Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Mol Genet Metab. 2013 Sep-Oct;110(1-2):153-61. doi: 10.1016/j.ymgme.2013.07.009. Epub 2013 Jul 17.
Mitochondrial DNA (mtDNA) depletion syndromes (MDSs) are a clinically and molecularly heterogeneous group of mitochondrial cytopathies characterized by severe mtDNA copy number reduction in affected tissues. Clinically, MDSs are mainly categorized as myopathic, encephalomyopathic, hepatocerebral, or multi-systemic forms. To date, the myopathic form of MDS is mainly caused by mutations in the TK2 gene, which encodes thymidine kinase 2, the first and rate limiting step enzyme in the phosphorylation of pyrimidine nucleosides. We analyzed 9 unrelated families with 11 affected subjects exhibiting the myopathic form of MDS, by sequencing the TK2 gene. Twelve mutations including 4 novel mutations were detected in 9 families. Skeletal muscle specimens were available from 7 out of 11 subjects. Respiratory chain enzymatic activities in skeletal muscle were measured in 6 subjects, and enzymatic activities were reduced in 3 subjects. Quantitative analysis of mtDNA content in skeletal muscle was performed in 5 subjects, and marked mtDNA content reduction was observed in each. In addition, we outline the molecular and clinical characteristics of this syndrome in a total of 52 patients including those previously reported, and a total of 36 TK2 mutations are summarized. Clinically, hypotonia and proximal muscle weakness are the major phenotypes present in all subjects. In summary, our study expands the molecular and clinical spectrum associated with TK2 deficiency.
线粒体 DNA(mtDNA)耗竭综合征(MDS)是一组临床和分子上异质性的线粒体细胞病变,其特征是受累组织中的 mtDNA 拷贝数严重减少。临床上,MDS 主要分为肌病型、脑肌病型、肝脑型或多系统型。迄今为止,MDS 的肌病型主要由 TK2 基因的突变引起,该基因编码胸苷激酶 2,是嘧啶核苷磷酸化的第一步和限速酶。我们通过对 9 个不相关的家系中的 11 名肌病型 MDS 患者进行测序,分析了 TK2 基因。在 9 个家系中检测到 12 个突变,包括 4 个新突变。7 名患者的骨骼肌标本可用于研究,6 名患者进行了骨骼肌呼吸链酶活性的检测,其中 3 名患者的酶活性降低。对 5 名患者的骨骼肌 mtDNA 含量进行了定量分析,结果显示每个患者的 mtDNA 含量均明显减少。此外,我们总共总结了 52 例患者(包括以前报道的)的分子和临床特征,总结了总共 36 个 TK2 突变。临床上,所有患者均存在肌张力低下和近端肌无力的主要表型。综上所述,我们的研究扩展了 TK2 缺乏相关的分子和临床谱。