Acharya Sonia N, Many Alexander M, Schroeder Andrew P, Kennedy Felicia M, Savytskyy Oleksandr P, Grubb Jennifer T, Vincent Jack A, Friedle Elizabeth A, Celerin Martina, Maillet Daniel S, Palmerini Heather J, Greischar Megan A, Moncalian Gabriel, Williams R Scott, Tainer John A, Zolan Miriam E
The Scripps Research Institute, La Jolla, California 92037, USA.
Genetics. 2008 Dec;180(4):1889-907. doi: 10.1534/genetics.108.092775. Epub 2008 Oct 20.
The Mre11/Rad50/Nbs1 (MRN) complex is required for eukaryotic DNA double-strand break (DSB) repair and meiotic recombination. We cloned the Coprinus cinereus rad50 gene and showed that it corresponds to the complementation group previously named rad12, identified mutations in 15 rad50 alleles, and mapped two of the mutations onto molecular models of Rad50 structure. We found that C. cinereus rad50 and mre11 mutants arrest in meiosis and that this arrest is Spo11 dependent. In addition, some rad50 alleles form inducible, Spo11-dependent Rad51 foci and therefore must be forming meiotic DSBs. Thus, we think it likely that arrest in both mre11-1 and the collection of rad50 mutants is the result of unrepaired or improperly processed DSBs in the genome and that Rad50 and Mre11 are dispensable in C. cinereus for DSB formation, but required for appropriate DSB processing. We found that the ability of rad50 mutant strains to form Rad51 foci correlates with their ability to promote synaptonemal complex formation and with levels of stable meiotic pairing and that partial pairing, recombination initiation, and synapsis occur in the absence of wild-type Rad50 catalytic domains. Examination of single- and double-mutant strains showed that a spo11 mutation that prevents DSB formation enhances axial element (AE) formation for rad50-4, an allele predicted to encode a protein with intact hook region and hook-proximal coiled coils, but not for rad50-1, an allele predicted to encode a severely truncated protein, or for rad50-5, which encodes a protein whose hook-proximal coiled-coil region is disrupted. Therefore, Rad50 has an essential structural role in the formation of AEs, separate from the DSB-processing activity of the MRN complex.
Mre11/Rad50/Nbs1(MRN)复合物是真核生物DNA双链断裂(DSB)修复和减数分裂重组所必需的。我们克隆了灰盖鬼伞rad50基因,证明它对应于先前命名为rad12的互补群,鉴定了15个rad50等位基因中的突变,并将其中两个突变定位到Rad50结构的分子模型上。我们发现灰盖鬼伞rad50和mre11突变体在减数分裂中停滞,并且这种停滞是Spo11依赖性的。此外,一些rad50等位基因形成可诱导的、Spo11依赖性的Rad51焦点,因此必定正在形成减数分裂DSB。因此,我们认为mre11 - 1和rad50突变体集合中的停滞很可能是基因组中未修复或处理不当的DSB的结果,并且Rad50和Mre11在灰盖鬼伞中对于DSB形成是可有可无的,但对于适当的DSB处理是必需的。我们发现rad50突变菌株形成Rad51焦点的能力与其促进联会复合体形成的能力以及稳定减数分裂配对水平相关,并且在没有野生型Rad50催化结构域的情况下会发生部分配对、重组起始和联会。对单突变和双突变菌株的检查表明,一个阻止DSB形成的spo11突变增强了rad50 - 4的轴向元件(AE)形成,rad50 - 4是一个预测编码具有完整钩状区域和钩近端卷曲螺旋的蛋白质的等位基因,但对于rad50 - 1(一个预测编码严重截短蛋白质的等位基因)或rad50 - 5(其编码的蛋白质的钩近端卷曲螺旋区域被破坏)则没有增强作用。因此,Rad50在AE形成中具有重要的结构作用,这与MRN复合物的DSB处理活性是分开的。