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Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency

The approach based on molecular modeling was developed to study dNTP derivatives characterized by new polymerase-specific properties. For this purpose, the relative efficiency of PCR amplification with modified dUTPs was studied using Taq, Tth, Pfu, Vent, Deep Vent, Vent (exo-), and Deep Vent (exo-)...

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Autores principales: Zasedateleva, Olga A., Surzhikov, Sergey A., Kuznetsova, Viktoriya E., Shershov, Valeriy E., Barsky, Victor E., Zasedatelev, Alexander S., Chudinov, Alexander V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10487964/
https://www.ncbi.nlm.nih.gov/pubmed/37686447
http://dx.doi.org/10.3390/ijms241713643
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author Zasedateleva, Olga A.
Surzhikov, Sergey A.
Kuznetsova, Viktoriya E.
Shershov, Valeriy E.
Barsky, Victor E.
Zasedatelev, Alexander S.
Chudinov, Alexander V.
author_facet Zasedateleva, Olga A.
Surzhikov, Sergey A.
Kuznetsova, Viktoriya E.
Shershov, Valeriy E.
Barsky, Victor E.
Zasedatelev, Alexander S.
Chudinov, Alexander V.
author_sort Zasedateleva, Olga A.
collection PubMed
description The approach based on molecular modeling was developed to study dNTP derivatives characterized by new polymerase-specific properties. For this purpose, the relative efficiency of PCR amplification with modified dUTPs was studied using Taq, Tth, Pfu, Vent, Deep Vent, Vent (exo-), and Deep Vent (exo-) DNA polymerases. The efficiency of PCR amplification with modified dUTPs was compared with the results of molecular modeling using the known 3D structures of KlenTaq polymerase–DNA–dNTP complexes. The dUTPs were C5-modified with bulky functional groups (the Cy5 dye analogs) or lighter aromatic groups. Comparing the experimental data and the results of molecular modeling revealed the decrease in PCR efficiency in the presence of modified dUTPs with an increase in the number of non-covalent bonds between the substituents and the DNA polymerase (about 15% decrease per one extra non-covalent bond). Generalization of the revealed patterns to all the studied polymerases of the A and B families is discussed herein. The number of non-covalent bonds between the substituents and polymerase amino acid residues is proposed to be a potentially variable parameter for regulating enzyme activity.
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spelling pubmed-104879642023-09-09 Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency Zasedateleva, Olga A. Surzhikov, Sergey A. Kuznetsova, Viktoriya E. Shershov, Valeriy E. Barsky, Victor E. Zasedatelev, Alexander S. Chudinov, Alexander V. Int J Mol Sci Article The approach based on molecular modeling was developed to study dNTP derivatives characterized by new polymerase-specific properties. For this purpose, the relative efficiency of PCR amplification with modified dUTPs was studied using Taq, Tth, Pfu, Vent, Deep Vent, Vent (exo-), and Deep Vent (exo-) DNA polymerases. The efficiency of PCR amplification with modified dUTPs was compared with the results of molecular modeling using the known 3D structures of KlenTaq polymerase–DNA–dNTP complexes. The dUTPs were C5-modified with bulky functional groups (the Cy5 dye analogs) or lighter aromatic groups. Comparing the experimental data and the results of molecular modeling revealed the decrease in PCR efficiency in the presence of modified dUTPs with an increase in the number of non-covalent bonds between the substituents and the DNA polymerase (about 15% decrease per one extra non-covalent bond). Generalization of the revealed patterns to all the studied polymerases of the A and B families is discussed herein. The number of non-covalent bonds between the substituents and polymerase amino acid residues is proposed to be a potentially variable parameter for regulating enzyme activity. MDPI 2023-09-04 /pmc/articles/PMC10487964/ /pubmed/37686447 http://dx.doi.org/10.3390/ijms241713643 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zasedateleva, Olga A.
Surzhikov, Sergey A.
Kuznetsova, Viktoriya E.
Shershov, Valeriy E.
Barsky, Victor E.
Zasedatelev, Alexander S.
Chudinov, Alexander V.
Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency
title Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency
title_full Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency
title_fullStr Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency
title_full_unstemmed Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency
title_short Non-Covalent Interactions between dUTP C5-Substituents and DNA Polymerase Decrease PCR Efficiency
title_sort non-covalent interactions between dutp c5-substituents and dna polymerase decrease pcr efficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10487964/
https://www.ncbi.nlm.nih.gov/pubmed/37686447
http://dx.doi.org/10.3390/ijms241713643
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