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  Characterisation of Non-Autoinducing Tropodithietic Acid (TDA) Production from Marine Sponge Pseudovibrio Species

Harrington, C., Reen, F., Mooij, M., Stewart, F., Chabot, J., Guerra, A., et al. (2014). Characterisation of Non-Autoinducing Tropodithietic Acid (TDA) Production from Marine Sponge Pseudovibrio Species. Marine Drugs, 12(12), 5960-5978.

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 Creators:
Harrington, C., Author
Reen, F., Author
Mooij, M., Author
Stewart, F., Author
Chabot, J., Author
Guerra, A.1, Author           
Glöckner, F.1, Author           
Nielsen, K., Author
Gram, L., Author
Dobson, A., Author
Adams, C., Author
O'Gara, F., Author
Affiliations:
1Microbial Genomics Group, Department of Molecular Ecology, Max Planck Institute for Marine Microbiology, Max Planck Society, ou_2481697              

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 Abstract: The search for new antimicrobial compounds has gained added momentum in recent years, paralleled by the exponential rise in resistance to most known classes of current antibiotics. While modifications of existing drugs have brought some limited clinical success, there remains a critical need for new classes of antimicrobial compound to which key clinical pathogens will be naive. This has provided the context and impetus to marine biodiscovery programmes that seek to isolate and characterize new activities from the aquatic ecosystem. One new antibiotic to emerge from these initiatives is the antibacterial compound tropodithietic acid (TDA). The aim of this study was to provide insight into the bioactivity of and the factors governing the production of TDA in marine Pseudovibrio isolates from a collection of marine sponges. The TDA produced by these Pseudovibrio isolates exhibited potent antimicrobial activity against a broad spectrum of clinical pathogens, while TDA tolerance was frequent in non-TDA producing marine isolates. Comparative genomics analysis suggested a high degree of conservation among the tda biosynthetic clusters while expression studies revealed coordinated regulation of TDA synthesis upon transition from log to stationary phase growth, which was not induced by TDA itself or by the presence of the C10-acyl homoserine lactone quorum sensing signal molecule.

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Language(s): eng - English
 Dates: 2014-12
 Publication Status: Issued
 Pages: 19
 Publishing info: -
 Table of Contents: -
 Rev. Type: Internal
 Identifiers: eDoc: 700672
ISI: 000346796500014
 Degree: -

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Title: Marine Drugs
Source Genre: Journal
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Publ. Info: Basel, Switzerland : MDPI AG
Pages: - Volume / Issue: 12 (12) Sequence Number: - Start / End Page: 5960 - 5978 Identifier: ISSN: 1660-3397
CoNE: https://pure.mpg.de/cone/journals/resource/1660-3397