MRC Human Reproductive Sciences Unit Division of Reproductive and Developmental Sciences, The Queen's Medical Research Institute, Centre for Reproductive Biology, The University of Edinburgh, 47 Little France Crescent, Edinburgh EH16 4TJ, Scotland, UK.
Reproduction. 2010 Feb;139(2):395-407. doi: 10.1530/REP-09-0182. Epub 2009 Nov 9.
In humans and domestic mammals, pivotal processes in ovary development, including primordial follicle assembly, occur prenatally. These events are essential for determining fertility in adult life; however, they remain poorly understood at the mechanistic level. In mammals, the SLITs (SLIT1, SLIT2 and SLIT3) and their ROBO (ROBO1, ROBO2, ROBO3/RIG-1 and ROBO4/MAGIC ROBO) receptors regulate neural, leukocyte, vascular smooth muscle cell and endothelial cell migration. In addition, the SLIT/ROBO pathway has functional roles in embryonic development and in the adult ovary by inhibiting cell migration and promoting apoptosis. We therefore characterised follicle formation and investigated the expression and localisation of the ROBO/SLIT pathway in the ovine fetal ovary. Using RT-PCR, we identified SLIT2, SLIT3, ROBO1, ROBO2 and ROBO4 in sheep ovaries harvested across gestation. The real-time quantitative PCR results implied that ROBO2 expression and ROBO4 expression were elevated during the early stages of follicle formation and stayed abundant during primordial follicle maturation (P<0.05). Immunohistochemistry examination demonstrated that ROBO1 was localised to the pre-granulosa cells, while ROBO2, ROBO4 and SLIT2 were expressed in the oocytes of the developing primordial follicle. This indicates that in the fetal ovary, SLIT-ROBO signalling may require an autocrine and paracrine interaction. Furthermore, at the time of increased SLIT-ROBO expression, there was a significant reduction in the number of proliferating oocytes in the developing ovary (P<0.0001). Overall, these results suggest, for the first time, that the SLIT-ROBO pathway is expressed at the time of follicle formation during fetal ovary development.
在人类和家畜中,卵巢发育的关键过程,包括原始卵泡的组装,发生在产前。这些事件对于确定成年后的生育能力至关重要;然而,它们在机制水平上仍然知之甚少。在哺乳动物中,SLITs(SLIT1、SLIT2 和 SLIT3)及其 ROBO(ROBO1、ROBO2、ROBO3/RIG-1 和 ROBO4/MAGIC ROBO)受体调节神经、白细胞、血管平滑肌细胞和内皮细胞的迁移。此外,SLIT/ROBO 途径在胚胎发育和成年卵巢中具有功能作用,通过抑制细胞迁移和促进细胞凋亡。因此,我们研究了卵泡的形成,并研究了 ROBO/SLIT 途径在绵羊胎儿卵巢中的表达和定位。通过 RT-PCR,我们在不同妊娠期收获的绵羊卵巢中鉴定出 SLIT2、SLIT3、ROBO1、ROBO2 和 ROBO4。实时定量 PCR 结果表明,ROBO2 表达和 ROBO4 表达在卵泡形成的早期阶段升高,并在原始卵泡成熟过程中保持丰富(P<0.05)。免疫组织化学检查表明,ROBO1 定位于前颗粒细胞,而 ROBO2、ROBO4 和 SLIT2 则在发育中的原始卵泡的卵母细胞中表达。这表明在胎儿卵巢中,SLIT-ROBO 信号可能需要自分泌和旁分泌相互作用。此外,在 SLIT-ROBO 表达增加的同时,发育中的卵巢中增殖卵母细胞的数量显著减少(P<0.0001)。总的来说,这些结果首次表明,SLIT-ROBO 途径在胎儿卵巢发育过程中的卵泡形成时表达。