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A Multiprotein Complex Regulates Interference-Sensitive Crossover Formation in Rice

机译:一种多蛋白复合物调节水稻中的干扰敏感性交叉形成

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摘要

In most eukaryotes, a set of conserved proteins that are collectively termed ZMM proteins (named for molecular zipper 1 [ZIP1], ZIP2, ZIP3, and ZIP4, MutS homologue 4 [MSH4] and MSH5, meiotic recombination 3, and sporulation 16 [SPO16] in yeast [Saccharomyces cerevisiae]) are essential for the formation of the majority of meiotic crossovers (COs). Recent reports indicated that ZIP2 acts together with SPO16 and ZIP4 to control CO formation through recognizing and stabilizing early recombination intermediates in budding yeast. However, whether this mechanism is conserved in plants is not clear. Here, we characterized the functions of SHORTAGE OF CHIASMATA 1 (OsSHOC1; ZIP2 ortholog) and PARTING DANCERS (OsPTD; SPO16 ortholog) and their interactions with other ZMM proteins in rice (Oryza sativa). We demonstrated that disruption of OsSHOC1 caused a reduction of CO numbers to ∼83% of wild-type CO numbers, whereas synapsis and early meiotic recombination steps were not affected. Furthermore, OsSHOC1 interacts with OsPTD, which is responsible for the same set of CO formations as OsSHOC1. In addition, OsSHOC1 and OsPTD are required for the normal loading of other ZMM proteins, and conversely, the localizations of OsSHOC1 and OsPTD were also affected by the absence of OsZIP4 and human enhancer of invasion 10 in rice (OsHEI10). OsSHOC1 interacts with OsZIP4 and OsMSH5, and OsPTD interacts with OsHEI10. Furthermore, bimolecular fluorescence complementation and yeast-three hybrid assays demonstrated that OsSHOC1, OsPTD, OsHEI10, and OsZIP4 were able to form various combinations of heterotrimers. Moreover, statistical and genetic analysis indicated that OsSHOC1 and OsPTD are epistatic to OsHEI10 and OsZIP4 in meiotic CO formation. Taken together, we propose that OsSHOC1, OsPTD, OsHEI10, and OsZIP4 form multiple protein complexes that have conserved functions in promoting class I CO formation.
机译:在大多数真核生物中,一组保守蛋白统称为ZMM蛋白(以分子拉链1 [ZIP1],ZIP2,ZIP3和ZIP4命名,MutS同源物4 [MSH4]和MSH5,减数分裂重组3和孢子形成16 [SPO16酵母[Saccharomyces cerevisiae]中的]对大多数减数分裂转换(COs)的形成至关重要。最近的报道表明,ZIP2与SPO16和ZIP4一起通过识别和稳定发芽酵母中的早期重组中间体来控制CO的形成。但是,尚不清楚该机制是否在植物中保守。在这里,我们表征了CHIASMATA 1(OsSHOC1; ZIP2直系同源物)和PARTING DANCERS(OsPTD; SPO16直系同源物)的功能以及它们与水稻(Oryza sativa)中其他ZMM蛋白的相互作用。我们证明破坏OsSHOC1会导致CO数量减少至野生型CO数量的约83%,而突触和早期减数分裂重组步骤均不受影响。此外,OsSHOC1与OsPTD相互作用,后者与OsSHOC1负责同一组CO形成。此外,OsSHOC1和OsPTD是正常加载其他ZMM蛋白所必需的,相反,OsSHOC1和OsPTD的定位也受水稻中OsZIP4和人类入侵增强子10(OsHEI10)缺失的影响。 OsSHOC1与OsZIP4和OsMSH5交互,而OsPTD与OsHEI10交互。此外,双分子荧光互补和酵母三杂交试验表明,OsSHOC1,OsPTD,OsHEI10和OsZIP4能够形成异三聚体的各种组合。此外,统计和遗传分析表明,OsSHOC1和OsPTD在减数分裂CO形成中比OsHEI10和OsZIP4上位。两者合计,我们建议OsSHOC1,OsPTD,OsHEI10和OsZIP4形成多种蛋白质复合物,这些蛋白质复合物在促进I类CO形成中具有保守的功能。

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