Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.
Genetics. 2011 Oct;189(2):411-21. doi: 10.1534/genetics.111.132431. Epub 2011 Aug 11.
Four different SYP proteins (SYP-1, SYP-2, SYP-3, and SYP-4) have been proposed to form the central region of the synaptonemal complex (SC) thereby bridging the axes of paired meiotic chromosomes in Caenorhabditis elegans. Their interdependent localization suggests that they may interact within the SC. Our studies reveal for the first time how these SYP proteins are organized in the central region of the SC. Yeast two-hybrid and co-immunoprecipitation studies show that SYP-1 is the only SYP protein that is capable of homotypic interactions, and is able to interact with both SYP-2 and SYP-3 directly, whereas SYP-2 and SYP-3 do not seem to interact with each other. Specifically, the coiled-coil domain of SYP-1 is required both for its homotypic interactions and its interaction with the C-terminal domain of SYP-2. Meanwhile, SYP-3 interacts with the C-terminal end of SYP-1 via its N-terminal domain. Immunoelectron microscopy analysis provides insight into the orientation of these proteins within the SC. While the C-terminal domain of SYP-3 localizes in close proximity to the chromosome axes, the N-terminal domains of both SYP-1 and SYP-4, as well as the C-terminal domain of SYP-2, are located in the middle of the SC. Taking into account the different sizes of these proteins, their interaction abilities, and their orientation within the SC, we propose a model of how the SYP proteins link the homologous axes to provide the conserved structure and width of the SC in C. elegans.
四种不同的 SYP 蛋白(SYP-1、SYP-2、SYP-3 和 SYP-4)被认为形成了联会复合体(SC)的中心区域,从而在秀丽隐杆线虫中将配对减数分裂染色体的轴连接起来。它们相互依赖的定位表明它们可能在 SC 内相互作用。我们的研究首次揭示了这些 SYP 蛋白如何在 SC 的中心区域组织。酵母双杂交和共免疫沉淀研究表明,SYP-1 是唯一能够进行同型相互作用的 SYP 蛋白,并且能够直接与 SYP-2 和 SYP-3 相互作用,而 SYP-2 和 SYP-3 似乎彼此不相互作用。具体而言,SYP-1 的卷曲螺旋结构域既需要其同型相互作用,也需要与 SYP-2 的 C 端结构域相互作用。同时,SYP-3 通过其 N 端结构域与 SYP-1 的 C 端末端相互作用。免疫电子显微镜分析提供了这些蛋白质在 SC 中的取向的深入了解。虽然 SYP-3 的 C 端结构域与染色体轴紧密接近,但 SYP-1 和 SYP-4 的 N 端结构域以及 SYP-2 的 C 端结构域位于 SC 的中间。考虑到这些蛋白质的不同大小、相互作用能力及其在 SC 中的取向,我们提出了一个模型,说明 SYP 蛋白如何连接同源轴,以提供 C. elegans 中 SC 的保守结构和宽度。