Kunming Liu, Chunjiang Ren, Xinyue Liu, Xiaoyang Qi, Yao Liu, Fangyao Yao, Shengsheng Ma, Senfeng Zhang, Xin Y Wong, Xiaolong Wang, Tao Hu, CHUNYI HU. Shared CRISPR Arrays Underpin Type I-A/I-B CoexistenceJ. Protein&Cell.
Citation: Kunming Liu, Chunjiang Ren, Xinyue Liu, Xiaoyang Qi, Yao Liu, Fangyao Yao, Shengsheng Ma, Senfeng Zhang, Xin Y Wong, Xiaolong Wang, Tao Hu, CHUNYI HU. Shared CRISPR Arrays Underpin Type I-A/I-B CoexistenceJ. Protein&Cell.

Shared CRISPR Arrays Underpin Type I-A/I-B Coexistence

  • CRISPR–Cas systems provide adaptive immunity in prokaryotes, yet how multiple CRISPR-Cas subtypes coexist and coordinate within a single genome remains unclear. Comparative genomic analysis revealed that nearly one-third of type I-A CRISPR-Cas3 systems are adjacent to a type I-B system, often sharing a single CRISPR array. Using Thermococcus siculi RG-20 (Tsi) as a model, we show that purified TsiCas6a and TsiCas6b independently recognize and cleave the shared pre-crRNA, producing mature crRNAs with comparable efficiency. Plasmid interference assays further demonstrated that crRNAs produced by either Cas6a or Cas6b enzyme could guide both Type I-A and Type I-B interference complexes. This interchangeability shows that crRNAs generated by either Cas6a or Cas6b can be loaded into, and function with, both type I-A and type I-B interference complexes. Structural modelling revealed distinct but complementary recognition strategies for Cas6a and Cas6b, and mutational analysis of their RNA-binding residues impaired pre-crRNA cleavage and abolished interference activity. Together, these results uncover a shared-array logic in which Cas6a/Cas6b-compatible processing routes a single pre-crRNA to multiple type I effectors—providing a potential mechanism for subtype co-existence, a plausible explanation for array-less (or “orphan”) interference modules, and an evolutionary bet-hedging strategy that prevents Acrs from shutting down immunity wholesale.
  • loading

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return