6, working with an E3 ubiquitin ligase Bre1, catalyzes monoubiquitylation of histone H2B on a C-terminal lysine residue. The rad6 mutant of Saccharomyces cerevisiae shows a meiotic prophase arrest. Here, we analyzed meiotic defects of a rad6 null mutant of budding yeast. The rad6 mutant exhibits pleiotropic phenotypes during meiosis. RAD6 is required for efficient formation of double-strand breaks (DSBs) at meiotic recombination hotspots, which is catalyzed by Spo11. The mutation decreases overall frequencies of DSBs in a cell. The effect of the rad6 mutation is local along chromosomes; levels of DSBs at stronger hotspots are particularly reduced in the mutant. The absence of RAD6 has little effect on the formation of ectopic DSBs targeted by Spo11 fusion protein with a Gal4 DNA-binding domain. Furthermore, the disruption of the BRE1 as well as substitution of the ubiquitylation site of histone H2B also reduces some DSB formation similar to the rad6. These results suggest that Rad6-Bre1, through ubiquitylation of histone H2B, is necessary for efficient recruitment and/or stabilization of a DSB-forming machinery containing Spo11. Histone tail modifications might play a role in DSB formation during meiosis.
一种E2泛素结合酶Rad6与E3泛素连接酶Bre1协同作用,催化组蛋白H2B在C末端赖氨酸残基上的单泛素化。酿酒酵母的rad6突变体表现出减数分裂前期停滞。在此,我们分析了芽殖酵母rad6缺失突变体的减数分裂缺陷。rad6突变体在减数分裂过程中表现出多效性表型。RAD6是减数分裂重组热点处高效形成双链断裂(DSB)所必需的,DSB由Spo11催化形成。该突变降低了细胞中DSB的总体频率。rad6突变的影响沿染色体呈局部性;在较强热点处的DSB水平在突变体中尤其降低。RAD6的缺失对由与Gal4 DNA结合结构域的Spo11融合蛋白靶向的异位DSB的形成影响很小。此外,BRE1的破坏以及组蛋白H2B泛素化位点的替换也会像rad6一样降低一些DSB的形成。这些结果表明,Rad6 - Bre1通过组蛋白H2B的泛素化作用,对于包含Spo11的DSB形成机制的有效募集和/或稳定是必需的。组蛋白尾部修饰可能在减数分裂期间的DSB形成中发挥作用。