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转录水平升高会在一个超突变细胞系中诱导更高的突变率。

Increased transcription levels induce higher mutation rates in a hypermutating cell line.

作者信息

Bachl J, Carlson C, Gray-Schopfer V, Dessing M, Olsson C

机构信息

Basel Institute for Immunology, Basel, Switzerland.

出版信息

J Immunol. 2001 Apr 15;166(8):5051-7. doi: 10.4049/jimmunol.166.8.5051.

Abstract

Somatic hypermutation, in addition to V(D)J recombination, is the other major mechanism that generates the vast diversity of the Ab repertoire. Point mutations are introduced in the variable region of the Ig genes at a million-fold higher rate than in the rest of the genome. We have used a green fluorescent protein (GFP)-based reversion assay to determine the role of transcription in the mutation mechanism of the hypermutating cell line 18-81. A GFP transgene containing a premature stop codon is transcribed from the inducible tet-on operon. Using the inducible promoter enables us to study the mutability of the GFP transgene at different transcription levels. By analyzing stable transfectants of a hypermutating cell line with flow cytometry, the mutation rate at the premature stop codon can be measured by the appearance of GFP-positive revertant cells. Here we show that the mutation rate of the GFP transgene correlates with its transcription level. Increased transcription levels of the GFP transgene caused an increased point mutation rate at the premature stop codon. Treating a hypermutating transfection clone with trichostatin A, a specific inhibitor of histone deacetylase, caused an additional 2-fold increase in the mutation rate. Finally, using Northern blot analysis we show that the activation-induced cytidine deaminase, an essential trans-factor for the in vivo hypermutation mechanism, is transcribed in the hypermutating cell line 18-81.

摘要

除了V(D)J重组外,体细胞超突变是产生抗体库巨大多样性的另一个主要机制。Ig基因可变区内引入点突变的速率比基因组其他区域高百万倍。我们使用基于绿色荧光蛋白(GFP)的回复分析来确定转录在超突变细胞系18-81突变机制中的作用。一个含有提前终止密码子的GFP转基因从可诱导的四环素调控元件(tet-on)操纵子转录。使用可诱导启动子使我们能够研究不同转录水平下GFP转基因的可突变性。通过用流式细胞术分析超突变细胞系的稳定转染子,提前终止密码子处的突变率可通过GFP阳性回复细胞的出现来测量。在此我们表明,GFP转基因的突变率与其转录水平相关。GFP转基因转录水平的提高导致提前终止密码子处的点突变率增加。用组蛋白脱乙酰酶特异性抑制剂曲古抑菌素A处理一个超突变转染克隆,使突变率额外增加了2倍。最后,使用Northern印迹分析,我们表明激活诱导的胞苷脱氨酶(体内超突变机制的一种必需反式因子)在超突变细胞系18-81中被转录。

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