Vitroprocines, new antibiotics against Acinetobacter baumannii, discovered from marine Vibrio sp. QWI-06 using mass-spectrometry-based metabolomics approach

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作者
Chih-Chuang Liaw
Pei-Chin Chen
Chao-Jen Shih
Sung-Pin Tseng
Ying-Mi Lai
Chi-Hsin Hsu
Pieter C. Dorrestein
Yu-Liang Yang
机构
[1] National Sun Yat-sen University,Department of Marine Biotechnology and Resources
[2] Doctoral Degree Program in Marine Biotechnology,Department of Medical Laboratory Sciences and Biotechnology
[3] National Sun Yat-sen University,undefined
[4] Graduate Institute of Natural Products,undefined
[5] Kaohsiung Medical University,undefined
[6] Agricultural Biotechnology Research Center,undefined
[7] Kaohsiung Medical University,undefined
[8] Skaggs School of Pharmacy and Pharmaceutical Sciences,undefined
[9] University of California,undefined
[10] San Diego,undefined
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A robust and convenient research strategy integrating state-of-the-art analytical techniques is needed to efficiently discover novel compounds from marine microbial resources. In this study, we identified a series of amino-polyketide derivatives, vitroprocines A-J, from the marine bacterium Vibrio sp. QWI-06 by an integrated approach using imaging mass spectroscopy and molecular networking, as well as conventional bioactivity-guided fractionation and isolation. The structure-activity relationship of vitroprocines against Acinetobacter baumannii is proposed. In addition, feeding experiments with 13C-labeled precursors indicated that a pyridoxal 5′-phosphate-dependent mechanism is involved in the biosynthesis of vitroprocines. Elucidation of amino-polyketide derivatives from a species of marine bacteria for the first time demonstrates the potential of this integrated metabolomics approach to uncover marine bacterial biodiversity.
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