open access publication

Preprint, 2024

Multilayered interaction between CRISPR-Cas subtype I-A and adjacently encoded Acrs of virus SIRV2

bioRxiv, Page 2024.04.02.587611, 10.1101/2024.04.02.587611

Contributors

Bhoobalan-Chitty, Yuvaraj 0000-0002-8104-7657 [1] Dwiputra, Nicodemus [1] Mayo-Muñoz, David 0000-0003-0751-4787 [1] Baadsgaard, Karen [1] Detlefsen, Mette Rehtse Kvistrup Skafte [1] Peng, Xu 0000-0003-3926-7514 (Corresponding author) [1]

Affiliations

  1. [1] University of Copenhagen
  2. [NORA names: KU University of Copenhagen; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Abstract Among the >100 anti-CRISPRs (Acrs) identified to date, the vast majority inhibit CRISPR-Cas immunity on its own. Here we report a multilayered interaction between CRISPR-Cas subtype I-A immunity and two Acrs encoded adjacently in the genome of Saccharolobus virus SIRV2, gp47 (AcrIA3) and gp48 (previously known as AcrIIIB1, hence termed AcrIIIB1/AcrIA4). The host subtype I-A CRISPR-Cas interference module was shown previously to be up-regulated upon SIRV2 infection, through the release of transcriptional repressor Csa3b from the promoter. We demonstrate that AcrIIIB1/AcrIA4 on its own increases viral infectivity 4-5 orders of magnitude in the presence of the host subtype I-A CRISPR-Cas immunity. This Acr is able to completely inhibit the subtype I-A CRISPR-Cas immunity when the transcriptional activation of the latter is artificially removed, suggesting that Acrs might be one of the driving forces for the evolution of CRISPR-Cas up-regulation. Interestingly, AcrIA3 cooperates with AcrIIIB1/AcrIA4 by inhibiting transcriptional activation of the host subtype I-A CRISPR-Cas interference module through interaction with the promoter of the latter. Taken together, our data shed light on how virus-host arms race shaped the evolution of CRISPR-Cas and Acrs.

Keywords

ACR, Abstract, CRISPR-Cas, CRISPR-Cas immunity, I-A, SIRV2, activity, arms race, data, date, driving, driving force, evolution, evolution of CRISPR-Cas, force, genome, gp47, gp48, host, identified to date, immunity, infection, infection 4, inhibit transcriptional activation, interaction, interference modulation, magnitude, modulation, multilayer interactions, presence, promoter, race, release, subtypes, subtypes I-A, transcriptional activity, up-regulated, virus-host arms race

Funders

  • Danish Agency for Science and Higher Education
  • Novo Nordisk Foundation

Data Provider: Digital Science