Celsi G, Nishi A, Akusjärvi G, Aperia A
Department of Pediatrics, St. Göran's Children's Hospital, Sweden.
Am J Physiol. 1991 Feb;260(2 Pt 2):F192-7. doi: 10.1152/ajprenal.1991.260.2.F192.
The administration of glucocorticoid hormone (GC) accelerates the postnatal maturation of renal Na(+)-K(+)-ATPase activity. This study examines the role of GC for the regulation of the Na(+)-K(+)-ATPase mRNA abundance in renal cortex during development. In 12- to 14-day-old rats an upsurge in serum GC concentration was accompanied by an increase in Na(+)-K(+)-ATPase activity and by an apparent increase in mRNA abundance. In 10-day-old rats injected with a single intraperitoneal dose of betamethasone (T) or diluent (C) the abundances of alpha 1- and beta-mRNAs were 1.8- to 2-fold higher in T than in C rats after 20 min. The mRNA abundance of both subunits was threefold higher after 1 h (P less than 0.01), and it was six- to sevenfold higher after 6 h (P less than 0.01). In any given sample there was a coordinate change in alpha 1- and beta-mRNAs relative to C rats. GC did not appear to induce the expression of any alternative catalytic subunit. The alpha 2-mRNA was not detectable in any experimental protocol. Furthermore, the ouabain inhibition of the Na(+)-K(+)-ATPase, partially purified from the renal cortex, was the same before and after GC. In adult rats injected with betamethasone neither the alpha 1- nor the beta-mRNA abundance was different at any time after injection from those in adult C rats. The rapid onset of the GC effect on mRNA abundance in infant rats suggests that the hormone directly activates the gene for Na(+)-K(+)-ATPase alpha 1-subunit, as well as beta-subunit in the developing kidney, and that GC thereby plays an important role for the postnatal maturation of the kidney.
糖皮质激素(GC)的给药加速了出生后肾钠钾ATP酶活性的成熟。本研究探讨了GC在发育过程中对肾皮质钠钾ATP酶mRNA丰度调节的作用。在12至14日龄大鼠中,血清GC浓度的升高伴随着钠钾ATP酶活性的增加以及mRNA丰度的明显增加。在10日龄大鼠腹腔注射单次剂量倍他米松(T)或稀释剂(C)后,20分钟时T组大鼠α1和β mRNA的丰度比C组高1.8至2倍。1小时后两个亚基的mRNA丰度增加了3倍(P<0.01),6小时后增加了6至7倍(P<0.01)。在任何给定样本中,相对于C组大鼠,α1和β mRNA存在协同变化。GC似乎未诱导任何替代催化亚基的表达。在任何实验方案中均未检测到α2 mRNA。此外,从肾皮质部分纯化的钠钾ATP酶受哇巴因抑制的情况在GC处理前后相同。在成年大鼠注射倍他米松后,α1和β mRNA的丰度在注射后任何时间与成年C组大鼠均无差异。GC对幼鼠mRNA丰度的快速作用表明,该激素直接激活发育中肾脏中钠钾ATP酶α1亚基以及β亚基的基因,因此GC在肾脏出生后成熟过程中起重要作用。