Abstract
We have analyzed a systematic flaw in the current system of gene identification: the oligo(dT) primer widely used for cDNA synthesis generates a high frequency of truncated cDNAs through internal poly(A) priming. Such truncated cDNAs may contribute to 12% of the expressed sequence tags in the current dbEST database. By using a synthetic transcript and real mRNA templates as models, we characterized the patterns of internal poly(A) priming by oligo(dT) primer. We further demonstrated that the internal poly(A) priming can be effectively diminished by replacing the oligo(dT) primer with a set of anchored oligo(dT) primers for reverse transcription. Our study indicates that cDNAs designed for genomewide gene identification should be synthesized by use of the anchored oligo(dT) primers, rather than the oligo(dT) primers, to diminish the generation of truncated cDNAs caused by internal poly(A) priming.
MeSH Terms
Animals
Cloning, Molecular
DNA, Complementary/genetics,metabolism
Databases as Topic
Dose-Response Relationship, Drug
Expressed Sequence Tags
Humans
Models, Genetic
Oligodeoxyribonucleotides/genetics
Poly A/genetics
Polymerase Chain Reaction
RNA, Messenger/metabolism
Sequence Analysis, DNA
Transcription, Genetic
Chemicals
DNA, Complementary
Oligodeoxyribonucleotides
RNA, Messenger
oligo (dT)
Poly A
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Nam Douglas Kyung
Department of Medicine, Center for Functional Genomics, University of Chicago, 5841 South Maryland Avenue, MC2115, Chicago, IL 60637, USA.
Lee Sanggyu
Zhou Guolin
Cao Xiaohong
Wang Clarence
Clark Terry
Chen Jianjun
Rowley Janet D
Wang San Ming
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