Soldatov N M, Oz M, O'Brien K A, Abernethy D R, Morad M
Georgetown University Medical Center, Department of Pharmacology, Washington, D. C. 20007, USA.
J Biol Chem. 1998 Jan 9;273(2):957-63. doi: 10.1074/jbc.273.2.957.
Recently we have described a splice variant of the L-type Ca2+ channel (alpha1C,86) in which 80 amino acids (1572-1651) of the conventional alpha1C,77 were substituted by another 81 amino acids due to alternative splicing of exons 40-42. Ba2+ current (IBa) through alpha1C,86 exhibited faster inactivation kinetics, was strongly voltage-dependent, and had no Ca2+-dependent inactivation. An oligonucleotide-directed segment substitution and expression of the mutated channels in Xenopus oocytes were used to study the molecular determinants for gating of the channel within the 80-amino acid domain. Replacement of segments 1572-1598 or 1595-1652 of the "slow" alpha1C,77 channel with the respective segments of the "fast" alpha1C,86 gave rise to rapidly inactivating alpha1C,86-like channel isoforms. We found that replacement of either motifs 1572IKTEG1576 or 1600LLDQV1604 of alpha1C,77 with the respective sequences of alpha1C,86 caused strong but partial acceleration of IBa inactivation. Replacement of both sequences produced an alpha1C, 86-like fast channel which had no Ca2+-dependent inactivation. These results support the hypothesis that motifs 1572-1576 and 1600-1604 of alpha1C,77 contribute cooperatively to inactivation kinetics of alpha1C and are critical for Ca2+-dependent inactivation of the channel.
最近我们描述了一种L型Ca2+通道(α1C,86)的剪接变体,由于外显子40 - 42的可变剪接,传统α1C,77的80个氨基酸(1572 - 1651)被另外81个氨基酸取代。通过α1C,86的Ba2+电流(IBa)表现出更快的失活动力学,强烈依赖电压,且无Ca2+依赖性失活。利用寡核苷酸定向的片段替换以及在非洲爪蟾卵母细胞中表达突变通道,来研究80个氨基酸结构域内通道门控的分子决定因素。用“快速”α1C,86的相应片段替换“慢速”α1C,77通道的1572 - 1598或1595 - 1652片段,产生了快速失活的α1C,86样通道亚型。我们发现,用α1C,86的相应序列替换α1C,77的1572IKTEG1576或1600LLDQV1604基序,会导致IBa失活强烈但部分加速。同时替换这两个序列产生了一个α1C,86样的快速通道,该通道无Ca2+依赖性失活。这些结果支持了这样的假说,即α1C,77的1572 - 1576和1600 - 1604基序协同作用于α1C的失活动力学,并且对于通道的Ca2+依赖性失活至关重要。