Duno Morten, Quinlivan Ros, Vissing John, Schwartz Marianne
Department of Clinical Genetics, University of Copenhagen, Rigshospitalet, Copenhagen, Denmark.
Ann Hum Genet. 2009 May;73(Pt 3):292-7. doi: 10.1111/j.1469-1809.2009.00512.x.
Mutations in PYGM, encoding the muscle-specific glycogen phosphorylase (myophosphorylase), are responsible for McArdle disease. Among Caucasians, a large proportion of patients are homozygous for the R50X mutation, but other mutations can affect all the 20 exons of PYGM, making mutation detection laborious. We have developed a high-resolution melting (HRM) assay for mutation detection in PYGM. Twelve McArdle patients were investigated, in whom pre-screening had ruled out homozygosity or compound heterozygosity for the two common G205S and R50X mutations. In total, we identified 16 different variations. Thirteen of these are pathogenic, and three were classified as polymorphisms. Nine variations had not previously been described. One of the novel mutations, c.2430C > T, was initially predicted to result in a silent G810G change, but cDNA analysis demonstrated that the mutation led to abnormal mRNA processing. The HRM protocol reduced the need for direct sequencing by approximately 85%, and is a good approach to search for new mutations in PYGM.
编码肌肉特异性糖原磷酸化酶(肌磷酸化酶)的PYGM基因突变是造成麦卡德尔病的原因。在白种人中,很大一部分患者是R50X突变的纯合子,但其他突变可影响PYGM的所有20个外显子,使得突变检测工作艰巨。我们开发了一种用于检测PYGM突变的高分辨率熔解(HRM)分析方法。对12例麦卡德尔病患者进行了研究,在这些患者中,预筛查排除了常见的G205S和R50X两种突变的纯合性或复合杂合性。我们总共鉴定出16种不同的变异。其中13种是致病性的,3种被归类为多态性。9种变异此前未曾被描述过。其中一个新突变,c.2430C>T,最初预测会导致沉默的G810G变化,但cDNA分析表明该突变导致了异常的mRNA加工。HRM方案将直接测序的需求减少了约85%,是在PYGM中寻找新突变的一种好方法。