INRA, UMR1318, Institut Jean-Pierre Bourgin, RD10, Versailles, France.
PLoS Genet. 2012;8(7):e1002799. doi: 10.1371/journal.pgen.1002799. Epub 2012 Jul 26.
In numerous species, the formation of meiotic crossovers is largely under the control of a group of proteins known as ZMM. Here, we identified a new ZMM protein, HEI10, a RING finger-containing protein that is well conserved among species. We show that HEI10 is structurally and functionally related to the yeast Zip3 ZMM and that it is absolutely required for class I crossover (CO) formation in Arabidopsis thaliana. Furthermore, we show that it is present as numerous foci on the chromosome axes and the synaptonemal complex central element until pachytene. Then, from pachytene to diakinesis, HEI10 is retained at a limited number of sites that correspond to class I COs, where it co-localises with MLH1. Assuming that HEI10 early staining represents an early selection of recombination intermediates to be channelled into the ZMM pathway, HEI10 would therefore draw a continuity between early chosen recombination intermediates and final class I COs.
在许多物种中,减数分裂交叉的形成在很大程度上受到一组被称为 ZMM 的蛋白质的控制。在这里,我们鉴定了一种新的 ZMM 蛋白 HEI10,它是一种含 RING 指的蛋白质,在物种间高度保守。我们表明 HEI10 在结构和功能上与酵母 Zip3 ZMM 相关,并且它在拟南芥中绝对需要 I 类交叉(CO)的形成。此外,我们表明它在染色体轴和联会复合体中央元件上作为许多焦点存在,直到粗线期。然后,从粗线期到减数分裂中期,HEI10 保留在与 I 类 CO 对应的有限数量的位点上,在那里它与 MLH1 共定位。假设 HEI10 的早期染色代表对将要进入 ZMM 途径的重组中间体的早期选择,那么 HEI10 将在早期选择的重组中间体和最终的 I 类 CO 之间建立连续性。