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磷脂酶C的活性在多大程度上依赖于细胞内钙浓度?一项在完整细胞中的研究。

How far does phospholipase C activity depend on the cell calcium concentration? A study in intact cells.

作者信息

Renard D, Poggioli J, Berthon B, Claret M

出版信息

Biochem J. 1987 Apr 15;243(2):391-8. doi: 10.1042/bj2430391.

Abstract

The dependence of phospholipase C activity on the cytosolic Ca2+ concentration ([Ca2+]i) was studied in intact liver cells treated with the Ca2+-mobilizing hormone vasopressin, or not so treated. Phospholipase C (PLC) activity was estimated from the formation of [3H]inositol trisphosphate (InsP3) and the degradation of [3H]phosphatidylinositol 4,5-bisphosphate (PtdInsP2). The [Ca2+]i of the cells was clamped from 29 to 1130 nM by quin2 loading. This wide concentration range was obtained by loading the hepatocytes with a high concentration of the Ca2+ indicator in low-Ca2+ medium or by using the Ca2+ ionophore ionomycin in medium containing Ca2+. In resting cells, in which [Ca2+]i was 193 nM, treatment with 0.1 microM-vasopressin which stimulates liver PLC maximally, tripled InsP3 content and raised [Ca2+]i to 2 microM within 15 s. Lowering [Ca2+]i partially decreased cell InsP3 content as well as the ability of vasopressin to stimulate InsP3 formation maximally. At 29 nM, the lowest Ca2+ concentration obtained in isolated liver cells, basal InsP3 content was 64% of that measured in control cells. Addition of vasopressin no longer affected [Ca2+]i, but significantly increased InsP3 by 200%, although less than in the controls (300%). The maintenance of the greater part of the PLC response at constant [Ca2+]i indicated that, in the liver, InsP3 formation does not result from an increase in [Ca2+]i. The effects of lowering [Ca2+]i were reversible. When low cell [Ca2+]i was restored to a normal value, resting InsP3 content and the ability of vasopressin to stimulate InsP3 formation maximally by 300% were also restored. Raising [Ca2+]i from 193 to 1130 nM had little effect on the InsP3 content or the vasopressin-mediated increase in InsP3. In agreement with the stimulation of PLC activity by vasopressin, cell [3H]PtdInsP2 and total PtdInsP2 were degraded by application of this hormone for 15 s. In contrast, when [Ca2+]i was lowered to 29 nM, basal [3H]PtdInsP2 and total PtdInsP2 were increased by about 30%, [3H]PtdInsP2 was further increased by vasopressin, but total PtdInsP2 was not changed. These results show that, in intact hepatocytes, PLC is little affected by [Ca2+]i concentrations above 193 nM, but is partially dependent on Ca2+ below that value. They suggest that, in addition to activating PLC activity, vasopressin might stimulate PtdInsP2 synthesis, presumably via phosphatidylinositol-phosphate kinase, and that this pathway might predominate in cells with low [Ca2+]i.

摘要

在经钙离子动员激素血管加压素处理或未处理的完整肝细胞中,研究了磷脂酶C活性对胞质钙离子浓度([Ca2+]i)的依赖性。磷脂酶C(PLC)活性通过[3H]肌醇三磷酸(InsP3)的生成以及[3H]磷脂酰肌醇4,5-二磷酸(PtdInsP2)的降解来估算。通过喹啉2负载将细胞的[Ca2+]i钳制在29至1130 nM之间。这个较宽的浓度范围是通过在低钙培养基中用高浓度的钙离子指示剂负载肝细胞,或在含钙离子的培养基中使用钙离子载体离子霉素来实现的。在静息细胞中,[Ca2+]i为193 nM,用0.1 microM的血管加压素处理(该浓度能最大程度刺激肝脏PLC),InsP3含量增加了两倍,并在15秒内将[Ca2+]i升高至2 microM。降低[Ca2+]i会部分降低细胞InsP3含量以及血管加压素最大程度刺激InsP3生成的能力。在29 nM(分离肝细胞中获得的最低钙离子浓度)时,基础InsP3含量为对照细胞中测得值的64%。添加血管加压素不再影响[Ca2+]i,但显著使InsP3增加了200%,尽管增幅小于对照组(300%)。在[Ca2+]i恒定的情况下,大部分PLC反应得以维持,这表明在肝脏中,InsP3的生成并非由[Ca2+]i的增加所致。降低[Ca2+]i的影响是可逆的。当低细胞[Ca2+]i恢复到正常值时,静息InsP3含量以及血管加压素最大程度刺激InsP3生成300%的能力也得以恢复。将[Ca2+]i从193 nM提高到1130 nM对InsP3含量或血管加压素介导的InsP3增加影响不大。与血管加压素对PLC活性的刺激一致,施加该激素15秒可使细胞[3H]PtdInsP2和总PtdInsP2降解。相反,当[Ca2+]i降至29 nM时,基础[3H]PtdInsP2和总PtdInsP2增加了约30%,血管加压素使[3H]PtdInsP2进一步增加,但总PtdInsP2未改变。这些结果表明,在完整肝细胞中,PLC受高于193 nM的[Ca2+]i浓度影响较小,但在该值以下部分依赖钙离子。它们提示,除了激活PLC活性外,血管加压素可能通过磷脂酰肌醇磷酸激酶刺激PtdInsP2合成,并且该途径可能在[Ca2+]i较低的细胞中占主导地位。

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