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Keyword
- conformational change2
- MD2
- 7-diethylamino-3-((((2-maleimidyl)ethyl)amino)carbonyl) coumarin1
- catalytic Mg2+1
- deoxynucleoside triphosphate1
- DNA polymerase1
- DNA replication1
- dNTP1
- dTTP1
- ED1
- EDdd1
- enzyme catalysis1
- enzyme kinetics1
- enzyme specificity1
- enzyme-DNA complex1
- enzyme-DNA complex with a dideoxy-terminated primer strand1
- fluorescence1
- HIV reverse transcriptase1
- HIV-RT1
- HIVRT1
- human immunodeficiency virus reverse transcriptase1
- MDCC1
- MgA1
- MgB1
DNA and Chromosomes
2 Results
- Research ArticleOpen Access
Conformational dynamics during misincorporation and mismatch extension defined using a DNA polymerase with a fluorescent artificial amino acid
Journal of Biological ChemistryVol. 298Issue 1101451Published online: November 25, 2021- Tyler L. Dangerfield
- Serdal Kirmizialtin
- Kenneth A. Johnson
Cited in Scopus: 2High-fidelity DNA polymerases select the correct nucleotide over the structurally similar incorrect nucleotides with extremely high specificity while maintaining fast rates of incorporation. Previous analysis revealed the conformational dynamics and complete kinetic pathway governing correct nucleotide incorporation using a high-fidelity DNA polymerase variant containing a fluorescent unnatural amino acid. Here we extend this analysis to investigate the kinetics of nucleotide misincorporation and mismatch extension. - Research Article Editors' PickOpen Access
Kinetic and thermodynamic analysis defines roles for two metal ions in DNA polymerase specificity and catalysis
Journal of Biological ChemistryVol. 296100184Published online: December 16, 2020- Shanzhong Gong
- Serdal Kirmizialtin
- Adrienne Chang
- Joshua E. Mayfield
- Yan Jessie Zhang
- Kenneth A. Johnson
Cited in Scopus: 5Magnesium ions play a critical role in catalysis by many enzymes and contribute to the fidelity of DNA polymerases through a two-metal ion mechanism. However, specificity is a kinetic phenomenon and the roles of Mg2+ ions in each step in the catalysis have not been resolved. We first examined the roles of Mg2+ by kinetic analysis of single nucleotide incorporation catalyzed by HIV reverse transcriptase. We show that Mg.dNTP binding induces an enzyme conformational change at a rate that is independent of free Mg2+ concentration.