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

机译:磷脂酶C的活性在多大程度上取决于细胞钙的浓度?完整细胞研究

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pThe 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./p
机译:>在完整的肝细胞中研究了磷脂酶C活性对胞浆中Ca2 +浓度([Ca2 +] i)的依赖性,或未进行过如此处理。通过[3H]肌醇三磷酸酯(InsP3)的形成和[3H]磷脂酰肌醇4,5-二磷酸酯(PtdInsP2)的降解来估计磷脂酶C(PLC)的活性。通过quin2加载将细胞的[Ca2 +] i从29钳制到1130 nM。通过在低Ca2 +培养基中向肝细胞加载高浓度的Ca2 +指示剂,或在含Ca2 +的培养基中使用Ca2 +离子载体离子霉素,可以得到较宽的浓度范围。在[Ca2 +] i为193 nM的静止细胞中,用0.1 microM加压素处理可最大程度地刺激肝脏PLC,使InsP3含量增加三倍,并在15 s内使[Ca2 +] i增至2 microM。降低[Ca2 +] i会部分降低细胞中InsP3的含量,以及血管加压素最大程度地刺激InsP3形成的能力。在分离的肝细胞中获得的最低Ca2 +浓度为29 nM时,基础InsP3含量为对照细胞中所测值的64%。加压素的添加不再影响[Ca2 +] i,但使InsP3显着增加200%,尽管低于对照组(300%)。在[Ca2 +] i恒定的情况下,PLC响应的较大部分的维持表明,在肝脏中,InsP3的形成并非由[Ca2 +] i的增加引起。降低[Ca2 +] i的作用是可逆的。当低细胞[Ca2 +] i恢复到正常值时,还恢复了静息InsP3含量和血管加压素最大刺激InsP3形成300%的能力。将[Ca2 +] i从193 nM提高到InsP3含量或加压素介导的InsP3含量增加几乎没有影响。与血管加压素刺激PLC活性相一致,应用这种激素15 s可以降解细胞[3H] PtdInsP2和总PtdInsP2。相反,当[Ca2 +] i降低至29 nM时,基础[3H] PtdInsP2和总PtdInsP2增加约30%,[3H] PtdInsP2通过加压素进一步增加,但总PtdInsP2不变。这些结果表明,在完整的肝细胞中,PLC几乎不受193 nM以上的[Ca2 +] i浓度的影响,但部分依赖于低于该值的Ca2 +。他们认为,加压素除了可能激活PLC的活性外,还可能通过磷脂酰肌醇磷酸激酶来刺激PtdInsP2的合成,并且该途径可能在[Ca2 +] i低的细胞中占主导地位。

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