» Articles » PMID: 28339467

A Non-canonical RNA Degradation Pathway Suppresses RNAi-dependent Epimutations in the Human Fungal Pathogen Mucor Circinelloides

Overview
Journal PLoS Genet
Specialty Genetics
Date 2017 Mar 25
PMID 28339467
Citations 33
Authors
Affiliations
Soon will be listed here.
Abstract

Mucorales are a group of basal fungi that includes the casual agents of the human emerging disease mucormycosis. Recent studies revealed that these pathogens activate an RNAi-based pathway to rapidly generate drug-resistant epimutant strains when exposed to stressful compounds such as the antifungal drug FK506. To elucidate the molecular mechanism of this epimutation pathway, we performed a genetic analysis in Mucor circinelloides that revealed an inhibitory role for the non-canonical RdRP-dependent Dicer-independent silencing pathway, which is an RNAi-based mechanism involved in mRNA degradation that was recently identified. Thus, mutations that specifically block the mRNA degradation pathway, such as those in the genes r3b2 and rdrp3, enhance the production of drug resistant epimutants, similar to the phenotype previously described for mutation of the gene rdrp1. Our genetic analysis also revealed two new specific components of the epimutation pathway related to the quelling induced protein (qip) and a Sad-3-like helicase (rnhA), as mutations in these genes prevented formation of drug-resistant epimutants. Remarkably, drug-resistant epimutant production was notably increased in M. circinelloides f. circinelloides isolates from humans or other animal hosts. The host-pathogen interaction could be a stressful environment in which the phenotypic plasticity provided by the epimutant pathway might provide an advantage for these strains. These results evoke a model whereby balanced regulation of two different RNAi pathways is determined by the activation of the RNAi-dependent epimutant pathway under stress conditions, or its repression when the regular maintenance of the mRNA degradation pathway operates under non-stress conditions.

Citing Articles

Symmetric and asymmetric DNA N6-adenine methylation regulates different biological responses in Mucorales.

Lax C, Mondo S, Osorio-Concepcion M, Muszewska A, Corrochano-Luque M, Gutierrez G Nat Commun. 2024; 15(1):6066.

PMID: 39025853 PMC: 11258239. DOI: 10.1038/s41467-024-50365-2.


Alternative ergosterol biosynthetic pathways confer antifungal drug resistance in the human pathogens within the species complex.

Navarro-Mendoza M, Perez-Arques C, Parker J, Xu Z, Kelly S, Heitman J mBio. 2024; 15(8):e0166124.

PMID: 38980037 PMC: 11323496. DOI: 10.1128/mbio.01661-24.


Challenges and Opportunities Arising from Host- Interactions to Outline Novel and Sustainable Control Strategies: The Key Role of RNA Interference.

Spada M, Pugliesi C, Fambrini M, Pecchia S Int J Mol Sci. 2024; 25(12).

PMID: 38928507 PMC: 11203536. DOI: 10.3390/ijms25126798.


RNA-dependent RNA polymerases regulate ascospore discharge through the exonic-sRNA-mediated RNAi pathway.

Zeng W, Lin J, Xie J, Fu Y, Lin Y, Chen T mBio. 2024; 15(6):e0037724.

PMID: 38752738 PMC: 11237814. DOI: 10.1128/mbio.00377-24.


Molecular mechanisms governing antifungal drug resistance.

Lee Y, Robbins N, Cowen L NPJ Antimicrob Resist. 2024; 1(1):5.

PMID: 38686214 PMC: 11057204. DOI: 10.1038/s44259-023-00007-2.


References
1.
Idnurm A, Walton F, Floyd A, Heitman J . Identification of the sex genes in an early diverged fungus. Nature. 2008; 451(7175):193-6. DOI: 10.1038/nature06453. View

2.
Nicolas F, Torres-Martinez S, Ruiz-Vazquez R . Two classes of small antisense RNAs in fungal RNA silencing triggered by non-integrative transgenes. EMBO J. 2003; 22(15):3983-91. PMC: 169057. DOI: 10.1093/emboj/cdg384. View

3.
Velayos A, Blasco J, Alvarez M, Iturriaga E, Eslava A . Blue-light regulation of phytoene dehydrogenase (carB) gene expression in Mucor circinelloides. Planta. 2000; 210(6):938-46. DOI: 10.1007/s004250050701. View

4.
Bastidas R, Shertz C, Lee S, Heitman J, Cardenas M . Rapamycin exerts antifungal activity in vitro and in vivo against Mucor circinelloides via FKBP12-dependent inhibition of Tor. Eukaryot Cell. 2012; 11(3):270-81. PMC: 3294450. DOI: 10.1128/EC.05284-11. View

5.
Motamedi M, Verdel A, Colmenares S, Gerber S, Gygi S, Moazed D . Two RNAi complexes, RITS and RDRC, physically interact and localize to noncoding centromeric RNAs. Cell. 2004; 119(6):789-802. DOI: 10.1016/j.cell.2004.11.034. View