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Both XPD alleles contribute to the phenotype of compound heterozygote xeroderma pigmentosum patients

机译:这两个XPD等位基因均有助于复合杂合性干皮色素病患者的表型

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摘要

Mutations in the XPD subunit of the DNA repair/transcription factor TFIIH result in the rare recessive genetic disorder xeroderma pigmentosum (XP). Many XP patients are compound heterozygotes with a “causative” XPD point mutation R683W and different second mutant alleles, considered “null alleles.” However, there is marked clinical heterogeneity (including presence or absence of skin cancers or neurological degeneration) in these XPD/R683W patients, thus suggesting a contribution of the second allele. Here, we report XP patients carrying XPD/R683W and a second XPD allele either XPD/Q452X, /I455del, or /199insPP. We performed a systematic study of the effect of these XPD mutations on several enzymatic functions of TFIIH and found that each mutation exhibited unique biochemical properties. Although all the mutations inhibited the nucleotide excision repair (NER) by disturbing the XPD helicase function, each of them disrupted specific molecular steps during transcription: XPD/Q452X hindered the transactivation process, XPD/I455del disturbed RNA polymerase II phosphorylation, and XPD/199insPP inhibited kinase activity of the cdk7 subunit of TFIIH. The broad range and severity of clinical features in XP patients arise from a broad set of deficiencies in NER and transcription that result from the combination of mutations found on both XPD alleles.
机译:DNA修复/转录因子TFIIH的XPD亚基中的突变会导致罕见的隐性遗传疾病干性色素性皮肤病(XP)。许多XP患者是复合杂合子,具有“致病性” XPD点突变R683W和不同的第二突变等位基因,被认为是“无效等位基因”。但是,在这些XPD / R683W患者中存在明显的临床异质性(包括是否存在皮肤癌或神经系统变性),从而提示了第二等位基因的贡献。在这里,我们报道了XP患者携带XPD / R683W和第二个XPD等位基因XPD / Q452X,/ I455del或/ 199insPP。我们对这些XPD突变对TFIIH的几种酶功能的影响进行了系统的研究,发现每个突变都表现出独特的生化特性。尽管所有突变均通过干扰XPD解旋酶功能来抑制核苷酸切除修复(NER),但每个突变都破坏了转录过程中的特定分子步骤:XPD / Q452X阻碍了反式激活过程,XPD / I455del干扰了RNA聚合酶II的磷酸化,而XPD / 199insPP抑制TFIIH的cdk7亚基的激酶活性。 XP患者的临床特征的广泛范围和严重性是由于NER和转录方面的广泛缺陷而引起的,这是由于在两个XPD等位基因上发现的突变共同导致的。

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