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Comprehensive Profiling of Four Base Overhang Ligation Fidelity by T4 DNA Ligase and Application to DNA Assembly.
Potapov, Vladimir; Ong, Jennifer L; Kucera, Rebecca B; Langhorst, Bradley W; Bilotti, Katharina; Pryor, John M; Cantor, Eric J; Canton, Barry; Knight, Thomas F; Evans, Thomas C; Lohman, Gregory J S.
Afiliação
  • Potapov V; Research Department , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Ong JL; Research Department , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Kucera RB; Applications and Product Development , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Langhorst BW; Applications and Product Development , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Bilotti K; Research Department , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Pryor JM; Research Department , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Cantor EJ; Applications and Product Development , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Canton B; Ginkgo Bioworks , Boston , Massachusetts 02210 , United States.
  • Knight TF; Ginkgo Bioworks , Boston , Massachusetts 02210 , United States.
  • Evans TC; Research Department , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
  • Lohman GJS; Research Department , New England Biolabs , Ipswich , Massachusetts 01938 , United States.
ACS Synth Biol ; 7(11): 2665-2674, 2018 11 16.
Article em En | MEDLINE | ID: mdl-30335370
Synthetic biology relies on the manufacture of large and complex DNA constructs from libraries of genetic parts. Golden Gate and other Type IIS restriction enzyme-dependent DNA assembly methods enable rapid construction of genes and operons through one-pot, multifragment assembly, with the ordering of parts determined by the ligation of Watson-Crick base-paired overhangs. However, ligation of mismatched overhangs leads to erroneous assembly, and low-efficiency Watson Crick pairings can lead to truncated assemblies. Using sets of empirically vetted, high-accuracy junction pairs avoids this issue but limits the number of parts that can be joined in a single reaction. Here, we report the use of comprehensive end-joining ligation fidelity and bias data to predict high accuracy junction sets for Golden Gate assembly. The ligation profile accurately predicted junction fidelity in ten-fragment Golden Gate assembly reactions and enabled accurate and efficient assembly of a lac cassette from up to 24-fragments in a single reaction.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA / Biologia Sintética Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA / Biologia Sintética Idioma: En Ano de publicação: 2018 Tipo de documento: Article