Luciano Alberto M, Modina Silvia, Vassena Rita, Milanesi Elisabetta, Lauria Antonio, Gandolfi Fulvio
Institute of Anatomy of Domestic Animals, Histology and Embryology, Faculty of Veterinary Medicine, University of Milan, Milan, 20133, Italy.
Biol Reprod. 2004 Feb;70(2):465-72. doi: 10.1095/biolreprod.103.020644. Epub 2003 Oct 20.
The present study was designed to address the physiological role played by cAMP on gap junction (GJ) mediated communications between oocyte and cumulus cells during in vitro maturation. Cyclic AMP was stimulated by different collection and maturation media known to induce different rates of nuclear maturation and developmental competence as well as different levels of cumulus expansion. Cumulus-oocyte complexes (COCs) were matured for 0, 3, 7, 12, 18, and 24 h in the absence of stimulation or in the presence of serum and gonadotropins (fetal bovine serum+human menopausal gonadotropins [FCS+hMG]) or 0.01 microg/ml of invasive adenylate cyclase (iAC). For each time point, intracellular cAMP concentration ([cAMP]i) was determined either in the whole COC or oocyte after cumulus cell removal. GJ functional status was analyzed by microinjection of Lucifer yellow fluorescent dye in cumulus-enclosed oocytes and by immunohistochemical localization of connexin 43 (Cx43). In the absence of stimulation, [cAMP]i in COC and oocyte was lower than in other groups, and communications declined after 3 h of culture. In the FCS+hMG group, [cAMP]i increased significantly in COC, with a peak between 3 and 7 h that was temporally correlated with the beginning of the cumulus expansion process, which occurred only in this group and with the termination of the communications. COC matured in the presence of iAC showed a moderate increase of [cAMP]i during all of the maturation times as well as a prolongation of oocyte-cumulus cell communications. The immunohistochemical localization of Cx43 confirmed the delay in connexons protein turnover in iAC-treated COCs. Our results show that cumulus expansion and oocyte developmental competence are induced by different levels of cAMP and that its intracellular concentration may affect cell coupling between oocyte and cumulus cells. We hypothesize that the higher developmental competence of COCs matured in the presence of iAC could be achieved through a moderate increase of intracellular cAMP, which in turn determines a prolongation of communications between the two cell types.
本研究旨在探讨环磷酸腺苷(cAMP)在体外成熟过程中对卵母细胞与卵丘细胞间缝隙连接(GJ)介导的通讯所起的生理作用。不同的采集和成熟培养基可刺激产生cAMP,这些培养基已知会诱导不同的核成熟率和发育能力,以及不同程度的卵丘扩展。卵丘-卵母细胞复合体(COCs)在无刺激、存在血清和促性腺激素(胎牛血清+人绝经期促性腺激素 [FCS+hMG])或0.01μg/ml侵袭性腺苷酸环化酶(iAC)的条件下分别培养0、3、7、12、18和24小时。对于每个时间点,在去除卵丘细胞后,测定整个COC或卵母细胞中的细胞内cAMP浓度([cAMP]i)。通过向卵丘包裹的卵母细胞中显微注射荧光素黄染料以及对连接蛋白43(Cx43)进行免疫组织化学定位来分析GJ的功能状态。在无刺激的情况下,COC和卵母细胞中的[cAMP]i低于其他组,且培养3小时后通讯减少。在FCS+hMG组中,COC中的[cAMP]i显著增加,在3至7小时达到峰值,这在时间上与仅在该组中发生的卵丘扩展过程的开始以及通讯的终止相关。在iAC存在下成熟的COC在整个成熟过程中[cAMP]i适度增加,同时卵母细胞-卵丘细胞通讯延长。Cx43的免疫组织化学定位证实了iAC处理的COC中连接子蛋白周转延迟。我们的结果表明,不同水平的cAMP可诱导卵丘扩展和卵母细胞发育能力,其细胞内浓度可能影响卵母细胞与卵丘细胞之间的细胞偶联。我们推测,在iAC存在下成熟的COC具有较高的发育能力,可能是通过细胞内cAMP适度增加实现的,这反过来又决定了两种细胞类型之间通讯的延长。