首页> 美国卫生研究院文献>other >Two RNAs or DNAs May Artificially Fuse Together at a Short Homologous Sequence (SHS) during Reverse Transcription or Polymerase Chain Reactions and Thus Reporting an SHS-Containing Chimeric RNA Requires Extra Caution
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Two RNAs or DNAs May Artificially Fuse Together at a Short Homologous Sequence (SHS) during Reverse Transcription or Polymerase Chain Reactions and Thus Reporting an SHS-Containing Chimeric RNA Requires Extra Caution

机译:在逆转录或聚合酶链反应过程中两个RNA或DNA可能在短的同源序列(SHS)上人工融合在一起因此报告含有SHS的嵌合RNA需要格外小心。

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摘要

Tens of thousands of chimeric RNAs have been reported. Most of them contain a short homologous sequence (SHS) at the joining site of the two partner genes but are not associated with a fusion gene. We hypothesize that many of these chimeras may be technical artifacts derived from SHS-caused mis-priming in reverse transcription (RT) or polymerase chain reactions (PCR). We cloned six chimeric complementary DNAs (cDNAs) formed by human mitochondrial (mt) 16S rRNA sequences at an SHS, which were similar to several expression sequence tags (ESTs).These chimeras, which could not be detected with cDNA protection assay, were likely formed because some regions of the 16S rRNA are reversely complementary to another region to form an SHS, which allows the downstream sequence to loop back and anneal at the SHS to prime the synthesis of its complementary strand, yielding a palindromic sequence that can form a hairpin-like structure.We identified a 16S rRNA that ended at the 4th nucleotide(nt) of the mt-tRNA-leu was dominant and thus should be the wild type. We also cloned a mouse Bcl2-Nek9 chimeric cDNA that contained a 5-nt unmatchable sequence between the two partners, contained two copies of the reverse primer in the same direction but did not contain the forward primer, making it unclear how this Bcl2-Nek9 was formed and amplified. Moreover, a cDNA was amplified because one primer has 4 nts matched to the template, suggesting that there may be many more artificial cDNAs than we have realized, because the nuclear and mt genomes have many more 4-nt than 5-nt or longer homologues. Altogether, the chimeric cDNAs we cloned are good examples suggesting that many cDNAs may be artifacts due to SHS-caused mis-priming and thus greater caution should be taken when new sequence is obtained from a technique involving DNA polymerization.
机译:已经报道了成千上万的嵌合RNA。它们中的大多数在两个伴侣基因的连接位点处含有短同源序列(SHS),但与融合基因无关。我们假设这些嵌合体中的许多可能是源自SHS引起的逆转录(RT)或聚合酶链反应(PCR)中的错误引物的技术伪像。我们在SHS上克隆了由人线粒体(mt)16S rRNA序列形成的六个嵌合互补DNA(cDNA),它们与几个表达序列标签(EST)相似。这些嵌合体很可能无法通过cDNA保护分析检测到。由于16S rRNA的某些区域与另一个区域反向互补以形成SHS而形成,该序列允许下游序列环回并在SHS退火以引发其互补链的合成,从而产生可以形成发夹的回文序列样结构。我们鉴定出一个在mt-tRNA-leu的第4个核苷酸末端终止的16S rRNA是显性的,因此应该是野生型。我们还克隆了一个小鼠Bcl2-Nek9嵌合cDNA,该cDNA包含两个伴侣之间的5nt不可匹配序列,在相同方向上包含两个拷贝的反向引物,但不包含正向引物,这使得该Bcl2-Nek9的表达方式不清楚形成并放大。此外,由于一个引物具有与模板匹配的4个核苷酸,因此扩增了cDNA,这表明可能存在的人工cDNA比我们想象的要多,这是因为核和mt基因组具有比5-nt或更长的同源物更多的4-nt。 。总之,我们克隆的嵌合cDNA是一个很好的例子,表明许多cDNA可能是由于SHS引起的错误引物造成的人工产物,因此从涉及DNA聚合的技术获得新序列时应格外小心。

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