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首页> 外文期刊>The Biochemical Journal >The random-coil 'C' fragment of the dihydropyridine receptor II-III loop can activate or inhibit native skeletal ryanodine receptors
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The random-coil 'C' fragment of the dihydropyridine receptor II-III loop can activate or inhibit native skeletal ryanodine receptors

机译:二氢吡啶受体II-III环的无规线圈'C'片段可以激活或抑制天然骨骼素ryanodine受体

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摘要

The actions of peptide C, corresponding to (724)Glu-Pro(760) of the II-III loop of the skeletal dihydropyridine receptor, on ryanodine receptor (RyR) channels incorporated into lipid bilayers with the native sarcoplasmic reticulum membrane show that the peptide is a high-affinity activator of native skeletal RyRs at cytoplasmic concentrations of 100 nM-10 muM. In addition, we found that peptide C inhibits RyRs in a voltage-independent manner when added for longer times or at higher concentrations (up to 150 muM). Peptide C had a random-coil structure indicating that it briefly assumes a variety of structures, some of which might activate and others which might inhibit RyRs. The results suggest that RyR activation and inhibition by peptide C arise from independent stochastic processes. A rate constant of 7.5 x 10(5) s(-1 .) M-1 was obtained for activation and a lower estimate for the rate constant for inhibition of 5.9 x 10(3) s(-1) (.) M-1. The combined actions of peptide C and peptide A (II-III loop sequence (671)Thr-Leu(690)) showed that peptide C prevented activation but not blockage of RyRs by peptide A. We suggest that the effects of peptide C indicate functional interactions between a part of the dihydropyridine receptor and the RyR. These interactions could reflect either dynamic changes that occur during excitation-contraction coupling or interactions between the proteins at rest. [References: 43]
机译:肽C对应于骨骼肌二氢吡啶受体II-III环的(724)Glu-Pro(760),对掺入带有天然肌浆网膜的脂质双层的ryanodine受体(RyR)通道的作用表明是在细胞质浓度为100 nM-10 muM时,天然骨骼RyRs的高亲和力激活剂。此外,我们发现,肽C长时间或以更高的浓度(最高150μM)添加时,会以电压非依赖性方式抑制RyRs。肽C具有随机螺旋结构,表明它短暂地呈现出多种结构,其中一些可能被激活,而另一些则可能抑制RyRs。结果表明,肽C的RyR激活和抑制来自独立的随机过程。获得了用于激活的7.5 x 10(5)s(-1。)M-1速率常数,以及抑制了5.9 x 10(3)s(-1)(。)M-抑制速率常数的较低估计1。肽C和肽A(II-III环序列(671)Thr-Leu(690))的联合作用表明,肽C阻止了肽A激活RyRs,但没有阻止RyRs阻断。二氢吡啶受体的一部分与RyR之间的相互作用。这些相互作用可以反映在激发-收缩偶联过程中发生的动态变化或静止蛋白质之间的相互作用。 [参考:43]

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