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◆ Nucleic acids research2026-09-07

Programmable in vivo mRNA circularization for enhanced gene expression in bacteria.

Seongjun Park, Giho Kim, Min Ha Kim, Yong Hee Han, Geunyung Park, Gibyuck Byun, Hyeonwoo Mun, Ho Joon Kim, Sang Woo Seo

原始摘要(英文原文)· Original abstract
The minute-scale lifetime of mRNA strongly influences bacterial gene expression, whereas a robust and programmable approach to directly control the mRNA stability and topology remains elusive. Here, we develop CRESEnT (Circular RNA Expression for Stable and Enhanced Translation), a programmable in vivo mRNA circularization system based on a permuted intron-exon architecture to engineer mRNA topology. CRESEnT enables facile circularization of mRNA, which led to a substantial increase in protein expression across diverse promoters, RBS variants, genetic cargos, and bacterial hosts. Furthermore, application of CRESEnT to biosynthetic pathways increased the production of several value-added metabolites, demonstrating that mRNA circularization can be harnessed to improve the metabolic performance of microbial cell factories. Together, these results establish RNA topology engineering via circularization as a transformative axis for controlling bacterial gene expression and enhancing the functionality of microbial cells.
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Programmable in vivo mRNA circularization for enhanced gene expression in bacteria. — 科研速览 Science Skim