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差异多聚腺苷酸化对中国仓鼠肺细胞中二氢叶酸还原酶编码基因表达的影响。

The effects of differential polyadenylation on expression of the dihydrofolate reductase-encoding gene in Chinese hamster lung cells.

作者信息

Yang H, Hussain A, Melera P W

机构信息

Graduate Program in Molecular and Cell Biology, University of Maryland, Baltimore, MD 21201, USA.

出版信息

Gene. 1995 Oct 3;163(2):185-91. doi: 10.1016/0378-1119(95)00381-f.

Abstract

Three differently sized mRNAs are expressed from each of two DHFR (encoding dihydrofolate reductase) alleles present in the Chinese hamster lung (CHL) cell line, DC-3F. The relative abundancy of the transcripts produced from each allele differs dramatically as a result of differential utilization of the multiple poly(A) sites present in the DHFR DHFR gene and a genetic polymorphism located within the third poly(A) signal of one allele. We sought to determine whether such differences in polyadenylation affect the steady-state levels of DHFR and mRNAs expressed from either allele and, in a more general sense, to ask whether differences in 3' end RNA processing in a gene containing multiple poly(A) sites affects the final level of gene expression. An SV40 promoter-based transient expression system producing chimeric cat::DHFR transcripts was developed to regenerate the in vivo mRNA polyadenylation patterns associated with each of the two DHFR alleles. The results demonstrate that the total amount of polyadenylated RNA expressed from each of these constructs in vitro is the same regardless of the differential utilization of the poly(A) signals that occurs between them. Moreover, measurement of the individual turnover rates of the DHFR mRNAs expressed in vivo from each allele, as determined by pulse-chase labeling and actinomycin D inhibition studies, revealed no significant allele-specific differences in transcript half-lives. Finally, measuring the steady-state levels of DHFR poly(A)+ mRNA in parental DC-3F cells demonstrated that both alleles are expressed to the same extent during normal growth. Thus, even though dramatic allele-specific differences in 3' end processing of DHFR transcripts occur in vivo, such differences do not appear to influence the steady-state levels of DHFR gene expression.

摘要

中国仓鼠肺(CHL)细胞系DC - 3F中存在的两个二氢叶酸还原酶(DHFR)等位基因各自表达三种大小不同的mRNA。由于DHFR基因中存在多个聚腺苷酸化位点以及一个等位基因的第三个聚腺苷酸化信号内的基因多态性,每个等位基因产生的转录本相对丰度差异巨大。我们试图确定聚腺苷酸化的这种差异是否会影响DHFR的稳态水平以及任一等位基因表达的mRNA,更普遍地说,是想问在一个含有多个聚腺苷酸化位点的基因中,3'端RNA加工的差异是否会影响基因表达的最终水平。开发了一种基于SV40启动子的瞬时表达系统,用于产生嵌合的cat::DHFR转录本,以重现与两个DHFR等位基因各自相关的体内mRNA聚腺苷酸化模式。结果表明,无论它们之间聚腺苷酸化信号的使用差异如何,这些构建体在体外表达的聚腺苷酸化RNA总量是相同的。此外,通过脉冲追踪标记和放线菌素D抑制研究确定的每个等位基因在体内表达的DHFR mRNA的个体周转率测量结果显示,转录本半衰期没有显著的等位基因特异性差异。最后,测量亲代DC - 3F细胞中DHFR聚腺苷酸化mRNA的稳态水平表明,在正常生长过程中两个等位基因的表达程度相同。因此,尽管在体内DHFR转录本的3'端加工存在显著的等位基因特异性差异,但这种差异似乎并不影响DHFR基因表达的稳态水平。

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