Laboratory of Bacteriology, The Rockefeller University, 1230 York Ave, New York, NY 10065, USA.
Weill Cornell/Rockefeller/Sloan Kettering Tri-Institutional MD-PhD Program, New York, NY, USA.
Nucleic Acids Res. 2024 Sep 23;52(17):10595-10606. doi: 10.1093/nar/gkae597.
Immune responses need to be regulated to prevent autoimmunity. CRISPR-Cas systems provide adaptive immunity in prokaryotes through the acquisition of short DNA sequences from invading viruses (bacteriophages), known as spacers. Spacers are inserted into the CRISPR locus and serve as templates for the transcription of guides used by RNA-guided nucleases to recognize complementary nucleic acids of the invaders and start the CRISPR immune response. In type II-A CRISPR systems, Cas9 uses the guide RNA to cleave target DNA sequences in the genome of infecting phages, and the tracrRNA to bind the promoter of cas genes and repress their transcription. We previously isolated a Cas9 mutant carrying the I473F substitution that increased the frequency of spacer acquisition by 2-3 orders of magnitude, leading to a fitness cost due to higher levels of autoimmunity. Here, we investigated the molecular basis underlying these findings. We found that the I473F mutation decreases the association of Cas9 to tracrRNA, limiting its repressor function, leading to high levels of expression of cas genes, which in turn increase the strength of the type II-A CRISPR-Cas immune response. We obtained similar results for a related type II-A system, and therefore our findings highlight the importance of the interaction between Cas9 and its tracrRNA cofactor in tuning the immune response to balanced levels that enable phage defense but avoid autoimmunity.
免疫反应需要受到调节以防止自身免疫。CRISPR-Cas 系统通过从入侵病毒(噬菌体)中获取短的 DNA 序列(称为间隔序列)在原核生物中提供适应性免疫。间隔序列插入到 CRISPR 基因座中,并作为模板转录 RNA 引导的核酸酶使用的向导,用于识别入侵者的互补核酸并启动 CRISPR 免疫反应。在 II-A 型 CRISPR 系统中,Cas9 使用向导 RNA 切割感染噬菌体基因组中的靶 DNA 序列,而 tracrRNA 结合 cas 基因的启动子并抑制它们的转录。我们之前分离出一种 Cas9 突变体,该突变体携带 I473F 取代,使间隔序列获得的频率增加了 2-3 个数量级,由于自身免疫水平升高而导致适应性成本。在这里,我们研究了这些发现的分子基础。我们发现,I473F 突变降低了 Cas9 与 tracrRNA 的结合,限制了其抑制功能,导致 cas 基因的高水平表达,这反过来又增加了 II-A 型 CRISPR-Cas 免疫反应的强度。我们对相关的 II-A 系统获得了类似的结果,因此我们的研究结果强调了 Cas9 与其 tracrRNA 辅助因子之间相互作用的重要性,这种相互作用可将免疫反应调节至平衡水平,既能防御噬菌体又能避免自身免疫。