Gene conversions resulting from meiotic recombination are critical in shaping genome diversification and evolution. How the extent of gene conversions is regulated is unknown. Here we show that the budding yeast mismatch repair related MutLβ complex, Mlh1-Mlh2, specifically interacts with the conserved meiotic Mer3 helicase, which recruits it to recombination hotspots, independently of mismatch recognition. This recruitment is essential to limit gene conversion tract lengths genome-wide, without affecting crossover formation. Contrary to expectations, Mer3 helicase activity, proposed to extend the displacement loop (D-loop) recombination intermediate, does not influence the length of gene conversion events, revealing non-catalytical roles of Mer3. In addition, both purified Mer3 and MutLβ preferentially recognize D-loops, providing a mechanism for limiting gene conversion in vivo. These findings show that MutLβ is an integral part of a new regulatory step of meiotic recombination, which has implications to prevent rapid allele fixation and hotspot erosion in populations.
Concerted action of the MutLβ heterodimer and Mer3 helicase regulates the global extent of meiotic gene conversion.
MutLβ异二聚体和Mer3解旋酶的协同作用调节减数分裂基因转换的整体程度
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作者:Duroc Yann, Kumar Rajeev, Ranjha Lepakshi, Adam Céline, Guérois Raphaël, Md Muntaz Khan, Marsolier-Kergoat Marie-Claude, Dingli Florent, Laureau Raphaëlle, Loew Damarys, Llorente Bertrand, Charbonnier Jean-Baptiste, Cejka Petr, Borde Valérie
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2017 | 起止号: | 2017 Jan 4; 6:e21900 |
| doi: | 10.7554/eLife.21900 | 研究方向: | 免疫/内分泌 |
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