首页> 美国卫生研究院文献>American Journal of Human Genetics >Identification of point mutations in the steroid sulfatase gene of three patients with X-linked ichthyosis.
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Identification of point mutations in the steroid sulfatase gene of three patients with X-linked ichthyosis.

机译:鉴定三名X连锁鱼鳞病患者类固醇硫酸酯酶基因中的点突变。

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摘要

X-linked ichthyosis (XLI) is an inborn error of metabolism caused by steroid sulfatase (STS) deficiency. In more than 80% of XLI patients the enzyme deficiency is due to large deletions involving the entire STS gene and flanking sequences. However, some patients with the classical XLI phenotype and complete STS deficiency do not show any detectable deletions by Southern blot analysis using full-length STS cDNA as a probe. We have studied five unrelated patients who are such "nondeletion" mutants. Western blot analysis using anti-STS antibodies was performed on patients' fibroblast extracts and revealed absence of cross-reacting material. First-strand cDNA synthesis by reverse transcription from patients' RNA isolated from cultured fibroblasts and PCR amplification of overlapping segments of the entire STS polypeptide coding region were performed. Three point mutations were identified by chemical mismatch cleavage, sequenced by dideoxynucleotide chain-termination sequencing and confirmed by allele-specific oligonucleotide hybridization of the patients' genomic DNA. The mutations resulted in the substitution of a tryptophan for an arginine at codon 1319, changing a hydrophobic to a basic hydrophilic amino acid, the substitution of a cysteine for a tyrosine at codon 1542, potentially losing a disulfide bond, and the substitution of a serine for a leucine at codon 1237. These are the first point mutations to be documented in the STS gene and may allow insight into functionally important domains of the protein.
机译:X连锁鱼鳞病(XLI)是由于类固醇硫酸酯酶(STS)缺乏引起的先天性代谢错误。在80%以上的XLI患者中,酶缺乏症是由于涉及整个STS基因和侧翼序列的大缺失所致。但是,一些具有经典XLI表型和完全STS缺陷的患者通过使用全长STS cDNA作为探针的Southern印迹分析未显示任何可检测到的缺失。我们研究了五名不相关的患者,他们都是这种“非删除”突变体。对患者的成纤维细胞提取物进行了使用抗STS抗体的蛋白质印迹分析,结果发现不存在交叉反应物质。通过从培养的成纤维细胞中分离的患者RNA进行反转录,合成第一链cDNA,并对整个STS多肽编码区的重叠部分进行PCR扩增。通过化学错配切割鉴定三点突变,通过双脱氧核苷酸链终止测序进行测序,并通过患者基因组DNA的等位基因特异性寡核苷酸杂交进行确认。突变导致色氨酸在1319密码子处被精氨酸取代,疏水性变为碱性亲水性氨基酸,半胱氨酸在1542密码子处被酪氨酸取代,可能失去二硫键,以及丝氨酸的取代。密码子为1237的亮氨酸。这些是STS基因中记录的第一个点突变,可能使人们深入了解该蛋白的功能重要结构域。

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