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小鼠无毛基因中的一种新型错义突变导致不可逆脱发:Hr m1Enu的遗传和分子分析

A novel missense mutation in the mouse hairless gene causes irreversible hair loss: genetic and molecular analyses of Hr m1Enu.

作者信息

Nam YoonYi, Kim Jeong Ki, Cha Dal-Sun, Cho Jae-Woo, Cho Kyu-Hyuk, Yoon SeokJoo, Yoon Jong-Bok, Oh Yang-Seok, Suh Jun-Gyo, Han Sang-Seop, Song Chang-Woo, Yoon SungJoo Kim

机构信息

Laboratory of Toxicogenomics, Korea Institute of Toxicology, Taejon 305-600, Korea.

出版信息

Genomics. 2006 Apr;87(4):520-6. doi: 10.1016/j.ygeno.2005.12.005. Epub 2006 Feb 7.

Abstract

A novel autosomal recessive mutant was produced using N-ethyl-N-nitrosourea mutagenesis. The characteristics of the mutant mice included progressive irreversible hair loss within a month of birth, wrinkled skin, and long curved nails. Linkage analysis revealed that the causative gene is linked to D14Mit193 on chromosome 14. Sequence analysis of the complete cDNA of the candidate gene, hairless (Hr), identified a homozygous G-to-T transition at nucleotide 3572, leading to the substitution of glycine by tryptophan, designated Gly960Trp. This missense mutation occurs in the vicinity of repression domain 3 of the hairless protein (HR). This allele was named Hr(m1Enu). The relative amounts of Hr mRNA and HR protein determined by real-time PCR and Western blot analyses, respectively, were slightly elevated in the mutant mice. Quantitative real-time PCR analysis revealed the increased expression of Kc1 and Vdr in the mutant mice, whereas the expression of Nrs1 and Krtap16-6 was decreased. These results suggest that the Gly960Trp substitution in HR protein in Hr(m1Enu) mice may alter the function of HR as a transcriptional corepressor.

摘要

利用N-乙基-N-亚硝基脲诱变产生了一种新的常染色体隐性突变体。突变小鼠的特征包括出生后一个月内逐渐出现不可逆的脱发、皮肤起皱和长而弯曲的指甲。连锁分析表明,致病基因与14号染色体上的D14Mit193连锁。对候选基因无毛基因(Hr)的完整cDNA进行序列分析,发现在核苷酸3572处有一个纯合的G到T的转换,导致甘氨酸被色氨酸取代,命名为Gly960Trp。这种错义突变发生在无毛蛋白(HR)的抑制结构域3附近。这个等位基因被命名为Hr(m1Enu)。分别通过实时PCR和蛋白质免疫印迹分析测定的Hr mRNA和HR蛋白的相对含量在突变小鼠中略有升高。定量实时PCR分析显示,突变小鼠中Kc1和Vdr的表达增加,而Nrs1和Krtap16-6的表达降低。这些结果表明,Hr(m1Enu)小鼠HR蛋白中的Gly960Trp取代可能会改变HR作为转录共抑制因子的功能。

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