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三磷酸腺苷(ATP)通过磷脂酶Cβ/肌醇三磷酸(IP3)途径,使来自脊髓背侧的星形胶质细胞释放细胞内钙离子(Ca2+)。

ATP causes release of intracellular Ca2+ via the phospholipase C beta/IP3 pathway in astrocytes from the dorsal spinal cord.

作者信息

Salter M W, Hicks J L

机构信息

Hospital for Sick Children, Department of Physiology, University of Toronto, Ontario, Canada.

出版信息

J Neurosci. 1995 Apr;15(4):2961-71. doi: 10.1523/JNEUROSCI.15-04-02961.1995.

Abstract

Calcium signaling within astrocytes in the CNS may play a role comparable to that of electrical signaling within neurons. ATP is a molecule known to produce Ca2+ responses in astrocytes, and has been implicated as a mediator of intercellular Ca2+ signaling in other types of nonexcitable cells. We characterized the signal transduction pathway for ATP-evoked Ca2+ responses in cultured astrocytes from the dorsal spinal cord. Nearly 100% of these astrocytes respond to extracellularly applied ATP, which causes release of Ca2+ from an intracellular pool that is sensitive to thapsigargin and insensitive to caffeine. We found that intracellular administration of IP3 also caused release of Ca2+ from a thapsigargin-sensitive intracellular pool, and that IP3 abolished the response to ATP. The ATP-evoked Ca2+ response was blocked by the IP3 receptor antagonist heparin, applied intracellularly, but not by N-desulfated heparin, which is not an antagonist at these receptors. The Ca2+ response caused by ATP was also blocked by a phospholipase C inhibitor, U-73122, but not by its inactive analog, U-73343. Increases in [Ca2+]i were elicited by intracellular application of activators of heterotrimeric G-proteins, GTP gamma S and AIF4-. On the other hand, [Ca2+], was unaffected by a G-protein inhibitor, GDP beta S, but it did abolish the Ca2+ response to ATP. Pretreating the cultures with pertussis toxin did not affect responses to ATP. Our results indicate that in astrocytes ATP-evoked release of intracellular Ca2+ is mediated by IP3 produced as a result of activating phospholipase C coupled to ATP receptors via a G-protein that is insensitive to pertussis toxin. ATP is known to be released under physiological and pathological circumstances, and therefore signaling via the PLC-IP3 pathway in astrocytes is a potentially important mechanism by which ATP may play a role in CNS function.

摘要

中枢神经系统中星形胶质细胞内的钙信号传导可能发挥着与神经元内电信号传导相当的作用。ATP是一种已知能在星形胶质细胞中产生Ca2+反应的分子,并且在其他类型的非兴奋性细胞中被认为是细胞间Ca2+信号传导的介质。我们对来自脊髓背侧的培养星形胶质细胞中ATP诱发的Ca2+反应的信号转导途径进行了表征。几乎100%的这些星形胶质细胞对细胞外施加的ATP有反应,ATP会导致Ca2+从对毒胡萝卜素敏感且对咖啡因不敏感的细胞内储存库中释放。我们发现细胞内给予IP3也会导致Ca2+从对毒胡萝卜素敏感的细胞内储存库中释放,并且IP3消除了对ATP的反应。细胞内施加IP3受体拮抗剂肝素可阻断ATP诱发的Ca2+反应,但N - 去硫酸化肝素(在这些受体上不是拮抗剂)则不能。ATP引起的Ca2+反应也被磷脂酶C抑制剂U - 73122阻断,但未被其无活性类似物U - 73343阻断。细胞内施加异三聚体G蛋白激活剂GTPγS和AIF4 - 可引起[Ca2+]i升高。另一方面,[Ca2+]不受G蛋白抑制剂GDPβS的影响,但它确实消除了对ATP的Ca2+反应。用百日咳毒素预处理培养物不影响对ATP的反应。我们的结果表明,在星形胶质细胞中,ATP诱发的细胞内Ca2+释放是由通过对百日咳毒素不敏感的G蛋白与ATP受体偶联激活磷脂酶C产生的IP3介导的。已知ATP在生理和病理情况下都会释放,因此通过星形胶质细胞中PLC - IP3途径的信号传导是ATP可能在中枢神经系统功能中发挥作用的潜在重要机制。

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