Laboratory of Veterinary Biochemistry and Molecular Biology, College of Veterinary Medicine, Chungbuk National University, Cheongju, Chungbuk, Republic of Korea.
Mol Reprod Dev. 2012 May;79(5):346-55. doi: 10.1002/mrd.22033. Epub 2012 Mar 29.
Calbindin-D(9k) (CaBP-9k) and -D(28k) (CaBP-28k) are cytosolic proteins with EF-hand motifs that have a high affinity for calcium ions. Many types of calcium channels and intracellular calcium binding proteins, such as sodium/calcium exchangers (NCXs) and transient receptor potential cation channels (TRPVs), have been detected in the placenta. In this study, the expression of calcium channels involved in maternal-fetal calcium transport were investigated in wild-type mice versus CaBP-9k, CaBP-28k, and CaBP-9k/28k double knockout (KO) mouse models. The expression of calcium transport genes in three dissected sections of the placenta (maternal, central, and fetal) was examined on gestational day 19 (GD 19). The expression of CaBP-9k, TRPV6, TRPV5, and NCX1 mRNA was high in fetal compared to maternal placenta, while CaBP-28k was abundant in the maternal placenta. CaBP-9k was enhanced in all sections of placenta in CaBP-28k KO mice, whereas CaBP-28k was reduced in CaBP-9k KO mice. The expression of TRPV6, TRPV5, and NCX1 were induced in both maternal and fetal placentas in CaBP-9k KO mice, but were upregulated in maternal and central placentas of CaBP-28k KO mice. The levels of these proteins showed similar patterns with those of their mRNA. Placental CaBP-9k, TRPV6, TRPV5, and NCX1 proteins were abundantly expressed in the intraplacental yolk sac located in the fetal placenta. CaBP-28k did not colocalize with other calcium transport genes, although it was enriched in the placental trophoblasts of the decidual zone in the maternal placenta. These results indicate that placental TRPV6, TRPV5, and NCX1 compensate for CaBPs in CaBP-9k and/or CaBP-28k KO mice, and may take over the roles of CaBP-9k and CaBP-28k to transfer calcium ions in the placenta. Taken together, these results indicate that TRPV6, NCX1, and CaBP-9k in the fetal placenta and CaBP-28k in the maternal placenta may play key roles in controlling calcium transport across the placenta during pregnancy.
钙结合蛋白-D(9k)(CaBP-9k)和-D(28k)(CaBP-28k)是具有高亲和力的钙结合蛋白,具有 EF 手基序。许多类型的钙通道和细胞内钙结合蛋白,如钠/钙交换器(NCXs)和瞬时受体电位阳离子通道(TRPVs),已在胎盘。在这项研究中,在野生型小鼠与 CaBP-9k、CaBP-28k 和 CaBP-9k/28k 双敲除(KO)小鼠模型中,研究了参与母体-胎儿钙转运的钙通道的表达。在妊娠第 19 天(GD 19)检查了胎盘三个解剖部位(母体、中央和胎儿)的钙转运基因的表达。与母体胎盘相比,CaBP-9k、TRPV6、TRPV5 和 NCX1mRNA 在胎儿胎盘中的表达较高,而 CaBP-28k 在母体胎盘中丰富。CaBP-28k KO 小鼠的胎盘所有部位的 CaBP-9k 均增强,而 CaBP-9k KO 小鼠的 CaBP-28k 减少。CaBP-9k KO 小鼠的母体和胎儿胎盘中 TRPV6、TRPV5 和 NCX1 的表达均被诱导,但 CaBP-28k KO 小鼠的母体和中央胎盘中的表达上调。这些蛋白的水平与它们的 mRNA 具有相似的模式。胎盘 CaBP-9k、TRPV6、TRPV5 和 NCX1 蛋白在位于胎儿胎盘的胎盘内卵黄囊中大量表达。CaBP-28k 与其他钙转运基因没有共定位,尽管它在母体胎盘的蜕膜区胎盘滋养层中丰富。这些结果表明,在 CaBP-9k 和/或 CaBP-28k KO 小鼠中,胎盘 TRPV6、TRPV5 和 NCX1 补偿了 CaBPs,并可能接管 CaBP-9k 和 CaBP-28k 的作用,以在胎盘内转运钙离子。总之,这些结果表明,胎儿胎盘中的 TRPV6、NCX1 和 CaBP-9k 以及母体胎盘中的 CaBP-28k 可能在妊娠期间控制胎盘内钙转运中发挥关键作用。