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Improved PCR performance and fidelity of double mutant Neq A523R/N540R DNA polymerase
Institution:1. Department of Biotechnology and Bioengineering, Sungkyunkwan University, Suwon 440-746, Republic of Korea;2. Department of Biological Science, Sungkyunkwan University, Suwon 440-746, Republic of Korea;1. Baxter Innovations GmbH, Benatzkygasse 2-6, 1220 Vienna, Austria;2. Baxter Innovations GmbH, DC Tower, Donau-City-Straße 7, 1220 Vienna, Austria;1. Institut Pasteur, Department of Structural Biology and Chemistry, Laboratory for Bioorganic Chemistry of Nucleic Acids, CNRS UMR3523, 28, rue du Docteur Roux, 75724 Paris Cedex 15, France;2. Department of Process Chemistry & Catalysis, F. Hoffmann-La Roche Ltd, 4070 Basel, Switzerland;3. Pharma Research and Early Development, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd., Grenzacherstrasse 124, 4070 Basel, Switzerland
Abstract:We previously reported that Neq A523R DNA polymerase is more efficient in PCR than wild-type Neq DNA polymerase, and amplifies products more rapidly. Neq A523R DNA polymerase also amplifies templates more rapidly than Pfu DNA polymerase, but has a lower fidelity than Pfu DNA polymerase. To improve product yield and the fidelity of amplification simultaneously, we constructed and characterized the double mutant Neq A523R/N540R. The yield of PCR products was greater for Neq A523R/N540R DNA polymerase than wild-type and other mutant DNA polymerases, and the Neq double mutant catalyzed amplification of a 12-kb PCR product from a lambda template with an extension time of 3 min. The PCR error rate of Neq A523R/N540R DNA polymerase (6.3 × 10−5) was roughly similar to that of Pfu DNA polymerase (4.8 × 10−5), but much lower than those of wild-type Neq DNA polymerase (57.2 × 10−5), Neq A523R DNA polymerase (13.1 × 10−5), and Neq N540R DNA polymerase (37.7 × 10−5). These results indicated that A523R and N540R mutations of Neq DNA polymerase had synergistic effects on its fidelity.
Keywords:Polymerase chain reaction (PCR)  PCR amplification  Fidelity
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