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Meiotic recombination protein Rec12: functional conservation, crossover homeostasis and early crossover/non-crossover decision

机译:减数分裂重组蛋白Rec12:功能保守,交叉稳态和早期交叉/非交叉决定

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摘要

In fission yeast and other eukaryotes, Rec12 (Spo11) is thought to catalyze the formation of dsDNA breaks (DSBs) that initiate homologous recombination in meiosis. Rec12 is orthologous to the catalytic subunit of topoisomerase VI (Top6A). Guided by the crystal structure of Top6A, we engineered the rec12 locus to encode Rec12 proteins each with a single amino acid substitution in a conserved residue. Of 21 substitutions, 10 significantly reduced or abolished meiotic DSBs, gene conversion, crossover recombination and the faithful segregation of chromosomes. Critical residues map within the metal ion-binding pocket toprim (E179A, D229A, D231A), catalytic region 5Y-CAP (R94A, D95A, Y98F) and the DNA-binding interface (K201A, G202E, R209A, K242A). A subset of substitutions reduced DSBs but maintained crossovers, demonstrating crossover homeostasis. Furthermore, a strong separation of function mutation (R304A) suggests that the crossover/non-crossover decision is established early by a protein–protein interaction surface of Rec12. Fission yeast has multiple crossovers per bivalent, and chromosome segregation was robust above a threshold of about one crossover per bivalent, below which non-disjunction occurred. These results support structural and functional conservation among Rec12/Spo11/Top6A family members for the catalysis of DSBs, and they reveal how Rec12 regulates other features of meiotic chromosome dynamics.
机译:在裂变酵母和其他真核生物中,Rec12(Spo11)被认为可催化dsDNA断裂(DSBs)的形成,该断裂会引发减数分裂中的同源重组。 Rec12与拓扑异构酶VI(Top6A)的催化亚基同源。根据Top6A的晶体结构,我们设计了rec12基因座,以编码Rec12蛋白,每个蛋白在保守残基中具有单个氨基酸取代。在21个替换中,有10个显着减少或废除了减数分裂DSB,基因转换,交叉重组和忠实的染色体分离。关键残基在金属离子结合口袋中映射到引物(E179A,D229A,D231A),催化区域5Y-CAP(R94A,D95A,Y98F)和DNA结合界面(K201A,G202E,R209A,K242A)中。取代的子集减少了DSB,但保持了交叉,证明了交叉稳态。此外,功能突变的强烈分离(R304A)表明,交叉/非交叉决定是由Rec12的蛋白-蛋白相互作用表面及早建立的。裂变酵母每二价具有多个交换,并且染色体分离在每二价约一个交换的阈值以上是稳健的,低于该阈值发生不分离。这些结果支持Rec12 / Spo11 / Top6A家族成员在结构和功能上的DSB催化催化,并揭示了Rec12如何调节减数分裂染色体动力学的其他特征。

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