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首页> 外文期刊>Molecular and Cellular Endocrinology >Ca2+ but not H2O2 modulates GRE-element activation by the human mineralocorticoid receptor in HEK cells.
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Ca2+ but not H2O2 modulates GRE-element activation by the human mineralocorticoid receptor in HEK cells.

机译:Ca2 +而非H2O2可以通过人矿盐皮质激素受体调节HEK细胞中的GRE元素活化。

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The mineralocorticcoid receptor (MR) plays an important role in salt and water homeostasis as well as during cardiovascular and renal fibrosis but little is known regarding its modulation by other signaling pathways. To investigate a possible modulation under controlled conditions we used human embryonic kidney (HEK) cells (devoid of endogenous MR) transfected with the human MR and measured transactivation with a GRE-SEAP-reporter construct. MR was compared to the glucocorticoid receptor (GR) as well as to MR lacking the N-terminal domains AB (MR(CDEF)). Chelation of cytosolic Ca2+ enhanced MR activity and SGK1-expression, whereas elevation of cytosolic Ca2+ with ionomycin or thapsigargin reduced MR activity. GR activity was not affected by ionomycin or thapsigargin. MR(CDEF) activity was not affected by chelation or elevation of cytosolic Ca2+. Inhibition of ERK1/2 activation by U0126 or activation of PKA by cAMP, previously shown to modulate MR and GR activity, did not affect MR(CDEF) activity either. H2O2<500micromol/l did not affect basal nor hormone-induced reporter activity. Higher concentrations exerted the same relative inhibitory effect on GRE-SEAP-activity under basal conditions as in the presence of aldosterone-stimulated MR and elicited cytotoxic effects. Our data indicate that the genomic function of MR can be modulated by cytosolic Ca2+, PKA and ERK1/2 via an interaction with the AB-domain. H2O2 seems not to affect relative MR activity directly under our experimental conditions.
机译:盐皮质激素受体(MR)在盐和水稳态以及心血管和肾脏纤维化过程中起着重要作用,但对其通过其他信号途径的调节知之甚少。为了研究在受控条件下的可能调节作用,我们使用了用人MR转染的人胚胎肾(HEK)细胞(不含内源性MR),并使用GRE-SEAP-reporter构建体测量了反式激活。将MR与糖皮质激素受体(GR)以及缺少N末端结构域AB(MR(CDEF))的MR进行了比较。胞质Ca2 +的螯合增强了MR活性和SGK1的表达,而离子霉素或毒胡萝卜素使胞质Ca2 +的升高降低了MR活性。 GR活性不受离子霉素或毒胡萝卜素的影响。 MR(CDEF)活性不受螯合或胞质Ca2 +升高的影响。 U0126对ERK1 / 2激活的抑制或cAMP对PKA的激活的抑制,先前已显示出可调节MR和GR的活性,也不会影响MR(CDEF)的活性。 H2O2 <500micromol / l不会影响基础或激素诱导的报道分子活性。较高的浓度在基础条件下对醛固酮合成酶活性的相对抑制作用与存在醛固酮刺激的MR时相同,并引起细胞毒性作用。我们的数据表明,MR的基因组功能可以通过与AB结构域的相互作用而被胞质Ca2 +,PKA和ERK1 / 2调节。在我们的实验条件下,H2O2似乎不会直接影响相对MR活性。

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