2013
DOI: 10.1271/bbb.120832
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JBIR-107, a New Metabolite from the Marine-Sponge-Derived Actinomycete,Streptomyces tateyamensisNBRC 105047

Abstract: As part of our chemical screening program for new microbial secondary metabolites, we discovered a new compound, JBIR-107 (1), from the culture of Streptomyces tateyamensis NBRC 105047 isolated from a marine sponge sample. Extensive NMR and MS spectroscopic data enabled the structure of 1 to be determined as 5-acetamido-6-(4-(methyl(2-oxo-3-phenylpropyl)amino)phenyl)-4-oxohexanoic acid.

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Cited by 8 publications
(9 citation statements)
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References 11 publications
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“…CMS JV M18_3 associated with marine sponge Agelas sceptrum collected in Mona Island exhibited inhibitory activity on testosterone 5α-reductase [3,29]. Three new trichostatin analogs JBIR-109 (30), JBIR-110 (31), and JBIR-111 (32) (Figure 2) were purified together with trichostatin A (S6) and trichostatic acid (S7) from Streptomyces sp. RM72 is associated with an unidentified marine sponge collected near Takara Island, Japan.…”
Section: Alkaloidsmentioning
confidence: 99%
See 1 more Smart Citation
“…CMS JV M18_3 associated with marine sponge Agelas sceptrum collected in Mona Island exhibited inhibitory activity on testosterone 5α-reductase [3,29]. Three new trichostatin analogs JBIR-109 (30), JBIR-110 (31), and JBIR-111 (32) (Figure 2) were purified together with trichostatin A (S6) and trichostatic acid (S7) from Streptomyces sp. RM72 is associated with an unidentified marine sponge collected near Takara Island, Japan.…”
Section: Alkaloidsmentioning
confidence: 99%
“…The compounds 30-32 have relatively weak inhibitory effects on histone deacetylase with IC 50 of 48 µg/mL, 74 µg/mL, and 57 µg/mL, respectively [9,30]. In addition, a new metabolite JBIR-107 (S8) was produced by spongederived Streptomyces tateyamensis NBRC 105047 in 2013 [31]. Four glutarimide-derived compounds (33 and S9-S11) were purified from Streptomyces anulatus S71 cultivated from a marine sponge Aplysina aerophoba collected at the Yongxing Island in the South China Sea.…”
Section: Alkaloidsmentioning
confidence: 99%
“…A new compound JBIR-107 (276) (Figure 16) was isolated from the culture of Streptomyces tateyamensis NBRC105047 isolated from the marine sponge, Haliclona sp. [100].…”
Section: Family Chalinidaementioning
confidence: 99%
“…A new compound JBIR-107 (276) (Figure 16) was isolated from the culture of Streptomyces tateyamensis NBRC105047 isolated from the marine sponge, Haliclona sp. [100]. Five new isocoumarins, namely peyroisocoumarins A-D (296-299) and isocitreoisocoumarinol (300) (Figure 17) were produced by the sponge-associated fungus Peyronellaea glomerate, which was derived from a finger sponge Amphimedon sp.…”
Section: Family Chalinidaementioning
confidence: 99%
“…The cultivation of sponge-associated microorganisms that produce biologically active compounds is the most direct method for large-scale production of these chemicals (Hill 2004 ), and extensive cultivation approaches have been attempted by groups targeting bioactive compounds (Burja et al 1999 ; Sponga et al 1999 ; Höller et al 2000 ; Jensen and Fenical 2000 ; Webster and Hill 2001 ; Burja and Hill 2001 ; Hentschel et al 2001 ; Hill 2004 ; Selvin et al 2004 ; Gunasekera et al 2005 ; Montalvo et al 2005 ; Dieckmann et al 2005 ; Sfanos et al 2005 ; Kim et al 2006 ; Kennedy et al 2009 ; Sipkema et al 2011 ; Hosoya et al 2012 ; Yamazaki et al 2012 ; Graça et al 2013 ; Izumikawa et al 2013 ; Dashti et al 2014 ; Pandey et al 2014 ; Steinert et al 2014 ). Although several researchers have reported improved cultivation of sponge-associated microorganisms using methods such as supplementing the media with sponge tissue extracts (Webster et al 2001 ), catalase, and sodium pyruvate (Olson et al 2000 ), only a minor fraction of the total sponge-associated microbial community was amenable to cultivation on laboratory media (Santavy et al 1990 ; Burja et al 1999 ; Webster and Hill 2001 ; Friedrich et al 2001 ; Hill 2004 ).…”
Section: Introductionmentioning
confidence: 99%