首页> 外文期刊>The Biochemical Journal >Effects of peptide C corresponding to the Glu724-Pro760 region of the II-III loop of the DHP (dihydropyridine) receptor alpha1 subunit on the domain- switch-mediated activation of RyR1 (ryanodine receptor 1) Ca2+ channels.
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Effects of peptide C corresponding to the Glu724-Pro760 region of the II-III loop of the DHP (dihydropyridine) receptor alpha1 subunit on the domain- switch-mediated activation of RyR1 (ryanodine receptor 1) Ca2+ channels.

机译:相应于DHP(二氢吡啶)受体alpha1亚基的II-III环的Glu724-Pro760区域的肽C对结构域转换介导的RyR1(ryanodine受体1)Ca2 +通道活化的影响。

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摘要

The Leu720-Leu764 region of the II-III loop of the dihydropyridine receptor is believed to be important for both orthograde and retrograde communications with the RyR (ryanodine receptor), but its actual role has not yet been resolved. Our recent studies suggest that voltage-dependent activation of the RyR channel is mediated by a pair of interacting N-terminal and central domains, designated as the 'domain switch'. To investigate the effect of peptide C (a peptide corresponding to residues Glu724-Pro760) on domain- switch-mediated activation of the RyR, we measured Ca2+ release induced by DP (domain peptide) 1 or DP4 (which activates the RyR by mediation of the domain switch) and followed the Ca2+ release time course using a luminal Ca2+ probe (chlortetracycline) under Ca2+-clamped conditions. Peptide C produced a significant potentiation of the domain-switch-mediated Ca2+ release, provided that the Ca2+ concentration was sufficiently low (e.g. 0.1 microM) and the Ca2+ channel was only partially activated by the domain peptide. However, at micromolar Ca2+ concentrations, peptide C inhibits activation. Covalent cross-linking of fluorescently labelled peptide C to the RyR and screening of the fluorescently labelled tryptic fragments permitted us to localize the peptide-C-binding site to residues 450-1400, which may represent the primary region involved in physical coupling. Based on the above findings, we propose that the physiological role of residues Glu724-Pro760 is to facilitate depolarization-induced and domain-switch-mediated RyR activation at sub- or near-threshold concentrations of cytoplasmic Ca2+ and to suppress activation upon an increase of cytoplasmic Ca2+.
机译:二氢吡啶受体的II-III环的Leu720-Leu764区域被认为对于与RyR(ryanodine受体)的正向和逆向通信均很重要,但其实际作用尚未得到解决。我们最近的研究表明,RyR通道的电压依赖性激活是由一对相互作用的N末端和中央结构域介导的,称为“结构域开关”。为了研究肽C(对应于残基Glu724-Pro760的肽)对域转换介导的RyR激活的影响,我们测量了DP(域肽)1或DP4(通过介导RyR激活RyR)诱导的Ca2 +释放。域切换),然后在腔内Ca2 +固定的条件下使用腔内Ca2 +探针(金霉素)进行Ca2 +释放时间的过程。肽C产生了域切换介导的Ca2 +释放的显着增强作用,条件是Ca2 +浓度足够低(例如0.1 microM)并且Ca2 +通道仅被域肽部分激活。但是,在微摩尔Ca2 +浓度下,肽C抑制了活化。荧光标记的肽C与RyR的共价交联以及荧光标记的胰蛋白酶片段的筛选使我们能够将肽C的结合位点定位在残基450-1400上,该残基可能代表参与物理偶联的主要区域。基于以上发现,我们提出残基Glu724-Pro760的生理学作用是在低于或接近阈值的细胞质Ca2 +浓度下促进去极化诱导的和域转换介导的RyR活化,并在增加C2 +时抑制活化。胞质Ca2 +。

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