Lin Calvin P, Li Harry, Brogan Daniel J, Wang Tianqi, Akbari Omar S, Komives Elizabeth A
bioRxiv. 2024 Sep 14:2024.08.01.606276. doi: 10.1101/2024.08.01.606276.
Type III-E CRISPR-Cas effectors, of which Cas7-11 is the first, are single proteins that cleave target RNAs without nonspecific collateral cleavage, opening new possibilities for RNA editing. Biochemical experiments combined with amide hydrogen-deuterium exchange (HDX-MS) experiments provide a first glimpse of the conformational dynamics of apo Cas7-11. HDX-MS revealed the backbone comprised of the four Cas7 zinc-binding RRM folds are well-folded but insertion sequences are highly dynamic and fold upon binding crRNA. The crRNA causes folding of disordered catalytic loops and β-hairpins, stronger interactions at domain-domain interfaces, and folding of the Cas7.1 processing site. Target RNA binding causes only minor ordering around the catalytic loops of Cas7.2 and Cas7.3. We show that Cas7-11 cannot fully process the CRISPR array and that binding of partially processed crRNA induces multiple states in Cas7-11 and reduces target RNA cleavage. The insertion domain shows the most ordering upon binding of mature crRNA. Finally, we show a crRNA-induced conformational change in one of the TPR-CHAT binding sites providing an explanation for why crRNA binding facilitates TPR-CHAT binding. The results provide the first glimpse of the apo state of Cas7-11 and reveal how its structure and function are regulated by crRNA binding.
III-E型CRISPR-Cas效应蛋白(其中Cas7-11是首个此类蛋白)是一种单蛋白,可切割靶RNA且无非特异性附带切割,为RNA编辑开辟了新的可能性。生化实验与酰胺氢-氘交换(HDX-MS)实验相结合,首次揭示了无活性Cas7-11的构象动力学。HDX-MS显示,由四个Cas7锌结合RRM折叠组成的主链折叠良好,但插入序列高度动态,在结合crRNA时会折叠。crRNA导致无序催化环和β-发夹折叠,结构域-结构域界面处的相互作用增强,以及Cas7.1加工位点折叠。靶RNA结合仅在Cas7.2和Cas7.3的催化环周围引起轻微的有序化。我们发现Cas7-11无法完全加工CRISPR阵列,部分加工的crRNA的结合会在Cas7-11中诱导多种状态并降低靶RNA切割。插入结构域在成熟crRNA结合时显示出最大程度的有序化。最后,我们展示了crRNA诱导的一个TPR-CHAT结合位点的构象变化,解释了crRNA结合为何促进TPR-CHAT结合。这些结果首次揭示了Cas7-11的无活性状态,并揭示了其结构和功能如何受crRNA结合调控。