A ribonuclease III involved in virulence of Mucorales fungi has evolved to cut exclusively single-stranded RNA

Author:

Cánovas-Márquez José Tomás1ORCID,Falk Sebastian2ORCID,Nicolás Francisco E1ORCID,Padmanabhan Subramanian3ORCID,Zapata-Pérez Rubén4ORCID,Sánchez-Ferrer Álvaro4ORCID,Navarro Eusebio1ORCID,Garre Victoriano1ORCID

Affiliation:

1. Department of Genetics and Microbiology (Associated Unit to IQFR-CSIC), Faculty of Biology, University of Murcia, 30100 Murcia, Spain

2. Department of Structural and Computational Biology, Max Perutz Labs, A-1030 Vienna, Austria

3. Instituto de Química Física “Rocasolano,” Consejo Superior de Investigaciones Científicas, 28006 Madrid, Spain

4. Department of Biochemistry and Molecular Biology-A, Faculty of Biology, Regional Campus of International Excellence “Campus Mare Nostrum,” University of Murcia, Campus Espinardo, 30100, Murcia, Spain

Abstract

Abstract Members of the ribonuclease III (RNase III) family regulate gene expression by processing double-stranded RNA (dsRNA). This family includes eukaryotic Dicer and Drosha enzymes that generate small dsRNAs in the RNA interference (RNAi) pathway. The fungus Mucor lusitanicus, which causes the deadly infection mucormycosis, has a complex RNAi system encompassing a non-canonical RNAi pathway (NCRIP) that regulates virulence by degrading specific mRNAs. In this pathway, Dicer function is replaced by R3B2, an atypical class I RNase III, and small single-stranded RNAs (ssRNAs) are produced instead of small dsRNA as Dicer-dependent RNAi pathways. Here, we show that R3B2 forms a homodimer that binds to ssRNA and dsRNA molecules, but exclusively cuts ssRNA, in contrast to all known RNase III. The dsRNA cleavage inability stems from its unusual RNase III domain (RIIID) because its replacement by a canonical RIIID allows dsRNA processing. A crystal structure of R3B2 RIIID resembles canonical RIIIDs, despite the low sequence conservation. However, the groove that accommodates dsRNA in canonical RNases III is narrower in the R3B2 homodimer, suggesting that this feature could be responsible for the cleavage specificity for ssRNA. Conservation of this activity in R3B2 proteins from other mucormycosis-causing Mucorales fungi indicates an early evolutionary acquisition.

Funder

Ministerio de Economía y Competitividad

FEDER

Agencia Estatal de Investigación

Ministerio de Educación, Cultura y Deporte

Fundación Séneca - Agencia de Ciencia y Tecnología de la Región de Murcia

Publisher

Oxford University Press (OUP)

Subject

Genetics

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