首页> 外文期刊>The Journal of Physiology >Defects in Ca2+ release associated with local expression of pathological ryanodine receptors in mouse muscle fibres.
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Defects in Ca2+ release associated with local expression of pathological ryanodine receptors in mouse muscle fibres.

机译:Ca2 +释放缺陷与小鼠肌肉纤维中病理性ryanodine受体的局部表达有关。

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Mutations of the gene encoding the type 1 ryanodine receptor (RyR1) are associated with skeletal muscle disorders including malignant hyperthermia susceptibility (MHS) and central core disease (CCD). We used in vivo expression of EGFP-RyR1 constructs in fully differentiated mouse muscle fibres to characterize the function of several RyR1 mutants. Wild-type and Y523S, R615C, R2163H and I4897T mutants of RyR1 were separately expressed and found to be present within restricted regions of fibres with a pattern consistent with triadic localization. Confocal measurements of voltage-clamp-activated myoplasmic Ca(2+) transients demonstrated alterations of sarcoplasmic reticulum (SR) Ca(2+) release spatially correlated with the presence of exogenous RyR1s. The Y523S, R615C and R2163H RyR1 MHS-related mutants were associated with enhanced peak Ca(2+) release for low and moderate levels of depolarization, whereas the I4897T CCD mutant produced a chronic reduction of peak SR Ca(2+) release. For example, peak Ca(2+) release in response to a depolarization to -20 mV in regions of fibres expressing Y523S and I4897T was 2.0 +/- 0.3 (n = 9) and 0.46 +/- 0.1 (n = 5) times the corresponding value in adjacent, non-expressing regions of the same fibre, respectively. Interestingly no significant change in the estimated total amount of Ca(2+) released at the end of large depolarizing pulses was observed for any of the mutant RyR1 channels. Overall, results are consistent with an 'inherent' increase in RyR1 sensitivity to activation by the voltage sensor for the MHS-related RyR1 mutants and a partial failure of voltage-gated release for the CCD-related I4897T mutant, that occur with no sign of change in SR Ca(2+) content. Furthermore, the results indicate that RyR1 channel density is tightly regulated even under the present conditions of forced exogenous expression.
机译:编码1型ryanodine受体(RyR1)的基因突变与包括恶性高热敏感性(MHS)和中枢核心疾病(CC​​D)在内的骨骼肌疾病有关。我们在完全分化的小鼠肌肉纤维中使用EGFP-RyR1构建体的体内表达来表征几种RyR1突变体的功能。 RyR1的野生型和Y523S,R615C,R2163H和I4897T突变体分别表达,并发现它们存在于纤维的受限区域内,并具有与三位体定位一致的模式。电压钳激活的肌质Ca(2+)瞬变的共焦测量表明肌质网(SR)Ca(2+)释放的变化与外源RyR1s的存在空间相关。 Y523S,R615C和R2163H RyR1 MHS相关突变体与低和中等水平的去极化增强的峰值Ca(2+)释放相关,而I4897T CCD突变体产生峰值SR Ca(2+)释放的慢性减少。例如,在表达Y523S和I4897T的纤维区域中,响应于去极化至-20 mV释放的峰值Ca(2+)是2.0 +/- 0.3(n = 9)和0.46 +/- 0.1(n = 5)倍分别在相同纤维的相邻非表达区域中的相应值。有趣的是,对于任何突变的RyR1通道,未观察到在大的去极化脉冲结束时释放的Ca(2+)总量的显着变化。总体而言,结果与MHS相关的RyR1突变体对电压传感器激活的RyR1激活灵敏度的“内在”提高以及与CCD相关的I4897T突变体的电压门控释放的部分失败相一致,而这种现象没有任何迹象。 SR Ca(2+)含量的变化。此外,结果表明,即使在强制外源表达的当前条件下,RyR1通道密度也受到严格调节。

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