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Sme4 卷曲螺旋蛋白介导联会复合体的组装、重组体的重新定位以及纺锤体极体形态发生。

Sme4 coiled-coil protein mediates synaptonemal complex assembly, recombinosome relocalization, and spindle pole body morphogenesis.

机构信息

Institut de Génétique et Microbiologie, Unité Mixte de Recherche 8621, Université Paris-Sud, 91405 Orsay, France.

出版信息

Proc Natl Acad Sci U S A. 2011 Jun 28;108(26):10614-9. doi: 10.1073/pnas.1107272108. Epub 2011 Jun 10.

Abstract

We identify a large coiled-coil protein, Sme4/PaMe4, that is highly conserved among the large group of Sordariales and plays central roles in two temporally and functionally distinct aspects of the fungal sexual cycle: first as a component of the meiotic synaptonemal complex (SC) and then, after disappearing and reappearing, as a component of the spindle pole body (SPB). In both cases, the protein mediates spatial juxtaposition of two major structures: linkage of homolog axes through the SC and a change in the SPB from a planar to a bent conformation. Corresponding mutants exhibit defects, respectively, in SC and SPB morphogenesis, with downstream consequences for recombination and astral-microtubule nucleation plus postmeiotic nuclear migration. Sme4 is also required for reorganization of recombination complexes in which Rad51, Mer3, and Msh4 foci relocalize from an on-axis position to a between-axis (on-SC) position concomitant with SC installation. Because involved recombinosome foci represent total recombinational interactions, these dynamics are irrespective of their designation for maturation into cross-overs or noncross-overs. The defined dual roles for Sme4 in two different structures that function at distinct phases of the sexual cycle also provide more functional links and evolutionary dynamics among the nuclear envelope, SPB, and SC.

摘要

我们鉴定出一种大的螺旋卷曲蛋白,Sme4/PaMe4,它在 Sordariales 这个大的群组中高度保守,在真菌有性周期的两个在时间和功能上不同的方面发挥核心作用:首先作为减数分裂联会复合体 (SC) 的组成部分,然后在消失和重新出现后,作为纺锤体极体 (SPB) 的组成部分。在这两种情况下,该蛋白介导两个主要结构的空间并列:通过 SC 连接同源轴,以及 SPB 从平面到弯曲构象的改变。相应的突变体分别在 SC 和 SPB 形态发生中表现出缺陷,这对重组和星体微管核形成以及减数后核迁移有下游影响。Sme4 还需要重新组织重组复合物,其中 Rad51、Mer3 和 Msh4 焦点从轴上位置重新定位到轴间(SC 上)位置,与 SC 安装同时发生。由于涉及的重组体焦点代表总重组相互作用,这些动力学与它们指定成熟为交叉或非交叉无关。Sme4 在两个不同结构中的双重作用,这些结构在有性周期的不同阶段发挥作用,也为核膜、SPB 和 SC 之间提供了更多的功能联系和进化动态。

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