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1.
J Nat Prod ; 79(3): 555-63, 2016 Mar 25.
Article in English | MEDLINE | ID: mdl-26859086

ABSTRACT

Cryptococcus gattii is a human pathogen and causative agent of a pernicious, sometimes fatal, disseminated fungal disease. Investigation of antifungal extracts of the marine sponge association Plakortis halichondrioides-Xestospongia deweerdtae and the sponge Plakortis zyggompha from the Bahamas led to the discovery and isolation of 6-epi-7,8-dihydroplakortide K (1), plakortide AA (2), and three new plakinic acids, N-P (4-6; unstable 1,2-dioxolanes bearing benzyl-substituted conjugated dienes), along with known plakinic acids L, K, and M.5 Chiroptical comparisons and DFT calculations of (13)C NMR chemical shifts were used to assign the absolute stereostructure of 4. The stereospecific base-promoted rearrangement-saponification of 1 to 10 was briefly investigated and showed tight kinetic control and stereospecific formation of the new C-2 stereocenter with inversion at C-3. Plakinic acid M and plakortides 9 and 11 exhibited antifungal activity against C. gattii (MIC90 = 2.4 to 36 µM), but plakinic acids N-P were inactive under the same conditions.


Subject(s)
Antifungal Agents/isolation & purification , Antifungal Agents/pharmacology , Biological Products/isolation & purification , Biological Products/pharmacology , Cryptococcus gattii/chemistry , Peroxides/isolation & purification , Peroxides/pharmacology , Plakortis/microbiology , Xestospongia/microbiology , Animals , Antifungal Agents/chemistry , Bahamas , Biological Products/chemistry , Dioxanes/chemistry , Drug Screening Assays, Antitumor , Humans , Marine Biology , Microbial Sensitivity Tests , Molecular Structure , Nuclear Magnetic Resonance, Biomolecular , Peroxides/chemistry , Structure-Activity Relationship
2.
Mar Drugs ; 12(11): 5425-40, 2014 Nov 14.
Article in English | MEDLINE | ID: mdl-25405856

ABSTRACT

Sponge-associated microorganisms are able to assemble the complex machinery for the production of secondary metabolites such as polyketides, the most important class of marine natural products from a drug discovery perspective. A comprehensive overview of polyketide biosynthetic genes of the sponge Plakortis halichondrioides and its symbionts was obtained in the present study by massively parallel 454 pyrosequencing of complex and heterogeneous PCR (Polymerase Chain Reaction) products amplified from the metagenomic DNA of a specimen of P. halichondrioides collected in the Caribbean Sea. This was accompanied by a survey of the bacterial diversity within the sponge. In line with previous studies, sequences belonging to supA and swfA, two widespread sponge-specific groups of polyketide synthase (PKS) genes were dominant. While they have been previously reported as belonging to Poribacteria (a novel bacterial phylum found exclusively in sponges), re-examination of current genomic sequencing data showed supA and swfA not to be present in the poribacterial genome. Several non-supA, non-swfA type-I PKS fragments were also identified. A significant portion of these fragments resembled type-I PKSs from protists, suggesting that bacteria may not be the only source of polyketides from P. halichondrioides, and that protistan PKSs should receive further investigation as a source of novel polyketides.


Subject(s)
Metagenomics , Microbiota , Plakortis/genetics , Polyketide Synthases/genetics , Animals , Caribbean Region , Plakortis/metabolism , Plakortis/microbiology , Polyketides/metabolism , Polymerase Chain Reaction , Secondary Metabolism
3.
Environ Microbiol Rep ; 5(6): 809-18, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24249289

ABSTRACT

Sponge symbionts are a largely unexplored source of new and unusual metabolic pathways. Insights into the distribution and function of metabolic genes of sponge symbionts are crucial to dissect and exploit their biotechnological potential. Screening of the metagenome of the marine sponge Plakortis simplex led to the discovery of the swf family, a new group of mono-modular type I polyketide synthase/fatty acid synthase (PKS/FAS) specifically associated with sponge symbionts. Two different examples of the swf cluster were present in the metagenome of P. simplex. A third example of the cluster is present in the previously sequenced genome of a poribacterium from the sponge Aplysina aerophoba but was formerly considered orthologous to the wcb/rkp cluster. The swf cluster was also found in six additional species of sponges. Therefore, the swf cluster represents the second group of mono-modular PKS, after the supA family, to be widespread in marine sponges. The putative swf operon consists of swfA (type I PKS/FAS), swfB (reductase and sulphotransferase domains) and swfC (radical S-adenosylmethionine, or radical SAM). Activation of the acyl carrier protein (ACP) domain of the SwfA protein to its holo-form by co-expression with Svp is the first functional proof of swf type genes in marine sponges. However, the precise biosynthetic role of the swf clusters remains unknown.


Subject(s)
Bacteria/enzymology , Bacteria/genetics , Plakortis/microbiology , Polyketide Synthases/genetics , Symbiosis/genetics , Animals , Base Sequence , Metagenome/genetics , Molecular Sequence Data , Plakortis/enzymology , Plakortis/genetics , Polyketides/metabolism , Sequence Analysis, DNA
4.
Int J Syst Evol Microbiol ; 62(Pt 4): 883-889, 2012 Apr.
Article in English | MEDLINE | ID: mdl-21642486

ABSTRACT

A novel coccoid-shaped strain, AS/ASP6 (II)T, was isolated from a sample taken from Plakortis simplex (Schulze), a marine sponge, collected at a depth of 30 m from the Bay of Bengal. This strain was identified by using a polyphasic taxonomic approach. The results of 16S rRNA gene sequence analysis showed that strain AS/ASP6 (II)T should be assigned to the genus Planococcus. Chemotaxonomic data (A4α-type peptidoglycan; MK-6, MK-7 and MK-8 menaquinones; mainly branched cellular fatty acids; and phosphatidylethanolamine, phosphatidylglycerol and diphosphatidylglycerol as cellular phospholipids) supported taxonomic placement in the genus Planococcus. Phylogenetic analysis of the 16S rRNA gene sequence showed that strain AS/ASP6 (II)T belonged to the genus Planococcus and was closely related to the type strains of Planococcus maritimus (99.1 %) followed by Planococcus rifietoensis (98.6 %), Planococcus maitriensis (98.5 %), Planococcus citreus (98.3 %), Planococcus salinarum (98.1 %), Planococcus columbae (97.9 %), Planococcus donghaensis (97.8 %) and Planococcus antarcticus (97.7 %); DNA-DNA hybridization values obtained were well below the threshold that is required for the proposal of a novel species. The G+C content of the genomic DNA was 51.0  mol%. The phenotypic and genotypic data showed that strain AS/ASP6 (II)T merits recognition as a representative of a novel species of the genus Planococcus, for which the name Planococcus plakortidis sp. nov. is proposed; the type strain is AS/ASP6 (II)T (=MTCC 8491T=DSM 23997T).


Subject(s)
Phylogeny , Plakortis/microbiology , Planococcus Bacteria/classification , Animals , Bacterial Typing Techniques , Base Composition , Bays , DNA, Bacterial/genetics , Fatty Acids/chemistry , India , Indian Ocean , Molecular Sequence Data , Nucleic Acid Hybridization , Phospholipids/chemistry , Planococcus Bacteria/genetics , Planococcus Bacteria/isolation & purification , RNA, Ribosomal, 16S/genetics , Sequence Analysis, DNA , Vitamin K 2/chemistry
5.
Int J Syst Evol Microbiol ; 57(Pt 12): 2888-2893, 2007 Dec.
Article in English | MEDLINE | ID: mdl-18048744

ABSTRACT

The Gram-positive, alkali- and salt-tolerant marine bacterium strain P203(T) is described together with its closest phylogenetic neighbour, terrestrial isolate LMG 21005(T). Strain P203(T) was isolated from material from the sponge Plakortis simplex that was obtained from the Sula-Ridge, Norwegian Sea. Strain LMG 21005(T) was an undescribed strain that was isolated from a church wall mural in Germany. Strains P203(T) and LMG 21005(T) were identified as novel alkalitolerant members of the Bacillus rRNA group 6 with a 16S rRNA gene sequence similarity of 99.5 %. The closest described neighbour, Bacillus gibsonii DSM 8722(T), showed 99.0 % gene sequence similarity with P203(T) and 98.8 % similarity with strain LMG 21005(T). Despite the high 16S rRNA gene sequence similarity, DNA-DNA cross-hybridization revealed only 25.8-34.1 % similarity amongst the three strains. The DNA G+C contents were 41.1 mol% for strain P203(T) and 39.6 mol% for strain LMG 21005(T). Both strains grew well between pH 7 and pH 11. Strain P203(T) showed growth at moderate temperatures (from 4 to 30 degrees C) and in the presence of up to 12 % (w/v) NaCl at pH 9.7, whereas strain LMG 21005(T) was not salt tolerant (up to 4 % NaCl) and no growth was observed at 4 degrees C. The major fatty acids of strains P203(T), LMG 21005(T) and the type strain of B. gibsonii were the saturated terminally methyl-branched compounds iso-C(15 : 0) (19.8, 15.6 and 28.0 %, respectively) and anteiso-C(15 : 0) (57.1, 48.6 and 45.2 %, respectively). Physiological and biochemical tests allowed genotypic and phenotypic differentiation of strains P203(T) and LMG 21005(T) from the six related Bacillus species with validly published names and supported the proposal of two novel species, Bacillus plakortidis [type strain P203(T) (=DSM 19153(T)=NCIMB 14288(T))] and Bacillus murimartini [type strain LMG 21005(T) (=NCIMB 14102(T))].


Subject(s)
Bacillus/classification , Bacillus/isolation & purification , Plakortis/microbiology , Animals , Bacillus/chemistry , Bacillus/genetics , Base Composition , DNA, Bacterial/chemistry , DNA, Bacterial/genetics , DNA, Ribosomal/chemistry , DNA, Ribosomal/genetics , Fatty Acids/analysis , Genes, rRNA , Germany , Hydrogen-Ion Concentration , Molecular Sequence Data , Nucleic Acid Hybridization , Phylogeny , RNA, Ribosomal, 16S/genetics , Sequence Analysis, DNA , Sequence Homology, Nucleic Acid , Sodium Chloride/metabolism , Temperature
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