Bioactive Molecular Networking for Mapping the Antimicrobial Constituents of the Baltic Brown AlgaFucus vesiculosus

被引:27
作者
Buedenbender, Larissa [1 ]
Astone, Francesca Anna [1 ]
Tasdemir, Deniz [1 ,2 ]
机构
[1] GEOMAR Helmholtz Ctr Ocean Res Kiel, GEOMAR Ctr Marine Biotechnol GEOMAR Biotech, Res Unit Marine Nat Prod Chem, Kiel Kanal 44, D-24106 Kiel, Germany
[2] Univ Kiel, Fac Math & Nat Sci, Christian Albrechts Pl 4, D-424118 Kiel, Germany
关键词
Fucus vesiculosus; brown alga; bioactive molecular networking; in silico dereplication; metabolomics; antimicrobial; Staphylococcus aureus; galactolipid; MGDG; phlorotannin; ALGA FUCUS-VESICULOSUS; NATURAL-PRODUCTS; PHLOROTANNINS; FUCOXANTHIN; MONOGALACTOSYLDIACYLGLYCEROL; FUCOPHLORETHOL; GALACTOLIPIDS; INHIBITORS; ECOLOGY; NMR;
D O I
10.3390/md18060311
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The brown algaFucus vesiculosusis common to the intertidal zones of the Baltic Sea, where it is exposed to high fouling pressures by microorganisms. Our previous studies showed, repeatedly, the consistent antimicrobial activity ofF. vesiculosuscrude extracts against human pathogens, while untargeted metabolomics analyses have revealed a variety of metabolites. In this study, we applied the UPLC-QToF-MS/MS-based "bioactive molecular networking" (BMN) concept on the most bioactiven-hexane andn-butanol subextracts of BalticF. vesiculosuscoupled with in silico dereplication tools to identify the compounds responsible for antimicrobial activity. The first antimicrobial cluster identified by BMN was galactolipids. Our targeted isolation efforts for this class led to the isolation of six monogalactosyldiacylglycerol (MGDG) derivatives (1-6) and one digalactosyldiacylglycerol (DGDG,7). The MGDGs5and6and the DGDG7exhibited activity againstStaphylococcus aureus.The second compound class with high bioactivity was phlorotannins. In particular, phlorethol-type phlorotannins showed high correlations with antimicrobial activity based on the BMN approach, and two phlorotannins (8-9) were isolated. This study shows that antimicrobial components ofF. vesiculosusreside in the algal cell walls and membranes and that BMN provides a complementary tool for the targeted isolation of bioactive metabolites.
引用
收藏
页数:21
相关论文
共 70 条
  • [61] INTERPRETATION OF THE CORRELATION-COEFFICIENT - A BASIC REVIEW
    TAYLOR, R
    [J]. JOURNAL OF DIAGNOSTIC MEDICAL SONOGRAPHY, 1990, 6 (01) : 35 - 39
  • [62] Ecology of antifouling resistance in the bladder wrack Fucus vesiculosus: patterns of microfouling and antimicrobial protection
    Wahl, M.
    Shahnaz, L.
    Dobretsov, S.
    Saha, M.
    Symanowski, F.
    David, K.
    Lachnit, T.
    Vasel, M.
    Weinberger, F.
    [J]. MARINE ECOLOGY PROGRESS SERIES, 2010, 411 : 33 - U61
  • [63] Wahl M., 2015, PERSPECT PHYCOL, V2, P11, DOI DOI 10.1127/PIP/2015/0019
  • [64] The second skin: ecological role of epibiotic biofilms on marine organisms
    Wahl, Martin
    Goecke, Franz
    Labes, Antje
    Dobretsov, Sergey
    Weinberger, Florian
    [J]. FRONTIERS IN MICROBIOLOGY, 2012, 3
  • [65] Sharing and community curation of mass spectrometry data with Global Natural Products Social Molecular Networking
    Wang, Mingxun
    Carver, Jeremy J.
    Phelan, Vanessa V.
    Sanchez, Laura M.
    Garg, Neha
    Peng, Yao
    Don Duy Nguyen
    Watrous, Jeramie
    Kapono, Clifford A.
    Luzzatto-Knaan, Tal
    Porto, Carla
    Bouslimani, Amina
    Melnik, Alexey V.
    Meehan, Michael J.
    Liu, Wei -Ting
    Criisemann, Max
    Boudreau, Paul D.
    Esquenazi, Eduardo
    Sandoval-Calderon, Mario
    Kersten, Roland D.
    Pace, Laura A.
    Quinn, Robert A.
    Duncan, Katherine R.
    Hsu, Cheng-Chih
    Floros, Dimitrios J.
    Gavilan, Ronnie G.
    Kleigrewe, Karin
    Northen, Trent
    Dutton, Rachel J.
    Parrot, Delphine
    Carlson, Erin E.
    Aigle, Bertrand
    Michelsen, Charlotte F.
    Jelsbak, Lars
    Sohlenkamp, Christian
    Pevzner, Pavel
    Edlund, Anna
    McLean, Jeffrey
    Piel, Jorn
    Murphy, Brian T.
    Gerwick, Lena
    Liaw, Chih-Chuang
    Yang, Yu-Liang
    Humpf, Hans-Ulrich
    Maansson, Maria
    Keyzers, Robert A.
    Sims, Amy C.
    Johnson, Andrew R.
    Sidebottom, Ashley M.
    Sedio, Brian E.
    [J]. NATURE BIOTECHNOLOGY, 2016, 34 (08) : 828 - 837
  • [66] Antioxidant Capacities of Phlorotannins Extracted from the Brown Algae Fucus vesiculosus
    Wang, Tao
    Jonsdottir, Rosa
    Liu, Haiyan
    Gu, Liwei
    Kristinsson, Hordur G.
    Raghavan, Sivakumar
    Olafsdottir, Gudrun
    [J]. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2012, 60 (23) : 5874 - 5883
  • [67] Isolation and Structural Determination of Two Novel Phlorotannins from the Brown Alga Ecklonia kurome Okamura, and Their Radical Scavenging Activities
    Yotsu-Yamashita, Mari
    Kondo, Sawako
    Segawa, Shinya
    Lin, Yi-Chin
    Toyohara, Haruhiko
    Ito, Hisatomi
    Konoki, Keiichi
    Cho, Yuko
    Uchida, Takafumi
    [J]. MARINE DRUGS, 2013, 11 (01): : 165 - 183
  • [68] Database for Rapid Dereplication of Known Natural Products Using Data from MS and Fast NMR Experiments
    Zani, Carlos L.
    Carroll, Anthony R.
    [J]. JOURNAL OF NATURAL PRODUCTS, 2017, 80 (06): : 1758 - 1766
  • [69] Total Synthesis and Structure-Activity Relationship of Glycoglycerolipids from Marine Organisms
    Zhang, Jun
    Li, Chunxia
    Yu, Guangli
    Guan, Huashi
    [J]. MARINE DRUGS, 2014, 12 (06) : 3634 - 3659
  • [70] Isolation and Purification of a Neuroprotective Phlorotannin from the Marine Algae Ecklonia maxima by Size Exclusion and High-Speed Counter-Current Chromatography
    Zhou, Xuezhen
    Yi, Mengqi
    Ding, Lijian
    He, Shan
    Yan, Xiaojun
    [J]. MARINE DRUGS, 2019, 17 (04):