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Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA

We synthesized C5-modified analogs of 2′-deoxyuridine triphosphate and 2′-deoxycytidine triphosphate and investigated them as substrates for PCRs using Taq, Tth, Vent(exo-), KOD Dash and KOD(exo-) polymerases and pUC 18 plasmid DNA as a template. These assays were performed on two different amplifyi...

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Detalles Bibliográficos
Autores principales: Kuwahara, Masayasu, Nagashima, Jun-ichi, Hasegawa, Masatoshi, Tamura, Takehiro, Kitagata, Rina, Hanawa, Kazuo, Hososhima, Shin-ichi, Kasamatsu, Toshiyuki, Ozaki, Hiroaki, Sawai, Hiroaki
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1636466/
https://www.ncbi.nlm.nih.gov/pubmed/17012278
http://dx.doi.org/10.1093/nar/gkl637
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author Kuwahara, Masayasu
Nagashima, Jun-ichi
Hasegawa, Masatoshi
Tamura, Takehiro
Kitagata, Rina
Hanawa, Kazuo
Hososhima, Shin-ichi
Kasamatsu, Toshiyuki
Ozaki, Hiroaki
Sawai, Hiroaki
author_facet Kuwahara, Masayasu
Nagashima, Jun-ichi
Hasegawa, Masatoshi
Tamura, Takehiro
Kitagata, Rina
Hanawa, Kazuo
Hososhima, Shin-ichi
Kasamatsu, Toshiyuki
Ozaki, Hiroaki
Sawai, Hiroaki
author_sort Kuwahara, Masayasu
collection PubMed
description We synthesized C5-modified analogs of 2′-deoxyuridine triphosphate and 2′-deoxycytidine triphosphate and investigated them as substrates for PCRs using Taq, Tth, Vent(exo-), KOD Dash and KOD(exo-) polymerases and pUC 18 plasmid DNA as a template. These assays were performed on two different amplifying regions of pUC18 with different T/C contents that are expected to have relatively high barriers for incorporation of either modified dU or dC. On the basis of 260 different assays (26 modified triphosphates × 5 DNA polymerases × 2 amplifying regions), it appears that generation of the full-length PCR product depends not only on the chemical structures of the substitution and the nature of the polymerase but also on whether the substitution is on dU or dC. Furthermore, the template sequence greatly affected generation of the PCR product, depending on the combination of the DNA polymerase and modified triphosphate. By examining primer extension reactions using primers and templates containing C5-modified dUs, we found that a modified dU at the 3′ end of the elongation strand greatly affects the catalytic efficiency of DNA polymerases, whereas a modified dU opposite the elongation site on the template strand has less of an influence on the catalytic efficiency.
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spelling pubmed-16364662006-11-29 Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA Kuwahara, Masayasu Nagashima, Jun-ichi Hasegawa, Masatoshi Tamura, Takehiro Kitagata, Rina Hanawa, Kazuo Hososhima, Shin-ichi Kasamatsu, Toshiyuki Ozaki, Hiroaki Sawai, Hiroaki Nucleic Acids Res Molecular Biology We synthesized C5-modified analogs of 2′-deoxyuridine triphosphate and 2′-deoxycytidine triphosphate and investigated them as substrates for PCRs using Taq, Tth, Vent(exo-), KOD Dash and KOD(exo-) polymerases and pUC 18 plasmid DNA as a template. These assays were performed on two different amplifying regions of pUC18 with different T/C contents that are expected to have relatively high barriers for incorporation of either modified dU or dC. On the basis of 260 different assays (26 modified triphosphates × 5 DNA polymerases × 2 amplifying regions), it appears that generation of the full-length PCR product depends not only on the chemical structures of the substitution and the nature of the polymerase but also on whether the substitution is on dU or dC. Furthermore, the template sequence greatly affected generation of the PCR product, depending on the combination of the DNA polymerase and modified triphosphate. By examining primer extension reactions using primers and templates containing C5-modified dUs, we found that a modified dU at the 3′ end of the elongation strand greatly affects the catalytic efficiency of DNA polymerases, whereas a modified dU opposite the elongation site on the template strand has less of an influence on the catalytic efficiency. Oxford University Press 2006-11 2006-09-29 /pmc/articles/PMC1636466/ /pubmed/17012278 http://dx.doi.org/10.1093/nar/gkl637 Text en © 2006 The Author(s)
spellingShingle Molecular Biology
Kuwahara, Masayasu
Nagashima, Jun-ichi
Hasegawa, Masatoshi
Tamura, Takehiro
Kitagata, Rina
Hanawa, Kazuo
Hososhima, Shin-ichi
Kasamatsu, Toshiyuki
Ozaki, Hiroaki
Sawai, Hiroaki
Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA
title Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA
title_full Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA
title_fullStr Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA
title_full_unstemmed Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA
title_short Systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for DNA polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified DNA
title_sort systematic characterization of 2′-deoxynucleoside- 5′-triphosphate analogs as substrates for dna polymerases by polymerase chain reaction and kinetic studies on enzymatic production of modified dna
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1636466/
https://www.ncbi.nlm.nih.gov/pubmed/17012278
http://dx.doi.org/10.1093/nar/gkl637
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