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癫痫相关β1亚基突变对哺乳动物细胞钠电流的调节作用。

Modulation of sodium current in mammalian cells by an epilepsy-correlated beta 1-subunit mutation.

作者信息

Tammaro Paolo, Conti Franco, Moran Oscar

机构信息

Istituto di Cibernetica e Biofisica, CNR, Via De Marini, 6, I-16149, Genoa, Italy.

出版信息

Biochem Biophys Res Commun. 2002 Mar 8;291(4):1095-101. doi: 10.1006/bbrc.2002.6570.

Abstract

The syndrome of generalized epilepsy with febrile seizure plus (GEFS+) is associated with a single point mutation on the gene SCN1B that results in a substitution of the cysteine 121 with a tryptophane in the sodium channel beta 1-subunit protein. We have studied, in the HEK cells permanently transfected with the skeletal muscle sodium channel alpha-subunit (SkM1), the effects of a transient transfection of the wild type (WT) or C121W mutant beta 1-subunit. Coexpression of the WT beta 1 produces two effects on the sodium currents expressed in mammalian cells: the increase in the density of sodium channels, and the modulation of the inactivation of the sodium currents, inducing a hastening of the recovery from the inactivation. This modulation is less severe as observed when sodium channels are expressed in frog oocytes. We have observed that mutant C121W lacks this modulatory property, but maintains its property to increase the current density. Our observation suggests a possible involvement of this lack of modulation in the development of the GEFS+, providing the first hypothesis based on the observation of the functional properties of the beta 1-subunit C121W mutant in mammalian cells, which certainly represents a more physiological preparation, instead of in Xenopus oocytes, where the modulatory properties of the beta 1-subunit are artificially amplified.

摘要

全面性癫痫伴热性惊厥附加症(GEFS+)综合征与SCN1B基因上的一个单点突变相关,该突变导致钠通道β1亚基蛋白中的半胱氨酸121被色氨酸替代。我们在永久转染了骨骼肌钠通道α亚基(SkM1)的HEK细胞中,研究了野生型(WT)或C121W突变型β1亚基瞬时转染的影响。WT β1的共表达对哺乳动物细胞中表达的钠电流产生两种影响:钠通道密度增加,以及钠电流失活的调节,导致失活恢复加速。与在蛙卵母细胞中表达钠通道时观察到的情况相比,这种调节作用不那么明显。我们观察到突变体C121W缺乏这种调节特性,但保持了其增加电流密度的特性。我们的观察结果表明,这种调节缺失可能与GEFS+的发生有关,这是基于对β1亚基C121W突变体在哺乳动物细胞(这肯定代表了一种更具生理性的制备方式)而非非洲爪蟾卵母细胞(其中β1亚基的调节特性被人为放大)中的功能特性观察得出的第一个假设。

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