Effects of individual base-pairs on in vivo target search and destruction kinetics of bacterial small RNA.

Poddar, Anustup; Azam, Muhammad S; Kayikcioglu, Tunc; Bobrovskyy, Maksym; Zhang, Jichuan; Ma, Xiangqian; Labhsetwar, Piyush; Fei, Jingyi et al. · Nat Commun · 2021

basic_science · Level V

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Abstract

Base-pairing interactions mediate many intermolecular target recognition events. Even a single base-pair mismatch can cause a substantial difference in activity but how such changes influence the target search kinetics in vivo is unknown. Here, we use high-throughput sequencing and quantitative super-resolution imaging to probe the mutants of bacterial small RNA, SgrS, and their regulation of ptsG mRNA target. Mutations that disrupt binding of a chaperone protein, Hfq, and are distal to the mRNA annealing region still decrease the rate of target association, k<sub>on</sub>, and increase the dissociation rate, k<sub>off</sub>, showing that Hfq directly facilitates sRNA-mRNA annealing in vivo. Single base-pair mismatches in the annealing region reduce k<sub>on</sub> by 24-31% and increase k<sub>off</sub> by 14-25%, extending the time it takes to find and destroy the target by about a third. The effects of disrupting contiguous base-pairing are much more modest than that expected from thermodynamics, suggesting that Hfq buffers base-pair disruptions.

Medical subject headings