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克隆的神经元钙通道的独特药理学和动力学及其在哺乳动物中枢神经系统神经元中可能的对应物。

Distinctive pharmacology and kinetics of cloned neuronal Ca2+ channels and their possible counterparts in mammalian CNS neurons.

作者信息

Zhang J F, Randall A D, Ellinor P T, Horne W A, Sather W A, Tanabe T, Schwarz T L, Tsien R W

机构信息

Department of Molecular and Cellular Physiology, Stanford University Medical Center, CA 94305.

出版信息

Neuropharmacology. 1993 Nov;32(11):1075-88. doi: 10.1016/0028-3908(93)90003-l.

Abstract

This paper provides a brief overview of the diversity of voltage-gated Ca2+ channels and our recent work on neuronal Ca2+ channels with novel pharmacological and biophysical properties that distinguish them from L, N, P or T-type channels. The Ca2+ channel alpha 1 subunit known as alpha 1A or BI [Mori Y., Friedrich T., Kim M.-S., Mikami A., Nakai J., Ruth P., Bosse E., Hofmann F., Flockerzi V., Furuichi T., Mikoshiba K., Imoto K., Tanabe T. and Numa S. (1991) Nature 350, 398-402] is generally assumed to encode the P-type Ca2+ channel. However, we find that alpha 1A expressed in Xenopus oocytes differs from P-type channels in its kinetics of inactivation and its degree of sensitivity to block by the peptide toxins omega-Aga-IVA and omega-CTx-MVIIC [Sather W. A., Tanabe T., Zhang J.-F., Mori Y., Adams M. E. and Tsien R. W. (1993) Neuron 11, 291-303]. Thus, alpha 1A is capable of generating a Ca2+ channel with characteristics quite distinct from P-type channels. Doe-1, recently cloned from the forebrain of a marine ray, is another alpha 1 subunit which exemplifies a different branch of the Ca2+ channel family tree [Horne W. A., Ellinor P. T., Inman I., Zhou M., Tsien R. W. and Schwarz T. L. (1993) Proc. Natn. Acad. Sci. U.S.A. 90, 3787-3791]. When expressed in Xenopus oocytes, doe-1 forms a high voltage-activated (HVA) Ca2+ channel [Ellinor P. T., Zhang J.-F., Randall A. D., Zhou M., Schwarz T. L., Tsien R. W. and Horne W. (1993) Nature 363, 455-458]. It inactivates more rapidly than any previously expressed calcium channel and is not blocked by dihydropyridine antagonists or omega-Aga-IVA. Doe-1 current is reduced by omega-CTx-GVIA, but the inhibition is readily reversible and requires micromolar toxin, in contrast to this toxin's potent and irreversible block of N-type channels. Doe-1 shows considerable sensitivity to block by Ni2+ or Cd2+. We have identified components of Ca2+ channel current in rat cerebellar granule neurons with kinetic and pharmacological features similar to alpha 1A and doe-1 in oocytes [Randall A. D., Wendland B., Schweizer F., Miljanich G., Adams M. E. and Tsien R. W. (1993) Soc. Neurosci. Abstr. 19, 1478]. The doe-1-like component (R-type current) inactivates much more quickly than L, N or P-type channels, and also differs significantly in its pharmacology.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

本文简要概述了电压门控Ca2+通道的多样性,以及我们最近在神经元Ca2+通道方面的研究工作,这些通道具有新颖的药理学和生物物理学特性,使其有别于L型、N型、P型或T型通道。被称为α1A或BI的Ca2+通道α1亚基[森洋一、弗里德里希·T、金美善、三上彰、中井健、鲁思·P、博泽·E、霍夫曼·F、弗洛克齐·V、古市彻、三木志保、井本健、田边利明和沼田稔(1991年)《自然》350卷,398 - 402页]通常被认为编码P型Ca2+通道。然而,我们发现非洲爪蟾卵母细胞中表达的α1A在失活动力学以及对肽毒素ω - Aga - IVA和ω - CTx - MVIIC阻断的敏感程度方面与P型通道不同[萨瑟·W·A、田边利明、张建国、森洋一、亚当斯·M·E和钱永健(1993年)《神经元》11卷,291 - 303页]。因此,α1A能够产生一种特性与P型通道截然不同的Ca2+通道。Doe - 1是最近从一种海鳐的前脑中克隆出来的另一个α1亚基,它代表了Ca2+通道家族树的一个不同分支[霍恩·W·A、埃利诺·P·T、英曼·I、周明、钱永健和施瓦茨·T·L(1993年)《美国国家科学院院刊》90卷,3787 - 3791页]。当在非洲爪蟾卵母细胞中表达时,Doe - 1形成一种高电压激活(HVA)的Ca2+通道[埃利诺·P·T、张建国、兰德尔·A·D、周明、施瓦茨·T·L、钱永健和霍恩(1993年)《自然》363卷,455 - 458页]。它比任何先前表达的钙通道失活都更快,并且不被二氢吡啶拮抗剂或ω - Aga - IVA阻断。Doe - 1电流可被ω - CTx - GVIA降低,但这种抑制很容易逆转,并且需要微摩尔浓度的毒素,这与该毒素对N型通道的强效且不可逆阻断形成对比。Doe - 1对Ni2+或Cd2+的阻断表现出相当的敏感性。我们已经在大鼠小脑颗粒神经元中鉴定出了Ca2+通道电流的成分,其动力学和药理学特征与卵母细胞中的α1A和Doe - 1相似[兰德尔·A·D、温德兰·B、施韦泽·F、米尔亚尼奇·G、亚当斯·M·E和钱永健(1993年)《神经科学学会摘要》19卷,1478页]。Doe - 1样成分(R型电流)比L型、N型或P型通道失活快得多,并且在药理学上也有显著差异。(摘要截断于400字)

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