Scherthan Harry, Wang Hailin, Adelfalk Caroline, White Eric J, Cowan Carrie, Cande W Zacheus, Kaback David B
Max Planck Institute for Molecular Genetics, D-14195 Berlin, Germany.
Proc Natl Acad Sci U S A. 2007 Oct 23;104(43):16934-9. doi: 10.1073/pnas.0704860104. Epub 2007 Oct 15.
In many organisms, a synaptonemal complex (SC) intimately connects each pair of homologous chromosomes during much of the first meiotic prophase and is thought to play a role in regulating recombination. In the yeast Saccharomyces cerevisiae, the central element of each SC contains Zip1, a protein orthologous to mammalian SYCP1. To study the dynamics of SCs in living meiotic cells, a functional ZIP1::GFP fusion was introduced into yeast and analyzed by fluorescence video microscopy. During pachytene, SCs exhibited dramatic and continuous movement throughout the nucleus, traversing relatively large distances while twisting, folding, and unfolding. Chromosomal movements were accompanied by changes in the shape of the nucleus, and all movements were reversibly inhibited by the actin antagonist Latrunculin B. Normal movement required the NDJ1 gene, which encodes a meiosis-specific telomere protein needed for the attachment of telomeres to the nuclear periphery and for normal kinetics of recombination and meiosis. These results show that SC movements involve telomere attachment to the nuclear periphery and are actin-dependent and suggest these movements could facilitate completion of meiotic recombination.
在许多生物体中,联会复合体(SC)在减数第一次分裂前期的大部分时间里紧密连接每对同源染色体,并被认为在调节重组中发挥作用。在酿酒酵母中,每个SC的中央元件包含Zip1,一种与哺乳动物SYCP1直系同源的蛋白质。为了研究活的减数分裂细胞中联会复合体的动态变化,将功能性ZIP1::GFP融合蛋白导入酵母,并通过荧光视频显微镜进行分析。在粗线期,SC在整个细胞核中表现出剧烈且持续的运动,在扭转、折叠和展开的同时移动相对较大的距离。染色体运动伴随着细胞核形状的变化,并且所有运动都被肌动蛋白拮抗剂Latrunculin B可逆地抑制。正常运动需要NDJ1基因,该基因编码一种减数分裂特异性端粒蛋白,用于端粒附着于核周以及重组和减数分裂的正常动力学。这些结果表明,SC运动涉及端粒附着于核周且依赖于肌动蛋白,并表明这些运动可能有助于减数分裂重组的完成。