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1
Analysis of mutations in the XPD gene in Italian patients with trichothiodystrophy: site of mutation correlates with repair deficiency, but gene dosage appears to determine clinical severity.意大利毛发硫营养不良患者XPD基因突变分析:突变位点与修复缺陷相关,但基因剂量似乎决定临床严重程度。
Am J Hum Genet. 1998 Oct;63(4):1036-48. doi: 10.1086/302063.
2
A mutation in the XPB/ERCC3 DNA repair transcription gene, associated with trichothiodystrophy.一种与毛发硫营养不良相关的XPB/ERCC3 DNA修复转录基因突变。
Am J Hum Genet. 1997 Feb;60(2):320-9.
3
The cancer-free phenotype in trichothiodystrophy is unrelated to its repair defect.毛发硫营养不良症中的无癌表型与其修复缺陷无关。
Cancer Res. 2000 Jan 15;60(2):431-8.
4
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5
Two individuals with features of both xeroderma pigmentosum and trichothiodystrophy highlight the complexity of the clinical outcomes of mutations in the XPD gene.两名兼具着色性干皮病和毛发硫营养不良特征的个体突显了XPD基因突变临床结果的复杂性。
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6
Xeroderma pigmentosum and trichothiodystrophy are associated with different mutations in the XPD (ERCC2) repair/transcription gene.着色性干皮病和毛发硫营养不良与XPD(ERCC2)修复/转录基因中的不同突变相关。
Proc Natl Acad Sci U S A. 1997 Aug 5;94(16):8658-63. doi: 10.1073/pnas.94.16.8658.
7
Reduced level of the repair/transcription factor TFIIH in trichothiodystrophy.毛发硫营养不良症中修复/转录因子TFIIH水平降低。
Hum Mol Genet. 2002 Nov 1;11(23):2919-28. doi: 10.1093/hmg/11.23.2919.
8
Functional and molecular genetic analyses of nine newly identified XPD-deficient patients reveal a novel mutation resulting in TTD as well as in XP/CS complex phenotypes.对 9 名新鉴定的 XPD 缺陷患者进行功能和分子遗传学分析,揭示了一种新的突变,导致 TTD 以及 XP/CS 复合表型。
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9
Comparative study of nucleotide excision repair defects between XPD-mutated fibroblasts derived from trichothiodystrophy and xeroderma pigmentosum patients.毛发硫营养不良和着色性干皮病患者来源的XPD突变成纤维细胞核苷酸切除修复缺陷的比较研究。
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10
Persistence of repair proteins at unrepaired DNA damage distinguishes diseases with ERCC2 (XPD) mutations: cancer-prone xeroderma pigmentosum vs. non-cancer-prone trichothiodystrophy.修复蛋白在未修复的DNA损伤处持续存在,这区分了伴有ERCC2(XPD)突变的疾病:易患癌症的着色性干皮病与不易患癌症的毛发硫营养不良。
Hum Mutat. 2008 Oct;29(10):1194-208. doi: 10.1002/humu.20768.

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A Japanese girl with mild xeroderma pigmentosum group D neurological disease diagnosed using whole-exome sequencing.一名使用全外显子组测序诊断为患有轻度D组着色性干皮病神经病变的日本女孩。
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Deep phenotyping of 89 xeroderma pigmentosum patients reveals unexpected heterogeneity dependent on the precise molecular defect.对89名着色性干皮病患者的深度表型分析揭示了取决于精确分子缺陷的意外异质性。
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意大利毛发硫营养不良患者XPD基因突变分析:突变位点与修复缺陷相关,但基因剂量似乎决定临床严重程度。

Analysis of mutations in the XPD gene in Italian patients with trichothiodystrophy: site of mutation correlates with repair deficiency, but gene dosage appears to determine clinical severity.

作者信息

Botta E, Nardo T, Broughton B C, Marinoni S, Lehmann A R, Stefanini M

机构信息

Istituto di Genetica Biochimica ed Evoluzionistica CNR, Pavia, Italy.

出版信息

Am J Hum Genet. 1998 Oct;63(4):1036-48. doi: 10.1086/302063.

DOI:10.1086/302063
PMID:9758621
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1377495/
Abstract

Xeroderma pigmentosum (XP) complementation group D is a heterogeneous group, containing patients with XP alone, rare cases with both XP and Cockayne syndrome, and patients with trichothiodystrophy (TTD). TTD is a rare autosomal recessive multisystem disorder associated, in many patients, with a defect in nucleotide-excision repair; but in contrast to XP patients, TTD patients are not cancer prone. In most of the repair-deficient TTD patients, the defect has been assigned to the XPD gene. The XPD gene product is a subunit of transcription factor TFIIH, which is involved in both DNA repair and transcription. We have determined the mutations and the pattern of inheritance of the XPD alleles in the 11 cases identified in Italy so far, in which the hair abnormalities diagnostic for TTD are associated with different disease severity but similar cellular photosensitivity. We have identified eight causative mutations, of which four have not been described before, either in TTD or XP cases, supporting the hypothesis that the mutations responsible for TTD are different from those found in other pathological phenotypes. Arg112his was the most common alteration in the Italian patients, of whom five were homozygotes and two were heterozygotes, for this mutation. The presence of a specifically mutated XPD allele, irrespective of its homozygous, hemizygous, or heterozygous condition, was always associated with the same degree of cellular UV hypersensitivity. Surprisingly, however, the severity of the clinical symptoms did not correlate with the magnitude of the DNA-repair defect. The most severe clinical features were found in patients who appear to be functionally hemizygous for the mutated allele.

摘要

着色性干皮病(XP)互补组D是一个异质性群体,包括仅患有XP的患者、同时患有XP和科凯恩综合征的罕见病例以及毛发硫营养不良(TTD)患者。TTD是一种罕见的常染色体隐性多系统疾病,在许多患者中与核苷酸切除修复缺陷有关;但与XP患者不同的是,TTD患者不易患癌症。在大多数修复缺陷型TTD患者中,缺陷已被定位到XPD基因。XPD基因产物是转录因子TFIIH的一个亚基,它参与DNA修复和转录。我们已经确定了迄今为止在意大利确诊的11例病例中XPD等位基因的突变情况和遗传模式,这些病例中TTD的毛发异常与不同的疾病严重程度相关,但细胞对光的敏感性相似。我们鉴定出了8个致病突变,其中4个在TTD或XP病例中此前未曾描述过,这支持了导致TTD的突变与其他病理表型中发现的突变不同的假设。Arg112his是意大利患者中最常见的改变,其中5例为此突变的纯合子,2例为杂合子。无论其为纯合、半合或杂合状态,特定突变的XPD等位基因的存在总是与相同程度的细胞紫外线超敏反应相关。然而,令人惊讶的是,临床症状的严重程度与DNA修复缺陷的程度并不相关。最严重的临床特征出现在似乎对突变等位基因功能上半合子的患者中。