Galtier A, Liakos P, Keramidas M, Feige J J, Chambaz E M, Defaye G
CEA, INSERM U. 244, Grenoble.
Endocr Res. 1996 Nov;22(4):607-12. doi: 10.1080/07435809609043754.
Bovine zona glomerulosa cells, on the first day of culture, produce aldosterone as their major steroid with no detectable cortisol secretion. Continuous incubation with ACTH had no effect on aldosterone production nor on aldosterone synthase activity. This treatment resulted in a dose and time dependent rise in 17 alpha-hydroxylase activity, in parallel with an increase in cytochrome P-450(17 alpha) (CYP17) protein and mRNA. We have previously shown that TGF beta 1 is a potent inhibitor of differentiated functions of bovine fasciculata-reticularis cells and that CYP17 and AII receptors are the major targets explaining this effect. The present study examined whether 17 alpha-hydroxylase activity in glomerulosa cells could be regulated by angiotensin II (AII) and transforming growth factor-beta 1 (TGF beta 1). AII inhibits the induction of CYP17 by ACTH in a dose dependent manner. TGF beta 1 also blocks almost completely the stimulatory effect of ACTH. In order to suppress the endogenous action of TGF beta 1, incubations were performed with an anti-TGF beta antibody. This specific antibody induces the expression of CYP17 resulting in increased activity and mRNA levels. These results show that AII is able to modulate the expression of CYP17 in adrenal glomerulosa cells following ACTH stimulation. Furthermore, TGF beta 1 exerts an autocrine effect on the differentiation of glomerulosa cells through a regulatory loop repressing CYP17 activity.
牛肾小球旁细胞在培养的第一天,以醛固酮作为其主要甾体产物,未检测到皮质醇分泌。与促肾上腺皮质激素(ACTH)持续孵育对醛固酮生成及醛固酮合酶活性均无影响。这种处理导致17α-羟化酶活性呈剂量和时间依赖性升高,同时细胞色素P-450(17α)(CYP17)蛋白和信使核糖核酸(mRNA)增加。我们之前已表明,转化生长因子β1(TGFβ1)是牛束状带-网状带细胞分化功能的有效抑制剂,且CYP17和血管紧张素II(AII)受体是解释这种效应的主要靶点。本研究检测了肾小球旁细胞中的17α-羟化酶活性是否可受AII和转化生长因子β1(TGFβ1)调控。AII以剂量依赖性方式抑制ACTH对CYP17的诱导作用。TGFβ1也几乎完全阻断ACTH的刺激作用。为抑制TGFβ1的内源性作用,用抗TGFβ抗体进行孵育。这种特异性抗体诱导CYP17表达,导致活性和mRNA水平升高。这些结果表明,AII能够在ACTH刺激后调节肾上腺肾小球旁细胞中CYP17的表达。此外,TGFβ1通过抑制CYP17活性的调节环路,对肾小球旁细胞的分化发挥自分泌作用。