State Key Laboratory of Plant Genomics and Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.
PLoS Genet. 2012 Jul;8(7):e1002809. doi: 10.1371/journal.pgen.1002809. Epub 2012 Jul 5.
HEI10 was first described in human as a RING domain-containing protein that regulates cell cycle and cell invasion. Mice HEI10(mei4) mutant displays no obvious defect other than meiotic failure from an absence of chiasmata. In this study, we characterize rice HEI10 by map-based cloning and explore its function during meiotic recombination. In the rice hei10 mutant, chiasma frequency is markedly reduced, and those remaining chiasmata exhibit a random distribution among cells, suggesting possible involvement of HEI10 in the formation of interference-sensitive crossovers (COs). However, mutation of HEI10 does not affect early recombination events and synaptonemal complex (SC) formation. HEI10 protein displays a highly dynamic localization on the meiotic chromosomes. It initially appears as distinct foci and co-localizes with MER3. Thereafter, HEI10 signals elongate along the chromosomes and finally restrict to prominent foci that specially localize to chiasma sites. The linear HEI10 signals always localize on ZEP1 signals, indicating that HEI10 extends along the chromosome in the wake of synapsis. Together our results suggest that HEI10 is the homolog of budding yeast Zip3 and Caenorhabditis elegans ZHP-3, and may specifically promote class I CO formation through modification of various meiotic components.
HEI10 最初在人类中被描述为一种含有 RING 结构域的蛋白质,可调节细胞周期和细胞侵袭。小鼠 HEI10(mei4) 突变体除了联会失败导致没有交叉外,没有明显的缺陷。在这项研究中,我们通过图谱克隆对水稻 HEI10 进行了表征,并探索了它在减数分裂重组过程中的功能。在水稻 hei10 突变体中,交叉频率明显降低,而剩余的交叉呈现出细胞间随机分布的状态,表明 HEI10 可能参与了干扰敏感交叉(CO)的形成。然而,HEI10 的突变并不影响早期重组事件和联会复合体(SC)的形成。HEI10 蛋白在减数分裂染色体上表现出高度动态的定位。它最初表现为独特的焦点,与 MER3 共定位。此后,HEI10 信号沿着染色体伸长,最终限制在专门定位在交叉点的突出焦点上。线性 HEI10 信号总是定位于 ZEP1 信号上,表明 HEI10 在联会之后沿着染色体延伸。我们的结果表明,HEI10 是芽殖酵母 Zip3 和秀丽隐杆线虫 ZHP-3 的同源物,可能通过修饰各种减数分裂成分来特异性促进 I 类 CO 的形成。