Nakagawa T, Ogawa H
Department of Biology, Graduate School of Science, Osaka University, Toyonaka, Japan.
Genes Cells. 1997 Jan;2(1):65-79. doi: 10.1046/j.1365-2443.1997.d01-283.x.
The mre2 mutant of Saccharomyces cerevisiae is defective in meiotic recombination and produces inviable spores, but the sensitivities to DNA damaging agents, methyl methanesulphonate and ultraviolet light are not altered by the mutation. Mre2 has two copies of RNA recognition motif (RRM), suggesting its participation in RNA metabolism in meiosis.
An amino acid substitution in the N-terminal RRM of Mre2 confers a meiotic recombination defect. Using this mre2N strain, the MER2 gene was isolated as a multi-copy suppressor of the recombination defect. Meiosis-specific splicing of MER2 pre-mRNA was impaired in the mre2 deletion (mre2delta) mutant. The mre2delta mutant was defective in the formation of meiosis-specific double-strand breaks (DSBs) and crossover and noncrossover recombinants. When the chromosomal MER2 gene was replaced with the intronless derivative of MER2 gene, cMER2, the formation of DSBs and of noncrossover recombinants were restored in the mre2delta mutant. However, the amount of crossover recombinants produced in the mre2delta cMER2 strain was approximately 30% that in the wild-type. In addition, the mre2delta cMER2 mutant was defective in chromosome segregation and in viable spore formation.
Mre2 participates in the formation of DSBs through meiosis-specific splicing of MER2 pre-mRNA. Besides, Mre2 is also involved in crossover recombination, possibly through splicing of RNA from another gene(s).
酿酒酵母的mre2突变体在减数分裂重组中存在缺陷,并产生不可育的孢子,但该突变不会改变其对DNA损伤剂甲磺酸甲酯和紫外线的敏感性。Mre2有两个RNA识别基序(RRM)拷贝,表明它参与减数分裂中的RNA代谢。
Mre2的N端RRM中的一个氨基酸替换导致减数分裂重组缺陷。利用这种mre2N菌株,MER2基因被分离为重组缺陷的多拷贝抑制子。在mre2缺失(mre2delta)突变体中,MER2前体mRNA的减数分裂特异性剪接受损。mre2delta突变体在减数分裂特异性双链断裂(DSB)以及交换型和非交换型重组体的形成方面存在缺陷。当染色体上的MER2基因被MER2基因的无内含子衍生物cMER2取代时,mre2delta突变体中DSB和非交换型重组体的形成得以恢复。然而,mre2delta cMER2菌株产生的交换型重组体数量约为野生型的30%。此外,mre2delta cMER2突变体在染色体分离和有活力孢子形成方面存在缺陷。
Mre2通过MER2前体mRNA的减数分裂特异性剪接参与DSB的形成。此外,Mre2还可能通过另一个基因的RNA剪接参与交换重组。