Rekawiecki Robert, Kowalik Magdalena Karolina, Kotwica Jan
Institute of Animal Reproduction and Food Research of the Polish Academy of Sciences, Tuwima 10, 10-748 Olsztyn, Poland.
Reprod Fertil Dev. 2015 Sep;27(7):1029-37. doi: 10.1071/RD13308.
Progesterone (P4) affects a cell through its nuclear receptor (PGR), which has two main isoforms: A (PGRA) and B (PGRB). A partial section of previously unknown PGRB cDNA from cattle was cloned. Next, mRNA and protein levels for these two isoforms in corpora lutea (CL) collected during different stages of the oestrous cycle and pregnancy were determined. The PGRB mRNA level was highest on Days 2-5 of the oestrous cycle, decreased over the next few days (P<0.01) and increased again slightly on Days 17-20 (P<0.05). During pregnancy, PGRB mRNA was at its lowest level during Weeks 3-5 (P<0.01) and highest during Weeks 6-12 (P<0.01). The profile of PGRA mRNA levels was similar to that of PGRB throughout the oestrous cycle. The PGRA protein level was highest on Days 2-10 of the oestrous cycle, decreased continuously to its lowest concentration on Days 17-20 (P<0.01) and during Weeks 3-5 of pregnancy (P>0.05) and increased during Weeks 6-12 (P<0.05). PGRB protein concentration followed a similar pattern but at a markedly lower level. Both PGRA and PGRB isoforms are involved in the regulation of P4 action, especially in the newly formed CL and developed CL in the first trimester of pregnancy. These data suggest that the variable expression of these isoforms during the oestrous cycle may depend on the influence of P4.
孕酮(P4)通过其核受体(PGR)作用于细胞,该受体有两种主要异构体:A(PGRA)和B(PGRB)。克隆了一段来自牛的此前未知的PGRB cDNA的部分序列。接下来,测定了在发情周期和妊娠不同阶段采集的黄体(CL)中这两种异构体的mRNA和蛋白质水平。PGRB mRNA水平在发情周期的第2 - 5天最高,在接下来的几天下降(P<0.01),并在第17 - 20天再次略有上升(P<0.05)。在妊娠期间,PGRB mRNA在第3 - 5周处于最低水平(P<0.01),在第6 - 12周最高(P<0.01)。在整个发情周期中,PGRA mRNA水平的变化趋势与PGRB相似。PGRA蛋白水平在发情周期的第2 - 10天最高,在第17 - 20天持续下降至最低浓度(P<0.01),在妊娠第3 - 5周时也下降(P>0.05),并在第6 - 12周上升(P<0.05)。PGRB蛋白浓度遵循类似模式,但水平明显较低。PGRA和PGRB两种异构体均参与P4作用的调节,尤其是在妊娠早期新形成的黄体和发育中的黄体中。这些数据表明,这些异构体在发情周期中的可变表达可能取决于P4的影响。