A computer program for choosing optimal oligonudeotides for filter hybridization, sequencing and in vitro amplification of DNA

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Abstract

A method is presented for choosing optimal oligodeoxyribonucleotides as probes for filter hybridization, primers for sequencing, or primers for DNA amplification. Three main factors that determine the quality of a probe are considered: stability of the duplex formed between the probe and target nucleic acid, specificity of the probe for the intended target sequence, and self-complementarity. DNA duplex stability calculations are based on the nearest-neighbor thermodynamic values determined by Breslauer et al. [Proc. Natl. Acad. Sci. U.S.A. (1986), 83: 3746]. Temperatures of duplex dissociation predicted by the method described here were within 0.4°C of the values obtained experimentally for ten oligonucleotides. Calculations for specificity of the probe and its self-complementarity are based on a simple dynamic algorithm. © 1989 IRL Press.

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Rychlik, W., & Rhoads, R. E. (1989). A computer program for choosing optimal oligonudeotides for filter hybridization, sequencing and in vitro amplification of DNA. Nucleic Acids Research, 17(21), 8543–8551. https://doi.org/10.1093/nar/17.21.8543

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