Eccles Institute of Neuroscience, John Curtin School of Medical Research, Australian National University, Acton, ACT 2601, Australia.
Department of Animal, Plant and Soil Sciences, School of Agriculture, Biomedicine and Environment (SABE), La Trobe University, Melbourne, VIC 3086, Australia.
Int J Mol Sci. 2023 Dec 28;25(1):434. doi: 10.3390/ijms25010434.
The recessive Ryanodine Receptor Type 1 (RyR1) P3527S mutation causes mild muscle weakness in patients and increased resting cytoplasmic [Ca] in transformed lymphoblastoid cells. In the present study, we explored the cellular/molecular effects of this mutation in a mouse model of the mutation (RyR1 P3528S). The results were obtained from 73 wild type (WT/WT), 82 heterozygous (WT/MUT) and 66 homozygous (MUT/MUT) mice with different numbers of observations in individual data sets depending on the experimental protocol. The results showed that WT/MUT and MUT/MUT mouse strength was less than that of WT/WT mice, but there was no difference between genotypes in appearance, weight, mobility or longevity. The force frequency response of extensor digitorum longus (EDL) and soleus (SOL) muscles from WT/MUT and MUT/MUT mice was shifter to higher frequencies. The specific force of EDL muscles was reduced and Ca activation of skinned fibres shifted to a lower [Ca], with an increase in type I fibres in EDL muscles and in mixed type I/II fibres in SOL muscles. The relative activity of RyR1 channels exposed to 1 µM cytoplasmic Ca was greater in WT/MUT and MUT/MUT mice than in WT/WT mice. We suggest the altered RyR1 activity due to the P2328S substitution could increase resting [Ca] in muscle fibres, leading to changes in fibre type and contractile properties.
隐性兰尼碱受体 1(RyR1)P3527S 突变导致患者肌肉无力,并增加转化的淋巴母细胞系细胞中的静息细胞质[Ca]。在本研究中,我们在突变(RyR1 P3528S)的小鼠模型中探索了该突变的细胞/分子效应。结果来自 73 只野生型(WT/WT)、82 只杂合型(WT/MUT)和 66 只纯合型(MUT/MUT)小鼠,根据实验方案,每个数据集的观察次数不同。结果表明,WT/MUT 和 MUT/MUT 小鼠的力量小于 WT/WT 小鼠,但基因型之间在外观、体重、活动能力或寿命方面没有差异。WT/MUT 和 MUT/MUT 小鼠伸趾长肌(EDL)和比目鱼肌(SOL)肌肉的力频响应向更高频率转移。EDL 肌肉的比力降低,去神经纤维的 Ca 激活向更低的[Ca]转移,EDL 肌肉中的 I 型纤维增加,SOL 肌肉中的混合 I/II 型纤维增加。暴露于 1µM 细胞质 Ca 的 RyR1 通道的相对活性在 WT/MUT 和 MUT/MUT 小鼠中高于 WT/WT 小鼠。我们认为由于 P2328S 取代而改变的 RyR1 活性可能会增加肌肉纤维中的静息[Ca],导致纤维类型和收缩特性发生变化。