UMR 8621, Institut de Génétique et Microbiologie, Université Paris-Sud, 91405 Orsay, France; Institut Curie, 75248 Paris Cedex 05, France;
Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA;
Genes Dev. 2014 May 15;28(10):1111-23. doi: 10.1101/gad.240408.114.
Human enhancer of invasion-10 (Hei10) mediates meiotic recombination and also plays roles in cell proliferation. Here we explore Hei10's roles throughout the sexual cycle of the fungus Sordaria with respect to localization and effects of null, RING-binding, and putative cyclin-binding (RXL) domain mutations. Hei10 makes three successive types of foci. Early foci form along synaptonemal complex (SC) central regions. At some of these positions, depending on its RING and RXL domains, Hei10 mediates development and turnover of two sequential types of recombination complexes, each demarked by characteristic amplified Hei10 foci. Integration with ultrastructural data for recombination nodules further reveals that recombination complexes differentiate into three types, one of which corresponds to crossover recombination events during or prior to SC formation. Finally, Hei10 positively and negatively modulates SUMO localization along SCs by its RING and RXL domains, respectively. The presented findings suggest that Hei10 integrates signals from the SC, associated recombination complexes, and the cell cycle to mediate both the development and programmed turnover/evolution of recombination complexes via SUMOylation/ubiquitination. Analogous cell cycle-linked assembly/disassembly switching could underlie localization and roles for Hei10 in centrosome/spindle pole body dynamics and associated nuclear trafficking. We suggest that Hei10 is a unique type of structure-based signal transduction protein.
人类侵袭增强因子 10(Hei10)介导减数分裂重组,并且在细胞增殖中发挥作用。在这里,我们探索了 Hei10 在真菌 Sordaria 的性周期中的作用,涉及定位和 null、RING 结合和假定的细胞周期蛋白结合(RXL)结构域突变的影响。Hei10 形成三种连续类型的焦点。早期焦点沿着联会复合体(SC)中央区域形成。在这些位置中的一些位置,根据其 RING 和 RXL 结构域,Hei10 介导两种连续类型的重组复合物的形成和周转,每个复合物都以特征性扩增的 Hei10 焦点为标志。与重组结节的超微结构数据的整合进一步表明,重组复合物分化为三种类型,其中一种类型对应于 SC 形成期间或之前的交叉重组事件。最后,Hei10 通过其 RING 和 RXL 结构域分别正向和负向调节 SUMO 沿着 SC 的定位。提出的发现表明,Hei10 通过 SUMO 化/泛素化整合来自 SC、相关重组复合物和细胞周期的信号,从而介导重组复合物的发育和程序化的周转/进化。类似的与细胞周期相关的组装/拆卸转换可能是 Hei10 定位于中心体/纺锤体极体动力学及其相关核运输的基础,并发挥作用。我们认为 Hei10 是一种独特类型的基于结构的信号转导蛋白。