IIM - Interuniversitary Institute of Myology, DNI - Department of Neuroscience and Imaging, Ce.S.I.- Centro Scienze dell'Invecchiamento, University of Studi G. d'Annunzio, 66013 Chieti, Italy.
Aging Cell. 2010 Dec;9(6):958-70. doi: 10.1111/j.1474-9726.2010.00623.x. Epub 2010 Oct 21.
The I4898T (IT) mutation in type 1 ryanodine receptor (RyR1), the Ca(2+) release channel of the sarcoplasmic reticulum (SR) is linked to a form of central core disease (CCD) in humans and results in a nonleaky channel and excitation-contraction uncoupling. We characterized age-dependent and fiber-type-dependent alterations in muscle ultrastructure, as well as the magnitude and spatiotemporal properties of evoked Ca(2+) release in heterozygous Ryr1(I4895T/WT) (IT/+) knock-in mice on a mixed genetic background. The results indicate a classical but mild CCD phenotype that includes muscle weakness and the presence of mitochondrial-deficient areas in type I fibers. Electrically evoked Ca(2+) release is significantly reduced in single flexor digitorum brevis (FDB) fibers from young and old IT/+ mice. Structural changes are strongly fiber-type specific, affecting type I and IIB/IIX fibers in very distinct ways, and sparing type IIA fibers. Ultrastructural alterations in our IT/+ mice are also present in wild type, but at a lower frequency and older ages, suggesting that the disease mutation on the mixed background promotes an acceleration of normal age-dependent changes. The observed functional and structural alterations and their similarity to age-associated changes are entirely consistent with the known properties of the mutated channel, which result in reduced calcium release as is also observed in normal aging muscle. In strong contrast to these observations, a subset of patients with the analogous human heterozygous mutation and IT/+ mice on an inbred 129S2/SvPasCrl background exhibit a more severe disease phenotype, which is not directly consistent with the mutated channel properties.
I4898T(IT)突变位于 1 型兰尼碱受体(RyR1)上,RyR1 是肌质网(SR)的 Ca²⁺释放通道,与人类中央核疾病(CCD)的一种形式有关,导致非渗漏通道和兴奋-收缩偶联解偶联。我们在混合遗传背景下的杂合 Ryr1(I4895T/WT)(IT/+)敲入小鼠中,研究了肌肉超微结构的年龄依赖性和纤维类型依赖性改变,以及诱发 Ca²⁺释放的幅度和时空特性。结果表明,存在肌纤维无力和 I 型纤维中线粒体缺陷区的经典但轻度 CCD 表型。年轻和老年 IT/+ 小鼠的单个屈趾短肌(FDB)纤维中,电诱发的 Ca²⁺释放明显减少。结构变化具有强烈的纤维类型特异性,以非常不同的方式影响 I 型和 IIB/IIX 纤维,而 IIA 纤维则不受影响。我们的 IT/+ 小鼠中的超微结构改变也存在于野生型中,但频率较低,年龄较大,这表明混合背景下的疾病突变促进了正常年龄相关变化的加速。观察到的功能和结构改变及其与年龄相关变化的相似性与突变通道的已知特性完全一致,导致 Ca²⁺释放减少,这也与正常衰老肌肉中观察到的情况一致。与这些观察结果形成鲜明对比的是,具有类似人类杂合突变的患者亚组和 129S2/SvPasCrl 近交系背景下的 IT/+ 小鼠表现出更严重的疾病表型,这与突变通道特性不一致。