Sponge-Associated Bacteria Produce Non-cytotoxic Melanin Which Protects Animal Cells from Photo-Toxicity
Melanin is a photo-protective polymer found in many organisms. Our research shows that the bacteria associated with darkly pigmented sponges ( Haliclona pigmentifera , Sigmadocia pumila , Fasciospongia cavernosa , Spongia officinalis , and Callyspongia diffusa ) secrete non-cytotoxic melanin, with a...
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Veröffentlicht in: | Applied biochemistry and biotechnology 2017-09, Vol.183 (1), p.396-411 |
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Sprache: | eng |
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Zusammenfassung: | Melanin is a photo-protective polymer found in many organisms. Our research shows that the bacteria associated with darkly pigmented sponges (
Haliclona pigmentifera
,
Sigmadocia pumila
,
Fasciospongia cavernosa
,
Spongia officinalis
, and
Callyspongia diffusa
) secrete non-cytotoxic melanin, with antioxidant activity that protects animal cells from photo-toxicity. Out of 156 bacterial strains screened, 22 produced melanin and these melanin-producing bacteria (MPB) were identified as
Vibrio
spp.,
Providencia
sp.,
Bacillus
sp.,
Shewanella
sp.,
Staphylococcus
sp.,
Planococcus
sp.,
Salinococcus
sp., and
Glutamicibacter
sp. Maximum melanin production was exhibited by
Vibrio alginolyticus
Marine Microbial Reference Facility (MMRF) 534 (50 mg ml
−1
), followed by two isolates of
Vibrio harveyi
MMRF 535 (40 mg ml
−1
) and MMRF 546 (30 mg ml
−1
). Using pathway inhibition assay and FT-IR spectral analysis, we identified the melanin secreted into the culture medium of MPB as 1,8-dihydroxynaphthalene-melanin. The bacterial melanin was non-cytotoxic to mouse fibroblast L929 cells and brine shrimps up to a concentration of 200 and 500 ppm, respectively. Bacterial melanin showed antioxidant activity at very low concentration (IC
50
—9.0 ppm) and at 50 ppm, melanin protected L929 cells from UV-induced intracellular reactive oxygen stress. Our study proposes sponge-associated bacteria as a potential source of non-cytotoxic melanin with antioxidant potentials. |
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ISSN: | 0273-2289 1559-0291 |
DOI: | 10.1007/s12010-017-2453-0 |