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1.
Methods Protoc ; 6(5)2023 Aug 29.
Article in English | MEDLINE | ID: mdl-37736960

ABSTRACT

Fungi are well-known producers of chemically diverse and biologically active secondary metabolites. However, their production yields through fermentation may hamper structural analysis and biological activity downstream investigations. Herein, a systematic experimental design that varies multiple cultivation parameters, followed by chemometrics analysis on HPLC-UV-MS or UHPLC-HRMS/MS data, is presented to enhance the production yield of fungal natural products. The overall procedure typically requires 3-4 months of work when first developed, and up to 3 months as a routine procedure.

2.
J Nat Prod ; 86(8): 2065-2072, 2023 08 25.
Article in English | MEDLINE | ID: mdl-37490470

ABSTRACT

Metabolomics analyses and improvement of growth conditions were applied toward diversification of phomactin terpenoids by the fungus Biatriospora sp. CBMAI 1333. Visualization of molecular networking results on Gephi assisted the observation of phomactin diversification and guided the isolation of new phomactin variants by applying a modified version of chemometrics based on a fractional factorial design. Consequentially, the first nitrogen-bearing phomactin, phomactinine (1), with a new rearranged carbon skeleton, was isolated and identified. The strategy combining metabolomics and chemometrics can be extended to include bioassay potency, structure novelty, and metabolic diversification connected or not to genomic analyses.


Subject(s)
Ascomycota , Ascomycota/chemistry , Molecular Structure
3.
Org Lett ; 24(51): 9381-9385, 2022 12 30.
Article in English | MEDLINE | ID: mdl-36521009

ABSTRACT

Comparative metabolomics analysis of nonphytotoxic endophytic Colletotrichum spp. isolated from Anthurium alcatrazense endemic to Alcatrazes island (Brazil) and phytopathogenic Colletotrichum spp. isolated from the mainland of Brazil revealed significant differences in chemical composition. Examination of endophytic Colletotrichum spp. from Alcatrazes island led to the discovery of a 26-member macrolactone, colletotrichumolide (1), containing a phosphatidyl choline side chain. Further examination of the phytopathogenic strains from the mainland identified a family of phytopathogenic metabolites not present in the nonpathogenic island-derived strains, suggesting that geographical isolation could influence the secondary metabolism of fungal strains.


Subject(s)
Colletotrichum , Colletotrichum/chemistry , Brazil , Secondary Metabolism
4.
J Nat Prod ; 84(3): 790-796, 2021 03 26.
Article in English | MEDLINE | ID: mdl-33371682

ABSTRACT

Metabolomics analysis detected tambjamine alkaloids in aqueous and EtOAc extracts of the marine invertebrates Virididentula dentata, Tambja stegosauriformis, Tambja brasiliensis, and Roboastra ernsti. Among several tambjamines, the new amino acid derivatives tambjamines M-O (17-19) were identified by Marfey's advanced analysis, UPLC-MS/MS analyses, and total synthesis. The tambjamine diversity increased from the bryozoan V. dentata to its nudibranch predators T. stegosauriformis and T. brasiliensis and attained a higher diversity in R. ernsti, the nudibranch that preys upon T. stegosauriformis and T. brasiliensis. The total tambjamine content also increases among the trophic levels, probably due to biomagnification. Tambjamines A (1), C (3), and D (4) are the major metabolites in the tissues of V. dentata, T. stegosauriformis, T. brasiliensis, and R. ernsti and are likely the main chemical defenses of these marine invertebrates.


Subject(s)
Alkaloids/isolation & purification , Gastropoda/chemistry , Pyrroles/isolation & purification , Animals , Aquatic Organisms/chemistry , Brazil , Chromatography, High Pressure Liquid , Food Chain , Metabolomics , Molecular Structure , Tandem Mass Spectrometry
5.
Nat Prod Rep ; 34(11): 1264-1301, 2017 Nov 15.
Article in English | MEDLINE | ID: mdl-28967942

ABSTRACT

Covering: 2015 and 2016The chemistry and biology of natural guanidines isolated from microbial culture media, from marine invertebrates, as well as from terrestrial plants and animals, are reviewed. Emphasis is directed to the biosynthesis, total synthesis, ecological roles as well as on the evolution of guanidines isolated from natural sources.


Subject(s)
Biological Products , Guanidines , Animals , Biological Products/chemistry , Biological Products/isolation & purification , Biological Products/metabolism , Guanidines/chemistry , Guanidines/isolation & purification , Guanidines/metabolism , Invertebrates/chemistry , Marine Biology , Molecular Structure
6.
Microbiol Res ; 168(1): 50-5, 2013 Jan 15.
Article in English | MEDLINE | ID: mdl-22819383

ABSTRACT

Two series of new chitosan derivatives were synthesized by reaction of deacetylated chitosan (CH) with propyl (CH-Propyl) and pentyl (CH-Pentyl) trimethylammonium bromides to obtain derivatives with increasing degrees of substitution (DS). The derivatives were characterized by (1)H NMR and potentiometric titration techniques and their antifungal activities on the mycelial growth of Aspergillus flavus were investigated in vitro. The antifungal activities increase with DS and the more substituted derivatives of both series, CH-Propyl and CH-Pentyl, exhibited antifungal activities respectively three and six times higher than those obtained with commercial and deacetylated chitosan. The minimum inhibitory concentrations (MIC) were evaluated at 24, 48 and 72 h by varying the polymer concentration from 0.5 to 16 g/L and the results showed that the quaternary derivatives inhibited the fungus growth at polymer concentrations four times lower than that obtained with deacetylated chitosan (CH). The chitosans modified with pentyltrimethylammonium bromide exhibited higher activity and results are discussed taking into account the degree of substitution (DS).


Subject(s)
Antifungal Agents/pharmacology , Aspergillus flavus/drug effects , Chitosan/analogs & derivatives , Chitosan/pharmacology , Antifungal Agents/chemical synthesis , Antifungal Agents/chemistry , Chitosan/chemical synthesis , Chitosan/chemistry , Magnetic Resonance Spectroscopy , Microbial Sensitivity Tests , Potentiometry , Structure-Activity Relationship , Time Factors
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