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DMC1在酿酒酵母减数分裂途径中发挥作用,该途径在很大程度上独立于RAD51途径。

DMC1 functions in a Saccharomyces cerevisiae meiotic pathway that is largely independent of the RAD51 pathway.

作者信息

Dresser M E, Ewing D J, Conrad M N, Dominguez A M, Barstead R, Jiang H, Kodadek T

机构信息

Program in Molecular and Cell Biology, Oklahoma Medical Research Foundation, Oklahoma City 73104, USA.

出版信息

Genetics. 1997 Oct;147(2):533-44. doi: 10.1093/genetics/147.2.533.

Abstract

Meiotic recombination in the yeast Saccharomyces cerevisiae requires two similar recA-like proteins, Dmc1p and Rad51p. A screen for dominant meiotic mutants provided DMC1-G126D, a dominant allele mutated in the conserved ATP-binding site (specifically, the A-loop motif) that confers a null phenotype. A recessive null allele, dmc1-K69E, was isolated as an intragenic suppressor of DMC1-G126D. Dmc1-K69Ep, unlike Dmc1p, does not interact homotypically in a two-hybrid assay, although it does interact with other fusion proteins identified by two-hybrid screen with Dmc1p. Dmc1p, unlike Rad51p, does not interact in the two-hybrid assay with Rad52p or Rad54p. However, Dmc1p does interact with Tid1p, a Rad54p homologue, with Tid4p, a Rad16p homologue, and with other fusion proteins that do not interact with Rad51p, suggesting that Dmc1p and Rad51p function in separate, though possibly overlapping, recombinational repair complexes. Epistasis analysis suggests that DMC1 and RAD51 function in separate pathways responsible for meiotic recombination. Taken together, our results are consistent with a requirement for DMC1 for meiosis-specific entry of DNA double-strand break ends into chromatin. Interestingly, the pattern on CHEF gels of chromosome fragments that result from meiotic DNA double-strand break formation is different in DMC1 mutant strains from that seen in rad50S strains.

摘要

酿酒酵母中的减数分裂重组需要两种相似的类RecA蛋白,即Dmc1p和Rad51p。对显性减数分裂突变体的筛选得到了DMC1-G126D,这是一个在保守的ATP结合位点(具体为A环基序)发生突变的显性等位基因,它赋予了无效表型。隐性无效等位基因dmc1-K69E作为DMC1-G126D的基因内抑制子被分离出来。与Dmc1p不同,Dmc1-K69Ep在双杂交试验中不发生同源相互作用,尽管它确实与通过与Dmc1p进行双杂交筛选鉴定出的其他融合蛋白相互作用。与Rad51p不同,Dmc1p在双杂交试验中不与Rad52p或Rad54p相互作用。然而,Dmc1p确实与Rad54p的同源物Tid1p、Rad16p的同源物Tid4p以及其他不与Rad51p相互作用的融合蛋白相互作用,这表明Dmc1p和Rad51p在不同但可能重叠的重组修复复合物中发挥作用。上位性分析表明,DMC1和RAD51在负责减数分裂重组的不同途径中发挥作用。综上所述,我们的结果与减数分裂特异性地使DNA双链断裂末端进入染色质需要DMC1这一观点一致。有趣的是,减数分裂DNA双链断裂形成所产生的染色体片段在CHEF凝胶上的图谱在DMC1突变体菌株中与在rad50S菌株中看到的不同。

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