Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product

10.1021/ja902261a

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Main Authors: Watanabe, K., Hotta, K., Nakaya, M., Praseuth, A.P., Wang, C.C.C., Inada, D., Takahashi, K., Fukushi, E., Oguri, H., Oikawa, H.
Other Authors: BIOLOGICAL SCIENCES
Format: Article
Published: 2014
Online Access:http://scholarbank.nus.edu.sg/handle/10635/100601
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-1006012024-11-12T23:53:29Z Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product Watanabe, K. Hotta, K. Nakaya, M. Praseuth, A.P. Wang, C.C.C. Inada, D. Takahashi, K. Fukushi, E. Oguri, H. Oikawa, H. BIOLOGICAL SCIENCES 10.1021/ja902261a Journal of the American Chemical Society 131 26 9347-9353 JACSA 2014-10-27T08:27:39Z 2014-10-27T08:27:39Z 2009-07-08 Article Watanabe, K., Hotta, K., Nakaya, M., Praseuth, A.P., Wang, C.C.C., Inada, D., Takahashi, K., Fukushi, E., Oguri, H., Oikawa, H. (2009-07-08). Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product. Journal of the American Chemical Society 131 (26) : 9347-9353. ScholarBank@NUS Repository. https://doi.org/10.1021/ja902261a 00027863 http://scholarbank.nus.edu.sg/handle/10635/100601 000267633300050 Scopus
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
description 10.1021/ja902261a
author2 BIOLOGICAL SCIENCES
author_facet BIOLOGICAL SCIENCES
Watanabe, K.
Hotta, K.
Nakaya, M.
Praseuth, A.P.
Wang, C.C.C.
Inada, D.
Takahashi, K.
Fukushi, E.
Oguri, H.
Oikawa, H.
format Article
author Watanabe, K.
Hotta, K.
Nakaya, M.
Praseuth, A.P.
Wang, C.C.C.
Inada, D.
Takahashi, K.
Fukushi, E.
Oguri, H.
Oikawa, H.
spellingShingle Watanabe, K.
Hotta, K.
Nakaya, M.
Praseuth, A.P.
Wang, C.C.C.
Inada, D.
Takahashi, K.
Fukushi, E.
Oguri, H.
Oikawa, H.
Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
author_sort Watanabe, K.
title Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
title_short Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
title_full Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
title_fullStr Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
title_full_unstemmed Escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
title_sort escherichia coli allows efficient modular incorporation of newly isolated quinomycin biosynthetic enzyme into echinomycin biosynthetic pathway for rational design and synthesis of potent antibiotic unnatural natural product
publishDate 2014
url http://scholarbank.nus.edu.sg/handle/10635/100601
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