Chen_2013_BMC.Genomics_14_339

Reference

Title : Genomics-driven discovery of the pneumocandin biosynthetic gene cluster in the fungus Glarea lozoyensis - Chen_2013_BMC.Genomics_14_339
Author(s) : Chen L , Yue Q , Zhang X , Xiang M , Wang C , Li S , Che Y , Ortiz-Lopez FJ , Bills GF , Liu X , An Z
Ref : BMC Genomics , 14 :339 , 2013
Abstract :

BACKGROUND: The antifungal therapy caspofungin is a semi-synthetic derivative of pneumocandin B0, a lipohexapeptide produced by the fungus Glarea lozoyensis, and was the first member of the echinocandin class approved for human therapy. The nonribosomal peptide synthetase (NRPS)-polyketide synthases (PKS) gene cluster responsible for pneumocandin biosynthesis from G. lozoyensis has not been elucidated to date. In this study, we report the elucidation of the pneumocandin biosynthetic gene cluster by whole genome sequencing of the G. lozoyensis wild-type strain ATCC 20868.
RESULTS: The pneumocandin biosynthetic gene cluster contains a NRPS (GLNRPS4) and a PKS (GLPKS4) arranged in tandem, two cytochrome P450 monooxygenases, seven other modifying enzymes, and genes for L-homotyrosine biosynthesis, a component of the peptide core. Thus, the pneumocandin biosynthetic gene cluster is significantly more autonomous and organized than that of the recently characterized echinocandin B gene cluster. Disruption mutants of GLNRPS4 and GLPKS4 no longer produced the pneumocandins (A0 and B0), and the Deltaglnrps4 and Deltaglpks4 mutants lost antifungal activity against the human pathogenic fungus Candida albicans. In addition to pneumocandins, the G. lozoyensis genome encodes a rich repertoire of natural product-encoding genes including 24 PKSs, six NRPSs, five PKS-NRPS hybrids, two dimethylallyl tryptophan synthases, and 14 terpene synthases.
CONCLUSIONS: Characterization of the gene cluster provides a blueprint for engineering new pneumocandin derivatives with improved pharmacological properties. Whole genome estimation of the secondary metabolite-encoding genes from G. lozoyensis provides yet another example of the huge potential for drug discovery from natural products from the fungal kingdom.

PubMedSearch : Chen_2013_BMC.Genomics_14_339
PubMedID: 23688303
Gene_locus related to this paper: glal2-s3cg73 , glal2-s3d2r4 , glal2-s3dmm6 , glal2-s3e306 , glal2-s3dl45 , glal2-s3d1r9 , glal2-s3e4a7 , glal2-s3ddr1 , glal2-s3ctz6 , glal2-s3dy35 , glal2-s3dws5 , glal2-s3df31 , glal2-s3d7q5 , glal2-s3cwz5 , glal2-s3dcn7 , glal2-s3dhj7 , glal2-s3dm96 , glal2-s3d6q1 , glal2-s3cv25 , glal2-s3e8v9 , glal2-s3crh2 , glal2-s3dde8 , glal2-s3cxt6 , glal2-s3da89 , glal2-s3ckn8 , glal2-s3d4y3 , glal2-s3ddw6 , glal2-s3dk02 , glal2-s3d048 , glal2-s3de12

Related information

Gene_locus glal2-s3cg73    glal2-s3d2r4    glal2-s3dmm6    glal2-s3e306    glal2-s3dl45    glal2-s3d1r9    glal2-s3e4a7    glal2-s3ddr1    glal2-s3ctz6    glal2-s3dy35    glal2-s3dws5    glal2-s3df31    glal2-s3d7q5    glal2-s3cwz5    glal2-s3dcn7    glal2-s3dhj7    glal2-s3dm96    glal2-s3d6q1    glal2-s3cv25    glal2-s3e8v9    glal2-s3crh2    glal2-s3dde8    glal2-s3cxt6    glal2-s3da89    glal2-s3ckn8    glal2-s3d4y3    glal2-s3ddw6    glal2-s3dk02    glal2-s3d048    glal2-s3de12
Gene_locus_frgt glal2-s3da45    glal2-s3d0d4

Citations formats

Chen L, Yue Q, Zhang X, Xiang M, Wang C, Li S, Che Y, Ortiz-Lopez FJ, Bills GF, Liu X, An Z (2013)
Genomics-driven discovery of the pneumocandin biosynthetic gene cluster in the fungus Glarea lozoyensis
BMC Genomics 14 :339

Chen L, Yue Q, Zhang X, Xiang M, Wang C, Li S, Che Y, Ortiz-Lopez FJ, Bills GF, Liu X, An Z (2013)
BMC Genomics 14 :339