Vidhyadhar Nandana, Nadra Al-Husini, Arti Vaishnav, Kulathungage H Dilrangi, Jared M Schrader
bioRxiv : the preprint server for biology 2023 Dec 15RNase E is the most common RNA decay nuclease in bacteria, setting the global mRNA decay rate and scaffolding formation of the RNA degradosome complex and BR-bodies. To properly set the global mRNA decay rate, RNase E from Escherichia coli and neighboring γ-proteobacteria were found to autoregulate RNase E levels via the decay of its mRNA's 5' UTR. While the 5' UTR is absent from other groups of bacteria in the Rfam database, we identified that the α-proteobacterium Caulobacter crescentus RNase E contains a similar 5' UTR structure that promotes RNase E autoregulation. In both bacteria, the C-terminal IDR of RNase E is required for proper autoregulation to occur, and this IDR is also necessary and sufficient for RNase E to phase-separate, generating BR-bodies. Using in vitro purified RNase E, we find that the IDR's ability to promote phase-separation correlates with enhanced 5' UTR cleavage, suggesting that phase-separation of RNase E with the 5' UTR enhances autoregulation. Finally, using growth competition experiments we find that a strain capable of autoregulation rapidly outcompetes a strain with a 5' UTR mutation that cannot autoregulate, suggesting autoregulation promotes optimal cellular fitness.
Vidhyadhar Nandana, Nadra Al-Husini, Arti Vaishnav, Kulathungage H Dilrangi, Jared M Schrader. Caulobacter crescentus RNase E condensation contributes to autoregulation and fitness. bioRxiv : the preprint server for biology. 2023 Dec 15
PMID: 38168245
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