Yu P Y, Asico L D, Eisner G M, Jose P A
Department of Pediatrics, Georgetown University School of Medicine, Washington, DC 20007.
J Clin Invest. 1995 Jan;95(1):304-8. doi: 10.1172/JCI117656.
Dopamine and D1 agonists and NE all increase phosphatidyl inositol-specific phospholipase C (PLC) activity, but whereas dopamine produces a natriuresis, NE has an antinatriuretic effect. To determine if catecholamines differentially regulate the expression of PLC isoforms, we infused fenoldopam, a D1 agonist, or pramipexole, a D1/D2 agonist, intravenously or infused fenoldopam or NE into the renal artery of anesthetized rats. After 3-4 h of infusion, when the expected natriuresis (fenoldopam or pramipexole) or antinatriuresis (NE) occurred, the kidneys were removed for analysis of PLC isoform protein expression activity. Western blot analysis revealed that in renal cortical membranes, fenoldopam and pramipexole increased expression of PLC beta 1 and decreased expression of PLC gamma 1; PLC delta was unchanged. In the cytosol, pramipexole and fenoldopam increased expression of both PLC beta 1 and PLC gamma 1. No effects were noted in the medulla. A preferential D1 antagonist, SKF 83742, which by itself had no effect, blocked the effects of pramipexole, thus confirming the involvement of the D1 receptor. In contrast, NE also increased PLC beta 1 but did not affect PLC gamma 1 protein expression in membranes. The changes in PLC isoform expression were accompanied by similar changes in PLC isoform activity. These studies demonstrate for the first time differential regulation of PLC isoforms by catecholamines.
多巴胺、D1激动剂和去甲肾上腺素(NE)均能增加磷脂酰肌醇特异性磷脂酶C(PLC)的活性,但多巴胺可产生利钠作用,而NE则具有抗利钠作用。为了确定儿茶酚胺是否对PLC同工型的表达有不同调节作用,我们对麻醉大鼠静脉注射D1激动剂非诺多泮或D1/D2激动剂普拉克索,或向肾动脉内注射非诺多泮或NE。输注3 - 4小时后,当出现预期的利钠作用(非诺多泮或普拉克索)或抗利钠作用(NE)时,取出肾脏分析PLC同工型蛋白的表达活性。蛋白质印迹分析显示,在肾皮质膜中,非诺多泮和普拉克索增加了PLCβ1的表达,降低了PLCγ1的表达;PLCδ无变化。在胞质溶胶中,普拉克索和非诺多泮增加了PLCβ1和PLCγ1的表达。在髓质中未观察到影响。一种本身无作用的选择性D1拮抗剂SKF 83742阻断了普拉克索的作用,从而证实了D1受体的参与。相反,NE也增加了PLCβ1,但不影响膜中PLCγ1蛋白的表达。PLC同工型表达的变化伴随着PLC同工型活性的类似变化。这些研究首次证明了儿茶酚胺对PLC同工型的不同调节作用。