Bioinformatic analysis of type III CRISPR systems reveals key properties and new effector families

Ville Petteri Hoikkala, Shirley Graham, Malcolm White*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Recognition of RNA from invading mobile genetic elements (MGE) prompts type III CRISPR systems to activate an HD nuclease domain and/or a nucleotide cyclase domain in the Cas10 subunit, eliciting an immune response. The cyclase domain can generate a range of nucleotide second messengers, which in turn activate a diverse family of ancillary effector proteins. These provide immunity by non-specific degradation of host and MGE nucleic acids or proteins, perturbation of membrane potentials, transcriptional responses, or the arrest of translation. The wide range of nucleotide activators and downstream effectors generates a complex picture that is gradually being resolved. Here, we carry out a global bioinformatic analysis of type III CRISPR loci in prokaryotic genomes, defining the relationships of Cas10 proteins and their ancillary effectors. Our study reveals that cyclic tetra-adenylate is by far the most common signalling molecule used and that many loci have multiple effectors. These typically share the same activator and may work synergistically to combat MGE. We propose four new candidate effector protein families and confirm experimentally that the Csm6-2 protein, a highly diverged, fused Csm6 effector, is a ribonuclease activated by cyclic hexa-adenylate.
Original languageEnglish
Pages (from-to)7129–7141
Number of pages13
JournalNucleic Acids Research
Volume52
Issue number12
Early online date29 May 2024
DOIs
Publication statusPublished - 8 Jul 2024

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