Cooperation between Different CRISPR-Cas Types Enables Adaptation in an RNA-Targeting System
Year of publication
2021
Authors
Hoikkala, Ville; Ravantti, Janne; Diez-Villasenor, Cesar; Tiirola, Marja; Conrad, Rachel A.; McBride, Mark J.; Moineau, Sylvain; Sundberg, Lotta-Riina
Abstract
CRISPR-Cas immune systems adapt to new threats by acquiring new spacers from invading nucleic acids such as phage genomes. However, some CRISPR-Cas loci lack genes necessary for spacer acquisition despite variation in spacer content between microbial strains. It has been suggested that such loci may use acquisition machinery from cooccurring CRISPR-Cas systems within the same strain. Here, following infection by a virulent phage with a double-stranded DNA (dsDNA) genome, we observed spacer acquisition in the native host Flavobacterium columnare that carries an acquisition-deficient CRISPR-Cas subtype VI-B system and a complete subtype II-C system. We show that the VI-B locus acquires spacers from both the bacterial and phage genomes, while the newly acquired II-C spacers mainly target the viral genome. Both loci preferably target the terminal end of the phage genome, with priming-like patterns around a preexisting II-C protospacer. Through gene deletion, we show that the RNA-cleaving VI-B system acquires spacers in trans using acquisition machinery from the DNA-cleaving II-C system. Our observations support the concept of cross talk between CRISPR-Cas systems and raise further questions regarding the plasticity of adaptation modules.
Show moreOrganizations and authors
University of Helsinki
Ravantti Janne
Publication type
Publication format
Article
Report
No
Parent publication type
Journal
Article type
Original articleAudience
ScientificPeer-reviewed
Peer-ReviewedMINEDU's publication type classification code
A1 Journal article (refereed), original researchPublication channel information
Open access
Open access in the publisher’s service
Yes
Open access of publication channel
Fully open publication channel
Self-archived
Yes
License of the self-archived publication
CC BY
Article processing fee (EUR)
2913
Year of payment for the open publication fee
2021
Other information
Fields of science
Biochemistry, cell and molecular biology; Plant biology, microbiology, virology; Genetics, developmental biology, physiology
Identified topic
[object Object]
Publication country
United States
Internationality of the publisher
International
Language
English
International co-publication
Yes
Co-publication with a company
No
DOI
10.1128/mBio.03338-20
The publication is included in the Ministry of Education and Culture’s Publication data collection
Yes