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Mutagenesis
This category presents widely useful methods for random or site-specific, chemical or enzymatic, in vitro or in vivo mutagenesis.
Citations 51-60 of 81 total displayed.
- Articles
Taq DNA polymerase slippage mutation rates measured by PCR and quasi-likelihood analysis: (CA/GT)n and (A/T)n microsatellites
- Deepali Shinde, Yinglei Lai, Fengzhu Sun, and Norman Arnheim
Nucleic Acids Res. 2003; 31: 974-980.
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- NAR Methods Online
Random DNA fragmentation with endonuclease V: application to DNA shuffling
- Kentaro Miyazaki
Nucleic Acids Res. 2002; 30: e139.
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- Articles
Investigating the target recognition of DNA cytosine-5 methyltransferase HhaI by library selection using in vitro compartmentalisation
- Yin-Fai Lee, Dan S. Tawfik, and Andrew D. Griffiths
Nucleic Acids Res. 2002; 30: 4937-4944.
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- NAR Methods Online
Production of combinatorial libraries of fused genes by sequential transposition reactions
- Todd A. Naumann, Igor Y. Goryshin, and William S. Reznikoff
Nucleic Acids Res. 2002; 30: e119.
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- NAR Methods Online
Designing gene libraries from protein profiles for combinatorial protein experiments
- Wei Wang and Jeffery G. Saven
Nucleic Acids Res. 2002; 30: e120.
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- NAR Methods Online
Novel ceftazidime-resistance ß-lactamases generated by a codon-based mutagenesis method and selection
- Paul Gaytán, Joel Osuna, and Xavier Soberón
Nucleic Acids Res. 2002; 30: e84.
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- NAR Methods Online
Generating segmental mutations in haloalkane dehalogenase: a novel part in the directed evolution toolbox
- Mariël G. Pikkemaat and Dick B. Janssen
Nucleic Acids Res. 2002; 30: e35.
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- Articles
Mitochondrial DNA deletion mutations are concomitant with ragged red regions of individual, aged muscle fibers: analysis by laser-capture microdissection
- Zhengjin Cao, Jonathan Wanagat, Susan H. McKiernan, and Judd M. Aiken
Nucleic Acids Res. 2001; 29: 4502-4508.
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- NAR Methods Online
Random multi-recombinant PCR for the construction of combinatorial protein libraries
- Toru Tsuji, Michiko Onimaru, and Hiroshi Yanagawa
Nucleic Acids Res. 2001; 29: e97.
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- NAR Methods Online
Quantitative target display: a method to screen yeast mutants conferring quantitative phenotypes by mutant DNA fingerprints
- Vishva Mitra Sharma, Rohini Chopra, Indrani Ghosh, and K. Ganesan
Nucleic Acids Res. 2001; 29: e86.
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