MacQueen Amy J, Phillips Carolyn M, Bhalla Needhi, Weiser Pinky, Villeneuve Anne M, Dernburg Abby F
Department of Developmental Biology, Stanford University School of Medicine, Stanford, CA 94305, USA.
Cell. 2005 Dec 16;123(6):1037-50. doi: 10.1016/j.cell.2005.09.034.
We have investigated the role of pairing centers (PCs), cis-acting sites required for accurate segregation of homologous chromosomes during meiosis in C. elegans. We find that these sites play two distinct roles that contribute to proper segregation. Chromosomes lacking PCs usually fail to synapse and also lack a synapsis-independent stabilization activity. The presence of a PC on just one copy of a chromosome pair promotes synapsis but does not support synapsis-independent pairing stabilization, indicating that these functions are separable. Once initiated, synapsis is highly processive, even between nonhomologous chromosomes of disparate lengths, elucidating how translocations suppress meiotic recombination in C. elegans. These findings suggest a multistep pathway for chromosome synapsis in which PCs impart selectivity and efficiency through a "kinetic proofreading" mechanism. We speculate that concentration of these activities at one region per chromosome may have coevolved with the loss of a point centromere to safeguard karyotype stability.
我们研究了配对中心(PCs)的作用,其是秀丽隐杆线虫减数分裂过程中同源染色体精确分离所需的顺式作用位点。我们发现这些位点发挥着两种不同的作用,有助于正确分离。缺乏PCs的染色体通常无法联会,并且也缺乏不依赖联会的稳定活性。染色体对中只有一份拷贝上存在PC会促进联会,但不支持不依赖联会的配对稳定,这表明这些功能是可分离的。一旦启动,联会具有高度连续性,即使在长度不同的非同源染色体之间也是如此,这阐明了易位如何抑制秀丽隐杆线虫的减数分裂重组。这些发现提示了染色体联会的多步骤途径,其中PCs通过“动力学校对”机制赋予选择性和效率。我们推测,这些活性在每条染色体的一个区域集中,可能与点着丝粒的丧失共同进化,以保障核型稳定性。