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Métodos Terapéuticos y Terapias MTCI
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1.
Proc Natl Acad Sci U S A ; 116(52): 26909-26917, 2019 Dec 26.
Artículo en Inglés | MEDLINE | ID: mdl-31811021

RESUMEN

Medicinal plants are a prolific source of natural products with remarkable chemical and biological properties, many of which have considerable remedial benefits. Numerous medicinal plants are suffering from wildcrafting, and thus biotechnological production processes of their natural products are urgently needed. The plant Aster tataricus is widely used in traditional Chinese medicine and contains unique active ingredients named astins. These are macrocyclic peptides showing promising antitumor activities and usually containing the highly unusual moiety 3,4-dichloroproline. The biosynthetic origins of astins are unknown despite being studied for decades. Here we show that astins are produced by the recently discovered fungal endophyte Cyanodermella asteris. We were able to produce astins in reasonable and reproducible amounts using axenic cultures of the endophyte. We identified the biosynthetic gene cluster responsible for astin biosynthesis in the genome of C. asteris and propose a production pathway that is based on a nonribosomal peptide synthetase. Striking differences in the production profiles of endophyte and host plant imply a symbiotic cross-species biosynthesis pathway for astin C derivatives, in which plant enzymes or plant signals are required to trigger the synthesis of plant-exclusive variants such as astin A. Our findings lay the foundation for the sustainable biotechnological production of astins independent from aster plants.

2.
J Biotechnol ; 257: 233-239, 2017 Sep 10.
Artículo en Inglés | MEDLINE | ID: mdl-28647529

RESUMEN

Fungal aromatic polyketides display a very diverse and widespread group of natural products. Due to their excellent light absorption properties and widely studied biological activities, they offer numerous application for food, textile and pharmaceutical industry. The biosynthetic pathways of fungal aromatic polyketides usually involve a set of successive enzymes, in which a non-reductive polyketide synthase iteratively catalyzes the essential assembly of simple building blocks into (often polycyclic) aromatic compounds. However, only a limited number of such pathways have been described so far and further elucidation of the individual biosynthetic steps is needed to fully exploit the biotechnological and medicinal potential of these compounds. Here, we identified the bisanthraquinone skyrin as the main pigment of the fungus Cyanodermella asteris, an endophyte that has recently been isolated from the traditional Chinese medicinal plant Aster tataricus. The genome of C. asteris was sequenced, assembled and annotated, which enables first insights into a genome from a non-lichenized member of the class Lecanoromycetes. Genetic and in silico analyses led to the identification of a gene cluster of five genes suggested to encode the enzymatic pathway for skyrin. Our study is a starting point for rational pathway engineering in order to drive the production towards higher yields or more active derivatives. Moreover, our investigations revealed a large potential of secondary metabolite production in C. asteris as well as in all Lecanoromycetes of which genomes were available. These findings convincingly emphasize that Lecanoromycetes are prolific producers of secondary metabolites.


Asunto(s)
Antraquinonas/metabolismo , Antineoplásicos/metabolismo , Ascomicetos/genética , Ascomicetos/metabolismo , Vías Biosintéticas/genética , Endófitos , Policétidos/metabolismo , Ascomicetos/enzimología , Secuencia de Bases , ADN de Hongos/genética , Emodina/metabolismo , Genes Fúngicos , Genoma Fúngico/genética , Ingeniería Metabólica , Redes y Vías Metabólicas/genética , Familia de Multigenes , Pigmentos Biológicos/metabolismo , Plantas Medicinales/microbiología , Sintasas Poliquetidas/genética , Metabolismo Secundario/genética
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