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◇ bioRxiv2026-08-10· microbiology

Leishmania guyanensis controls endogenous viral replication by a canonical RNA interference pathway

D. Klocek, R. Parry, G. A. Kay, A. Reddy, E. A. Alpizar-Sosa, K. Zahonov, A. Casas-Sanchez, J. Sadlov, P. Volf, A. Kohl, V. Yurchenko

原始摘要(英文原文)· Original abstract
Protistan parasites of the genus Leishmania, infamous human and animal pathogens, can themselves be infected by endosymbiotic viruses, exemplified by Leishmania RNA viruses (LRVs). These viruses affect immune responses in vertebrate hosts and have been associated with adverse treatment outcomes. How parasites control replication of these viruses is not known. Intriguingly, functional RNA interference (RNAi) pathways that have been associated with antiviral responses across eukaryotes, are retained only in some Leishmania spp., including those of the subgenus Viannia. Here, we investigated effectors in the canonical RNAi response and the Piwi protein of the human pathogen L. (Viannia) guyanensis by gene ablation and identified Dicer-like 1 and Argonaute 1 proteins of the canonical RNAi pathway as critical for controlling viral RNA levels. Notably, we characterized virus-derived small interfering RNA (vsiRNA) levels and their unique properties including terminal modifications as well as, unusual for canonical Dicer cleavage, predominant perfectly matching sequence overlaps in blunt ended vsiRNA duplexes. Taken together, the data suggests that control of viral replication is directly mediated by the canonical RNAi response. This study opens the door to further investigations of antiviral RNAi in other protistan parasites and suggests that, where present, canonical RNAi is critical for such activities.
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Leishmania guyanensis controls endogenous viral replication by a canonical RNA interference pathway — 科研速览 Science Skim