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How does ryanodine modify ion handling in the sheep cardiac sarcoplasmic reticulum Ca(2+)-release channel?

机译:ryanodine如何改变绵羊心肌肌浆网Ca(2 +)-释放通道中的离子处理能力?

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摘要

Under appropriate conditions, the interaction of the plant alkaloid ryanodine with a single cardiac sarcoplasmic reticulum Ca(2+)-release channel results in a profound modification of both channel gating and conduction. On modification, the channel undergoes a dramatic increase in open probability and a change in single-channel conductance. In this paper we aim to provide a mechanistic framework for the interpretation of the altered conductance seen after ryanodine binding to the channel protein. To do this we have characterized single-channel conductance with representative members of three classes of permeant cation; group 1a monovalent cations, alkaline earth divalent cations, and organic monovalent cations. We have quantified the change in single-channel conductance induced by ryanodine and have expressed this as a fraction of conductance in the absence of ryanodine. Fractional conductance seen in symmetrical 210 mM solutions is not fixed but varies with the nature of the permeant cation. The group 1a monovalent cations (K+, Na+, Cs+, Li+) have values of fractional conductance in a narrow range (0.60- 0.66). With divalent cations fractional conductance is considerably lower (Ba2+, 0.22 and Sr2+, 0.28), whereas values of fractional conductance vary considerably with the organic monovalent cations (ammonia 0.66, ethylamine 0.76, propanolamine 0.65, diethanolamine 0.92, diethylamine 1.2). To establish the mechanisms governing these differences, we have monitored the affinity of the conduction pathway for, and the relative permeability of, representative cations in the ryanodine-modified channel. These parameters have been compared with those obtained in previous studies from this laboratory using the channel in the absence of ryanodine and have been modeled by modifying our existing single-ion, four-barrier three-well rate theory model of conduction in the unmodified channel. Our findings indicate that the high affinity, essentially irreversible, interaction of ryanodine with the cardiac sarcoplasmic reticulum Ca(2+)-release channel produces a conformational alteration of the protein which results in modified ion handling. We suggest that, on modification, the affinity of the channel for the group 1a monovalent cations is increased while the relative permeability of this class of cations remains essentially unaltered. The affinity of the conduction pathway for the alkaline earth divalent cations is also increased, however the relative permeability of this class of cations is reduced compared to the unmodified channel. The influence of modification on the handling by the channel of the organic monovalent cations is determined by both the size and the nature of the cation.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在适当的条件下,植物生物碱碱与单个心脏肌浆网Ca(2 +)-释放通道的相互作用导致通道门控和传导的深刻修改。修改后,通道的开放概率显着增加,单通道电导也发生了变化。在本文中,我们旨在提供一个机制框架,用于解释在将金刚烷胺与通道蛋白结合后所观察到的电导改变。为此,我们用三类渗透阳离子的代表性成员表征了单通道电导。第1a族一价阳离子,碱土二价阳离子和有机一价阳离子。我们已经量化了由ryanodine诱导的单通道电导的变化,并将其表示为不存在ryanodine时电导的一部分。在对称的210 mM溶液中看到的分数电导不是固定的,而是随渗透阳离子的性质而变化。 1a族一价阳离子(K +,Na +,Cs +,Li +)的分数电导值在较窄的范围内(0.60-0.66)。对于二价阳离子,分数电导要低得多(Ba2 +,0.22和Sr2 +,0.28),而分数电导的值随有机单价阳离子(氨0.66,乙胺0.76,丙醇胺0.65,二乙醇胺0.92,二乙胺1.2)而有很大差异。为了建立控制这些差异的机制,我们已经监测了在ryanodine修饰的通道中代表性阳离子的传导途径的亲和力和相对渗透性。这些参数已与以前在没有ryanodine的情况下使用该通道从实验室获得的研究结果进行了比较,并通过修改我们现有的单离子,四势垒三阱速率理论模型在未修改的通道中进行了传导建模。我们的发现表明,ryanodine与心脏肌浆网Ca(2 +)-释放通道的高亲和力,基本上不可逆,相互作用会产生蛋白质的构象变化,从而导致修饰的离子处理。我们建议,在修饰时,通道对1a组单价阳离子的亲和力会增加,而这类阳离子的相对渗透性基本上保持不变。传导途径对碱土二价阳离子的亲和力也增加了,但是与未修饰的通道相比,这类阳离子的相对磁导率降低了。修饰对有机单价阳离子通道处理的影响取决于阳离子的大小和性质。(摘要截短为400字)

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