Patel Bhumil, Grobler Maryke, Herrera Alberto, Logari Elias, Ortiz Valery, Bhalla Needhi
Department of Molecular, Cell and Developmental Biology, University of California, Santa Cruz, Santa Cruz, CA 95064.
bioRxiv. 2024 Dec 19:2024.08.13.607819. doi: 10.1101/2024.08.13.607819.
Meiotic crossover recombination is essential for both accurate chromosome segregation and the generation of new haplotypes for natural selection to act upon. This requirement is known as crossover assurance and is one example of crossover control. While the conserved role of the ATPase, PCH-2, during meiotic prophase has been enigmatic, a universal phenotype when or its orthologs are mutated is a change in the number and distribution of meiotic crossovers. Here, we show that PCH-2 controls the number and distribution of crossovers by antagonizing their formation. This antagonism produces different effects at different stages of meiotic prophase: early in meiotic prophase, PCH-2 prevents double strand breaks from becoming crossover-eligible intermediates, limiting crossover formation at sites of initial double strand break formation and homolog interactions. Later in meiotic prophase, PCH-2 winnows the number of crossover-eligible intermediates, contributing to the designation of crossovers and ultimately, crossover assurance. We also demonstrate that PCH-2 accomplishes this regulation through the meiotic HORMAD, HIM-3. Our data strongly support a model in which PCH-2's conserved role is to remodel meiotic HORMADs throughout meiotic prophase to destabilize crossover-eligible precursors, coordinate meiotic recombination with synapsis, and contribute to the progressive implementation of meiotic recombination, guaranteeing crossover control.
减数分裂交叉重组对于精确的染色体分离以及产生可供自然选择作用的新单倍型都至关重要。这一需求被称为交叉保证,是交叉控制的一个例子。虽然ATP酶PCH - 2在减数分裂前期的保守作用一直令人费解,但当它或其直系同源物发生突变时,一个普遍的表型是减数分裂交叉的数量和分布发生变化。在这里,我们表明PCH - 2通过拮抗交叉的形成来控制交叉的数量和分布。这种拮抗作用在减数分裂前期的不同阶段产生不同的影响:在减数分裂前期早期,PCH - 2阻止双链断裂成为符合交叉条件的中间体,限制在初始双链断裂形成位点和同源物相互作用处的交叉形成。在减数分裂前期后期,PCH - 2减少符合交叉条件的中间体数量,有助于交叉的指定,并最终实现交叉保证。我们还证明PCH - 2通过减数分裂HORMAD,即HIM - 3来完成这种调节。我们的数据有力地支持了一个模型,其中PCH - 2的保守作用是在整个减数分裂前期重塑减数分裂HORMAD,以使符合交叉条件的前体不稳定,将减数分裂重组与联会协调起来,并有助于减数分裂重组的逐步实施,从而保证交叉控制。