肌磷酸化酶缺乏症(mccardle病)的分子遗传学基础。

S Tsujino, S Shanske, I Nonaka, S DiMauro
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引用次数: 49

摘要

糖原磷酸化酶催化糖原分解代谢的第一步。肌肉磷酸化酶的遗传性缺陷导致以运动不耐受、痉挛和肌红蛋白尿为特征的肌病(麦卡德尔病)。我们已经确定了麦卡德尔病患者中肌磷酸化酶基因的十个突变。相对常见的突变包括:在40例美国患者中有30例观察到无义突变CGA(Arg)到密码子49处的TGA;单个密码子708/709缺失,7例日本患者中有4例;在40例美国患者中,有5例在密码子204处出现了GGC(Gly)到AGC(Ser)的错义突变。明显罕见的突变包括:在内含子14的第一个nt处发生剪接连接突变G到a;gat密码子510的缺失;翻译起始密码子ATG到CTG的突变;在密码子542处AAG(Lys)到ACG(Thr),在密码子396处CTG(Leu)到CCG(Pro),在密码子291处CTG(Leu)到CCG(Pro),以及在密码子654处GAG(Glu)到AAG(Lys)。由于大多数突变可以使用基因组DNA进行筛选,因此现在可以使用外周血细胞可靠地诊断患者,从而避免了肌肉活检。尽管这些发现确定了引起麦卡德尔病的广泛遗传病变,但这种疾病的临床异质性仍有待解释。
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The molecular genetic basis of myophosphorylase deficiency (McArdle's disease).

Glycogen phosphorylase catalyzes the first step of glycogen catabolism. Hereditary defects of muscle phosphorylase lead to a myopathy characterized by exercise intolerance, cramps, and myoglobinuria (McArdle's disease). We have identified ten mutations in the myophosphorylase gene in patients with McArdle's disease. Relatively common mutations include: a nonsense mutation, CGA(Arg) to TGA at codon 49, observed in 30 of 40 American patients; deletion of a single codon 708/709, observed in 4 of 7 Japanese patients; and a missense mutation, GGC(Gly) to AGC(Ser) at codon 204, observed in 5 of 40 American patients. Apparently rare mutations include: a splice-junction mutation, G to A, at the first nt of intron 14; a deletion of G at codon 510; a mutation, ATG to CTG, in the translation initiation codon; and missense mutations, AAG(Lys) to ACG(Thr) at codon 542, CTG(Leu) to CCG(Pro) at codon 396, CTG(Leu) to CCG(Pro) at codon 291, and GAG(Glu) to AAG(Lys) at codon 654. As most mutations can be screened for using genomic DNA, patients can now be diagnosed reliably using peripheral blood cells, thus avoiding muscle biopsy. Although these findings define the wide spectrum of genetic lesions causing McArdle's disease, the clinical heterogeneity of this disorder remains to be explained.

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Abstracts of the 50th Annual Meeting of the American Association of Electrodiagnostic Medicine, the 27th International Congress of Clinical Neurophysiology, and the 57th Annual Meeting of the American Clinical Neurophysiology Society. San Francisco, California, USA. September 16-20, 2003. Studies of the human stretch reflex. Human motor units in health and disease. Cortical activation related to arm-movement combinations. Studies of human motor physiology with transcranial magnetic stimulation.
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