Data for: Long-range mRNA folding shapes expression and sequence of bacterial genes

Published: 21 July 2026| Version 1 | DOI: 10.17632/ds7zymk875.1
Contributor:
Manraj Gill

Description

Bacterial gene expression is strongly influenced by local mRNA secondary structure, yet the impact of long-range folding remains poorly understood. Here we show that sequences hundreds of nucleotides from the mRNA 5'-end can act as potent repressors of gene expression through long-range base-pairing to the ribosome binding site (RBS), subjecting anti-RBS sequences to negative selection. Using massively parallel reporter assays in Bacillus subtilis, we identify anti-RBS sequences as among the strongest determinants of reduced mRNA abundance across the transcript body. We demonstrate that distal anti-RBS elements engage in long-range folding with the Shine–Dalgarno sequence, blocking ribosome entry and promoting mRNA decay. Consistent with these repressive effects, anti-RBS–like sequences are depleted throughout diverse bacterial coding sequences but not from leaderless transcripts, and introducing distal anti-RBS to native genes reduces expression. Our findings establish that long-range mRNA folding is a conserved force shaping gene expression and constrains coding sequence evolution.

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Categories

Bacteria, Messenger RNA, Ribosome, Gene Translation, Sequence Analysis, mRNA Stability, Bacterial Evolution

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