Literature DB >> 25329237

Sioxanthin, a novel glycosylated carotenoid, reveals an unusual subclustered biosynthetic pathway.

Taylor K S Richter1, Chambers C Hughes1, Bradley S Moore1,2.   

Abstract

Members of the marine actinomycete genus Salinispora constitutively produce a characteristic orange pigment during vegetative growth. Contrary to the understanding of widespread carotenoid biosynthesis pathways in bacteria, Salinispora carotenoid biosynthesis genes are not confined to a single cluster. Instead, bioinformatic and genetic investigations confirm that four regions of the Salinispora tropica CNB-440 genome, consisting of two gene clusters and two independent genes, contribute to the in vivo production of a single carotenoid. This compound, namely (2'S)-1'-(β-D-glucopyranosyloxy)-3',4'-didehydro-1',2'-dihydro-φ,ψ-caroten-2'-ol, is novel and has been given the trivial name 'sioxanthin'. Sioxanthin is a C40 -carotenoid, glycosylated on one end of the molecule and containing an aryl moiety on the opposite end. Glycosylation is unusual among actinomycete carotenoids, and sioxanthin joins a rare group of carotenoids with polar and non-polar head groups. Gene sequence homology predicts that the sioxanthin biosynthetic pathway is present in all of the Salinispora as well as other members of the family Micromonosporaceae. Additionally, this study's investigations of clustering of carotenoid biosynthetic genes in heterotrophic bacteria show that a non-clustered genome arrangement is more common than previously suggested, with nearly half of the investigated genomes showing a non-clustered architecture.
© 2014 Society for Applied Microbiology and John Wiley & Sons Ltd.

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Year:  2014        PMID: 25329237      PMCID: PMC4755588          DOI: 10.1111/1462-2920.12669

Source DB:  PubMed          Journal:  Environ Microbiol        ISSN: 1462-2912            Impact factor:   5.491


  52 in total

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6.  Diversity and evolution of secondary metabolism in the marine actinomycete genus Salinispora.

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  22 in total

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Journal:  Environ Microbiol       Date:  2017-08-14       Impact factor: 5.491

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Authors:  Gregory C A Amos; Takayoshi Awakawa; Robert N Tuttle; Anne-Catrin Letzel; Min Cheol Kim; Yuta Kudo; William Fenical; Bradley Moore; Paul R Jensen
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5.  The role of inter-species interactions in Salinispora specialized metabolism.

Authors:  Nastassia V Patin; Dimitrios J Floros; Chambers C Hughes; Pieter C Dorrestein; Paul R Jensen
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Review 6.  The marine actinomycete genus Salinispora: a model organism for secondary metabolite discovery.

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7.  Complete Genome of Micromonospora sp. Strain B006 Reveals Biosynthetic Potential of a Lake Michigan Actinomycete.

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8.  Specialized Metabolite-Mediated Predation Defense in the Marine Actinobacterium Salinispora.

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Review 9.  Gene Flow and Molecular Innovation in Bacteria.

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10.  Genome Analysis of Two Pseudonocardia Phylotypes Associated with Acromyrmex Leafcutter Ants Reveals Their Biosynthetic Potential.

Authors:  Neil A Holmes; Tabitha M Innocent; Daniel Heine; Mahmoud Al Bassam; Sarah F Worsley; Felix Trottmann; Elaine H Patrick; Douglas W Yu; J C Murrell; Morten Schiøtt; Barrie Wilkinson; Jacobus J Boomsma; Matthew I Hutchings
Journal:  Front Microbiol       Date:  2016-12-26       Impact factor: 5.640

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