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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Identification and characterization of two critical sequences in SV40PolyA that activate the green fluorescent protein reporter gene
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Identification and characterization of two critical sequences in SV40PolyA that activate the green fluorescent protein reporter gene

机译:鉴定和鉴定SV40PolyA中激活绿色荧光蛋白报告基因的两个关键序列

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摘要

Alu repeats or Line-1-ORF2 (ORF2) inhibit expression of the green fluorescent protein (GFP) gene when inserted downstream of this gene in the vector pEGFP-C1. In this work, we studied cis-acting elements that eliminated the repression of GFP gene expression induced by Alu and ORF2 and sequence characteristics of these elements. We found that sense and antisense PolyA of simian virus 40 (SV40PolyA, 240 bp) eliminated the repression of GFP gene expression when inserted between the GFP gene and the Alu (283 bp) repeats or ORF2 (3825 bp) in pAlu14 (14 tandem Alu repeats were inserted downstream of the GFP gene in the vector pEGFP-C1) or pORF2. Antisense SV40PolyA (PolyAas) induced stronger gene expression than its sense orientation (PolyA). Of four 60-bp segments of PolyAas (1F1R, 2F2R, 3F3R and 4F4R) inserted independently into pAlu14, only two (2F2R and 3F3R) eliminated the inhibition of GFP gene expression induced by Alu repeats. Deletion analysis revealed that a 17 nucleotide AT repeat (17ntAT; 5'-AAAAAAATGCTTTATTT-3') in 2F2R and the fragment 3F38d9 (5'-ATAAACAAGTTAACAACA ACAATTGCATT-3') in 3F3R were critical sequences for activating the GFP gene. Sequence and structural analyses showed that 17ntAT and 3F38d9 included imperfect palindromes and may form a variety of unstable stem-loops. We suggest that the presence of imperfect palindromes and unstable stem-loops in DNA enhancer elements plays an important role in GFP gene activation.
机译:当插入载体pEGFP-C1中时,Alu重复序列或Line-1-ORF2(ORF2)抑制绿色荧光蛋白(GFP)基因的表达。在这项工作中,我们研究了顺式作用元件,该元件消除了Alu和ORF2诱导的GFP基因表达的阻遏以及这些元件的序列特征。我们发现猿猴病毒40(SV40PolyA,240 bp)的有义和反义PolyA插入GFP基因与pAlu14(14串联Alu)中的Alu(283 bp)重复序列或ORF2(3825 bp)之间时,消除了GFP基因表达的抑制。将重复序列插入载体pEGFP-C1)或pORF2中GFP基因的下游。反义SV40PolyA(PolyAas)诱导的基因表达比其有义方向(PolyA)更强。独立插入pAlu14的PolyAas的四个60 bp片段(1F1R,2F2R,3F3R和4F4R)中,只有两个(2F2R和3F3R)消除了Alu重复序列诱导的GFP基因表达的抑制。缺失分析显示2F2R中的17个核苷酸的AT重复序列(17ntAT; 5'-AAAAAAATGCTTTATTT-3')和3F3R中的片段3F38d9(5'-ATAAACAAGTTAACAACA ACAATTGCATT-3')是激活GFP基因的关键序列。序列和结构分析表明17ntAT和3F38d9包括不完善的回文,并可能形成各种不稳定的茎环。我们建议DNA增强子元件中不完善的回文和不稳定的茎环的存在在GFP基因激活中起重要作用。

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