Calvente Adela, Viera Alberto, Page Jesús, Parra M Teresa, Gómez Rocío, Suja José A, Rufas Julio S, Santos Juan L
Departamento de Biología, Facultad de Ciencias, Universidad Autónoma de Madrid, Cantoblanco, 28049 Madrid, Spain.
J Cell Sci. 2005 Jul 1;118(Pt 13):2957-63. doi: 10.1242/jcs.02391.
The relationship between meiotic recombination events and different patterns of pairing and synapsis has been analysed in prophase I spermatocytes of the grasshopper Stethophyma grossum, which exhibit very unusual meiotic characteristics, namely (1) the three shortest bivalents achieve full synapsis and do not show chiasma localisation; (2) the remaining eight bivalents show restricted synapsis and proximal chiasma localisation, and (3) the X chromosome remains unsynapsed. We have studied by means of immunofluorescence the localisation of the phosphorylated histone H2AX (gamma-H2AX), which marks the sites of double-strand breaks; the SMC3 cohesin subunit, which is thought to have a close relationship to the development of the axial element (a synaptonemal complex component); and the recombinase RAD51. We observed a marked nuclear polarization of both the maturation of SMC3 cohesin axis and the ulterior appearance of gamma-H2AX and RAD51 foci, these being exclusively restricted to those chromosomal regions that first form cohesin axis stretches. This polarised distribution of recombination events is maintained throughout prophase I over those autosomal regions that are undergoing, or about to undergo, synapsis. We propose that the restricted distribution of recombination events along the chromosomal axes in the spermatocytes is responsible for the incomplete presynaptic homologous alignment and, hence, for the partial synaptonemal complex formation displayed by most bivalents.
在具有非常特殊减数分裂特征的大垫尖翅蝗精母细胞减数分裂前期I中,分析了减数分裂重组事件与不同配对和联会模式之间的关系,这些特征包括:(1)三条最短的二价体实现完全联会,且不显示交叉定位;(2)其余八条二价体显示有限联会和近端交叉定位;(3)X染色体保持未联会状态。我们通过免疫荧光研究了磷酸化组蛋白H2AX(γ-H2AX)的定位,它标记双链断裂位点;SMC3黏连蛋白亚基,其被认为与轴元件(一种联会复合体成分)的发育密切相关;以及重组酶RAD51。我们观察到SMC3黏连蛋白轴成熟以及随后γ-H2AX和RAD51焦点的出现均有明显的核极化现象,这些现象仅局限于那些首先形成黏连蛋白轴延伸的染色体区域。在整个减数分裂前期I中,重组事件的这种极化分布在正在进行或即将进行联会的常染色体区域持续存在。我们提出,精母细胞中沿染色体轴的重组事件的有限分布是导致突触前同源不完全对齐的原因,因此也是大多数二价体显示部分联会复合体形成的原因。