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Single nucleotide primer extension: quantitative range, variability, and multiplex analysis.
Author(s) -
Alex D. Greenwood,
David Burke
Publication year - 1996
Publication title -
genome research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 9.556
H-Index - 297
eISSN - 1549-5469
pISSN - 1088-9051
DOI - 10.1101/gr.6.4.336
Subject(s) - biology , primer extension , genetics , allele , gene , locus (genetics) , primer (cosmetics) , multiplex , homologous chromosome , single nucleotide polymorphism , microbiology and biotechnology , nucleotide , genotype , chemistry , organic chemistry
The quantitative measurement of transcription products from homologous alleles at a diploid locus has broad application for the study of mammalian gene expression. Single nucleotide primer extension (SNuPE) analysis is a simple and sensitive method for allelic transcript discrimination requiring only 1 bp difference between alleles. In this study the effective range, experimental variation, and the influences of poly(dT)-primed and gene-specific reverse transcriptions are characterized. The ability to analyze several genes from a single reverse transcription reaction is assessed as well. For the genes examined, the maximum range of detection is reached when the minor transcript represents 1/250 of the major allele. Relatively little error is seen within or between assays and linearity of response is maintained over an approximately thousandfold range.

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