Literature DB >> 35437626

The C-22 sterol desaturase Erg5 is responsible for ergosterol biosynthesis and conidiation in Aspergillus fumigatus.

Nanbiao Long1, Guowei Zhong2.   

Abstract

Aspergillus fumigatus is the most prevalent saprophytic fungi and can cause severe invasive aspergillosis in immunocompromised individuals. For infection of A. fumigatus, the small hydrophobic conidia have been shown to play a dominant role. In this study, we found that deletion of erg5, a C-22 sterol desaturase gene which function in the last two steps of ergosterol biosynthesis, was sufficient to block ergosterol biosynthesis and conidiation. The deletion phenotype was further verified by a conditional expression strain of erg5 using the inducible tet-on system. Strikingly, erg5 mutant displays increased susceptibility to antifungal azoles itraconazole. RNA sequencing analysis showed that erg5 deficiency resulted in changes in transcription mainly related to lipid, carbohydrate, and amino acid metabolism. Genes encoding ergosterol biosynthesis-related enzymes were found to be up-regulated in erg5 null mutants. However, genes involved in asexual development, including upstream regulators, melanin biosynthesis enzymes, heterotrimeric G proteins, and MAPK signaling, were down-regulated to various degrees. Furthermore, metabolomic study revealed that erg5 deficiency also resulted in altered lipid and amino acid metabolism, which was consistent with our transcriptomics analysis. Collectively, our study established a link between ergosterol biosynthesis and asexual development at the transcriptomics and metabolomics level in A. fumigatus.
© 2022. Author(s).

Entities:  

Keywords:  Aspergillus fumigatus; conidiation; ergosterol biosynthesis; metabolomics; transcriptomics

Mesh:

Substances:

Year:  2022        PMID: 35437626     DOI: 10.1007/s12275-022-1564-7

Source DB:  PubMed          Journal:  J Microbiol        ISSN: 1225-8873            Impact factor:   3.422


  2 in total

1.  Systematic Dissection of the Evolutionarily Conserved WetA Developmental Regulator across a Genus of Filamentous Fungi.

Authors:  Ming-Yueh Wu; Matthew E Mead; Mi-Kyung Lee; Erin M Ostrem Loss; Sun-Chang Kim; Antonis Rokas; Jae-Hyuk Yu
Journal:  MBio       Date:  2018-08-21       Impact factor: 7.867

2.  Ergosterol biosynthesis in Aspergillus fumigatus: its relevance as an antifungal target and role in antifungal drug resistance.

Authors:  Laura Alcazar-Fuoli; Emilia Mellado
Journal:  Front Microbiol       Date:  2013-01-10       Impact factor: 5.640

  2 in total

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