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基础活性蛋白激酶C和钙调神经磷酸酶对大鼠泌乳细胞中钙离子通道电流和胞吐作用的调控

Control of Ca2+ channel current and exocytosis in rat lactotrophs by basally active protein kinase C and calcineurin.

作者信息

Fomina A F, Levitan E S

机构信息

Department of Pharmacology, University of Pittsburgh, PA 15261, U.S.A.

出版信息

Neuroscience. 1997 May;78(2):523-31. doi: 10.1016/s0306-4522(96)00571-4.

Abstract

Modulation of voltage-activated Ca2+ channel activity by phosphorylation was studied in metabolically intact voltage-clamped rat lactotrophs. Experiments using Ba2+ as a charge carrier indicated that a phorbol ester protein kinase C activator stimulates high-voltage-activated Ca2+ channel currents, but has no effect on low-voltage-activated currents. Extracellular application of structurally and mechanistically distinct protein kinase C inhibitors (staurosporin, H7, calphostin C, chelerythrine and Ro 31-8220) preferentially inhibited the high-voltage-activated Ba2+ current. This suggests that protein kinase C is required for maintainance of Ca2+ channel activity even in the absence of modulators. Cyclosporin A, an inhibitor of the Ca2+/calmodulin-dependent protein phosphatase calcineurin, increased the high-voltage-activated Ca2+ channel current, and staurosporin reversed this effect. Thus, dephosphosphorylation by calcineurin may limit basal Ca2+ channel activity. Time-domain monitoring of cellular capacitance changes demonstrated that cyclosporin A and 12-O-tetradecanoyl-phorbol-13-acetate do not affect exocytosis at a hyperpolarized potential, but each enhances depolarization-induced exocytosis. Facilitation of exocytosis by cyclosporin A differed from 12-O-tetradecanoyl-phorbol-13-acetate in that it was biphasic. The delayed facilitation induced by cyclosporin A could be accounted for by stimulation of the voltage-gated Ca2+ current. These results suggest that the high-voltage activated Ca2+ channel current in rat lactotrophs is determined by the opposing basal activities of protein kinase C and calcineurin. Furthermore, it is concluded that the regulation of Ca2+ channels by protein kinase C and calcineurin affects depolarization-induced exocytosis.

摘要

在代谢功能完整的电压钳制大鼠促乳素细胞中,研究了磷酸化对电压激活的Ca2+通道活性的调节作用。使用Ba2+作为电荷载体的实验表明,佛波酯蛋白激酶C激活剂可刺激高电压激活的Ca2+通道电流,但对低电压激活电流无影响。在细胞外应用结构和作用机制不同的蛋白激酶C抑制剂(星形孢菌素、H7、钙磷蛋白C、白屈菜红碱和Ro 31-8220)可优先抑制高电压激活的Ba2+电流。这表明即使在没有调节剂的情况下,蛋白激酶C也是维持Ca2+通道活性所必需的。环孢素A是Ca2+/钙调蛋白依赖性蛋白磷酸酶钙调神经磷酸酶的抑制剂,可增加高电压激活的Ca2+通道电流,而星形孢菌素可逆转这种作用。因此,钙调神经磷酸酶的去磷酸化作用可能会限制基础Ca2+通道活性。对细胞电容变化的时域监测表明,环孢素A和12-O-十四烷酰佛波醇-13-乙酸酯在超极化电位下不影响胞吐作用,但均可增强去极化诱导的胞吐作用。环孢素A对胞吐作用的促进作用与12-O-十四烷酰佛波醇-13-乙酸酯不同,它是双相的。环孢素A诱导的延迟促进作用可由电压门控Ca2+电流的刺激来解释。这些结果表明,大鼠促乳素细胞中高电压激活的Ca2+通道电流由蛋白激酶C和钙调神经磷酸酶的相反基础活性决定。此外,可以得出结论,蛋白激酶C和钙调神经磷酸酶对Ca2+通道的调节作用会影响去极化诱导的胞吐作用。

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