首页> 外文期刊>The Journal of Physiology >Facilitation by the beta2a subunit of pore openings in cardiac Ca2+ channels.
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Facilitation by the beta2a subunit of pore openings in cardiac Ca2+ channels.

机译:心脏Ca2 +通道中的小孔的beta2a亚基促进。

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1. Single channel recordings were performed on the cardiac calcium channel (alpha1C) in order to study the effect of coexpression of the accessory beta2a subunit. On-cell patch clamp recordings were performed after expression of these channels in Xenopus oocytes. 2. The alpha1C subunit, when expressed alone, had similar single channel properties to native cardiac channels. Slow transitions between low and high open probability (Po) gating modes were found as well as fast gating transitions between the open and closed states. 3. Coexpression of the beta2a subunit caused changes in the fast gating during high Po mode. In this mode, open time distributions reveal at least three open states and the beta2a subunit favours the occupancy of the longest, 10-15 ms open state. No effect of the beta2a subunit was found when the channel was gating in the low Po mode. 4. Slow gating transitions were also affected by the beta2a subunit. The high Po mode was maintained for the duration of the depolarizing pulse in the presence of the beta2a subunit; while the alpha1C channel when expressed alone, frequently switched into and out of the high Po mode during the course of a sweep. 5. The beta2a subunit also affected mode switching that occurred between sweeps. Runs analysis revealed that the alpha1C subunit has a tendency toward non-random mode switching. The beta2a subunit increased this tendency. A chi2 analysis of contingency tables indicated that the beta2a subunit caused the alpha1C channel to gain 'intrinsic memory', meaning that the mode of a given sweep can be non-independent of the mode of the previous sweep. 6. We conclude that the beta2a subunit causes changes to the alpha1C channel in both its fast and slow gating behaviour. The beta2a subunit alters fast gating by facilitating movement of the channel into an existing open state. Additionally, the beta2a subunit decreases the slow switching between low and high Po modes.
机译:1.对心脏钙通道(alpha1C)进行单通道记录,以研究辅助beta2a亚基共表达的作用。这些通道在非洲爪蟾卵母细胞中表达后进行细胞膜片钳记录。 2. alpha1C亚基单独表达时具有与天然心脏通道相似的单通道特性。发现了低和高打开概率(Po)门控模式之间的缓慢过渡以及打开和关闭状态之间的快速门控过渡。 3.β2a亚基的共表达引起高Po模式下快速门控的变化。在这种模式下,开放时间分布揭示了至少三个开放状态,而beta2a亚基则有利于最长的10-15 ms开放状态的占用。当通道以低Po模式进行门控时,未发现beta2a亚基的作用。 4.缓慢的门控转换也受到beta2a亚基的影响。在存在β2a亚基的情况下,在去极化脉冲的持续时间内保持高Po模式。当单独表示alpha1C通道时,在扫描过程中经常切换到高Po模式或从中退出。 5. beta2a子单元也影响两次扫描之间发生的模式切换。运行分析显示,alpha1C亚基具有非随机模式切换的趋势。 beta2a亚基增加了这种趋势。对列联表的chi2分析表明,beta2a亚基使alpha1C通道获得“本征内存”,这意味着给定扫描的模式可能与先前扫描的模式无关。 6.我们得出的结论是,beta2a亚基会在其快速和慢速门控行为中引起alpha1C通道的变化。 beta2a亚基通过促进通道向现有开放状态的移动来改变快速门控。此外,beta2a亚基可降低低和高Po模式之间的缓慢切换。

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