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The Voltage-sensitive Release Mechanism of Excitation Contraction Coupling in Rabbit Cardiac Muscle Is Explained by Calcium-induced Calcium Release

机译:钙诱导的钙释放解释了兔心肌中兴奋收缩偶联的电压敏感释放机理

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摘要

The putative voltage-sensitive release mechanism (VSRM) was investigated in rabbit cardiac myocytes at 37°C with high resistance microelectrodes to minimize intracellular dialysis. When the holding potential was adjusted from −40 to −60 mV, the putative VSRM was expected to operate alongside CICR. Under these conditions however, we did not observe a plateau at positive potentials of the cell shortening versus voltage relationship. The threshold for cell shortening changed by −10 mV, but this resulted from a similar change of the threshold for activation of inward current. Cell shortening under conditions where the putative VSRM was expected to operate was blocked in a dose dependent way by nifedipine and CdCl2 and blocked completely by NiCl2. “Tail contractions” persisted in the presence of nifedipine and CdCl2 but were blocked completely by NiCl2. Block of early outward current by 4-aminopyridine and 4-acetoamido-4′-isothiocyanato-stilbene-2,2′-disulfonic acid (SITS) demonstrated persisting inward current during test depolarizations despite the presence of nifedipine and CdCl2. Inward current did not persist in the presence of NiCl2. A tonic component of cell shortening that was prominent during depolarizations to positive potentials under conditions selective for the putative VSRM was sensitive to rapidly applied changes in superfusate [Na+] and to the outward Na+/Ca2+ exchange current blocking drug KB-R7943. This component of cell shortening was thought to be the result of Na+/Ca2+ exchange–mediated excitation contraction coupling. Cell shortening recorded under conditions selective for the putative VSRM was increased by the enhanced state of phosphorylation induced by isoprenaline (1 μM) and by enhancing sarcoplasmic reticulum Ca2+ content by manipulation of the conditioning steps. Under these conditions, cell shortening at positive test depolarizations was converted from tonic to phasic. We conclude that the putative VSRM is explained by CICR with the Ca2+ “trigger” supplied by unblocked L-type Ca2+ channels and Na+/Ca2+ exchange.
机译:推定的电压敏感释放机制(VSRM)在37℃的兔心肌细胞中用高电阻微电极进行了研究,以最大程度地减少细胞内透析。当保持电势从-40 mV调整到-60 mV时,预期的VSRM可以与CICR一起工作。然而,在这些条件下,我们没有观察到细胞缩短与电压关系的正电位处于平稳状态。细胞缩短的阈值改变了-10 mV,但这是由于激活内向电流的阈值发生了类似的变化而引起的。在硝苯地平和CdCl2剂量依赖性的情况下,预期VSRM预期起作用的条件下的细胞缩短被NiCl2完全阻止。在硝苯地平和CdCl2存在下,“尾巴收缩”持续存在,但被NiCl2完全阻断。尽管存在硝苯地平和CdCl2,但4-氨基吡啶和4-乙酰氨基-4'-异硫氰基-二苯乙烯-2,2'-二磺酸(SITS)阻止了早期外向电流,显示在测试去极化过程中仍存在内向电流。在NiCl2存在下,流入电流不会持续存在。在对推定的VSRM有选择性的条件下,去极化过程中向正极电位突出的细胞缩短的补品成分对快速应用的超融合液[Na +]和向外的Na + / Ca2 +交换电流阻断药物KB-R7943敏感。细胞缩短的这一成分被认为是Na + / Ca2 +交换介导的兴奋收缩耦合的结果。通过对异丙肾上腺素(1μM)诱导的磷酸化增强状态和通过调节条件操作来增强肌浆网Ca2 +含量,增加了在对VSRM选择性的条件下记录的细胞缩短。在这些条件下,正测试去极化时的细胞缩短从补品转变为阶段性。我们得出的结论是,CICR用推定的VSRM解释了无阻塞L型Ca2 +通道和Na + / Ca2 +交换提供的Ca2 +“触发”。

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    Griffiths, H.; MacLeod, K.T.;

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  • 年度 2003
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  • 正文语种 {"code":"en","name":"English","id":9}
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