New Napyradiomycin Analogues from Streptomyces sp. Strain CA-271078
Metadatos
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Carretero Molina, Daniel; Ortiz López, Francisco Javier; Martín, Jesús; Oves Costales, Daniel; Díaz, Caridad; de la Cruz, Mercedes; Cautain, Bastien; Vicente, Francisca; Genilloud Rodríguez, Olga; Reyes, FernandoEditorial
MDPI
Materia
Napyradiomycins Marine actinomycetes Structural elucidation
Fecha
2019-12-26Referencia bibliográfica
Carretero-Molina, D.; Ortiz-López, F.J.; Martín, J.; Oves-Costales, D.; Díaz, C.; de la Cruz, M.; Cautain, B.; Vicente, F.; Genilloud, O.; Reyes, F. New Napyradiomycin Analogues from Streptomyces sp. Strain CA-271078. Mar. Drugs 2020, 18, 22. https://doi.org/10.3390/md18010022
Patrocinador
European Union’s Seventh Framework Programme for research, technological development, and demonstration under grant agreement no 312184 (PharmaSea); Ministerio de Ciencia e Innovación [Grants No. PCT-010000-2010-4 and INP-2011-0016-PCT-010000-ACT6]; Ministerio de Economía y Competitividad the funding of a contract under the Youth Employment Initiative of the European Social Fund (PEJ-2014-A-29071)Resumen
As part of our continuing efforts to discover new bioactive compounds from microbial
sources, a reinvestigation of extracts of scaled-up cultures of the marine-derived Streptomyces sp. strain
CA-271078 resulted in the isolation and structural elucidation of four new napyradiomycins (1–3, 5).
The known napyradiomycin SC (4), whose structural details had not been previously described in
detail, and another ten related known compounds (6–15). The structures of the new napyradiomycins
were characterized by HRMS and 1D- and 2D-NMR spectroscopies and their relative configurations
were established through a combination of molecular modelling with nOe and coupling constants
NMR analysis. The absolute configuration of each compound is also proposed based on biosynthetic
arguments and the comparison of specific rotation data with those of related compounds. Among
the new compounds, 1 was determined to be the first non-halogenated member of napyradiomycin
A series containing a functionalized prenyl side chain, while 2–4 harbor in their structures the
characteristic chloro-cyclohexane ring of the napyradiomycin B series. Remarkably, compound 5
displays an unprecedented 14-membered cyclic ether ring between the prenyl side chain and the
chromophore, thus representing the first member of a new class of napyradiomycins that we have
designated as napyradiomycin D1. Anti-infective and cytotoxic properties for all isolated compounds
were evaluated against a set of pathogenic microorganisms and the HepG2 cell line, respectively.
Among the new compounds, napyradiomycin D1 exhibited significant growth-inhibitory activity
against methicillin-resistant Staphylococcus aureus, Mycobacterium tuberculosis, and HepG2.