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TFIIH转录/DNA修复因子的亚极限浓度会导致毛发硫营养不良症(TTD-A型)。

Sublimiting concentration of TFIIH transcription/DNA repair factor causes TTD-A trichothiodystrophy disorder.

作者信息

Vermeulen W, Bergmann E, Auriol J, Rademakers S, Frit P, Appeldoorn E, Hoeijmakers J H, Egly J M

机构信息

Department of Cell Biology and Genetics, Medical Genetics Center, Erasmus University Rotterdam, The Netherlands.

出版信息

Nat Genet. 2000 Nov;26(3):307-13. doi: 10.1038/81603.

Abstract

The repair-deficient form of trichothiodystrophy (TTD) most often results from mutations in the genes XPB or XPD, encoding helicases of the transcription/repair factor TFIIH. The genetic defect in a third group, TTD-A, is unknown, but is also caused by dysfunctioning TFIIH. None of the TFIIH subunits carry a mutation and TFIIH from TTD-A cells is active in both transcription and repair. Instead, immunoblot and immunofluorescence analyses reveal a strong reduction in the TFIIH concentration. Thus, the phenotype of TTD-A appears to result from sublimiting amounts of TFIIH, probably due to a mutation in a gene determining the complex stability. The reduction of TFIIH mainly affects its repair function and hardly influences transcription.

摘要

毛发硫营养不良(TTD)的修复缺陷型最常由编码转录/修复因子TFIIH解旋酶的XPB或XPD基因突变引起。第三组TTD-A的遗传缺陷尚不清楚,但也由功能失调的TFIIH引起。TFIIH的亚基均未发生突变,来自TTD-A细胞的TFIIH在转录和修复中均具有活性。相反,免疫印迹和免疫荧光分析显示TFIIH浓度大幅降低。因此,TTD-A的表型似乎是由于TFIIH量不足所致,这可能是由于决定复合物稳定性的基因突变所致。TFIIH的减少主要影响其修复功能,而对转录影响不大。

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