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通过向非洲爪蟾卵母细胞中膜片钳注入实现兔心脏钙通道功能减退的完全逆转;蛋白激酶A实现部分逆转。

Complete reversal of run-down in rabbit cardiac Ca2+ channels by patch-cramming in Xenopus oocytes; partial reversal by protein kinase A.

作者信息

Costantin J L, Qin N, Waxham M N, Birnbaumer L, Stefani E

机构信息

Department of Anesthesiology, UCLA School of Medicine, Los Angeles, CA 90095, USA.

出版信息

Pflugers Arch. 1999 May;437(6):888-94. doi: 10.1007/s004240050859.

Abstract

The rabbit cardiac Ca2+ channel (alpha1C) expressed in Xenopus oocytes exhibited a complete run-down of ionic currents when cell-attached patches were excised. The alpha1C channel was expressed alone or was coexpressed with the accessory beta2a or beta1b subunit. The catalytic subunit of protein kinase A (PKAc) and MgATP were capable of delaying the run-down of single-channel currents. In 33% of the alpha1C patches, and 26% of the alpha1C+beta2a patches, inclusion of PKAc in the bath solution delayed the run-down for a maximum of 20 min. In experiments where PKAc in the bath was not sufficient to delay the run-down of channel activity, insertion of the patch back into the oocyte (patch-cramming) could restore channel activity. Gating currents were also measured in the alpha1C+beta1b channel and were not subject to any run-down, even after the complete run-down of ionic currents. The results presented here reveal that PKAc is capable of delaying the run-down of currents in a subset of patches. The patch-cramming results suggest that a cytoplasmic factor, in addition to phosphorylation of the channel (by PKAc), may be involved in the maintenance of channel activity.

摘要

在非洲爪蟾卵母细胞中表达的兔心脏Ca2+通道(α1C),当切除细胞贴附式膜片时,离子电流会完全衰减。α1C通道单独表达或与辅助β2a或β1b亚基共表达。蛋白激酶A(PKAc)的催化亚基和MgATP能够延迟单通道电流的衰减。在33%的α1C膜片中,以及26%的α1C + β2a膜片中,将PKAc加入浴液中可使衰减延迟最多20分钟。在浴液中的PKAc不足以延迟通道活性衰减的实验中,将膜片重新插入卵母细胞(膜片挤压)可恢复通道活性。在α1C + β1b通道中也测量了门控电流,即使在离子电流完全衰减后,门控电流也不会衰减。此处呈现的结果表明,PKAc能够延迟一部分膜片中电流的衰减。膜片挤压结果表明,除了通道的磷酸化(由PKAc进行)外,一种细胞质因子可能参与通道活性的维持。

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