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Deep mutational scanning reveals the molecular determinants of RNA polymerase-mediated adaptation and tradeoffs

  • Alaksh Choudhury
  • , Benoit Gachet
  • , Zoya Dixit
  • , Roland Faure
  • , Ryan T. Gill
  • , Olivier Tenaillon
  • Laboratoire de Probabilités et Modèles Aléatoires
  • Institut Chimie Biologie Innovation
  • Institut Cochin
  • IRISA
  • Université Libre de Bruxelles
  • University of Colorado Boulder
  • Technical University of Denmark

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Résumé

RNA polymerase (RNAP) is emblematic of complex biological systems that control multiple traits involving trade-offs such as growth versus maintenance. Laboratory evolution has revealed that mutations in RNAP subunits, including RpoB, are frequently selected. However, we lack a systems view of how mutations alter the RNAP molecular functions to promote adaptation. We, therefore, measured the fitness of thousands of mutations within a region of rpoB under multiple conditions and genetic backgrounds, to find that adaptive mutations cluster in two modules. Mutations in one module favor growth over maintenance through a partial loss of an interaction associated with faster elongation. Mutations in the other favor maintenance over growth through a destabilized RNAP-DNA complex. The two molecular handles capture the versatile RNAP-mediated adaptations. Combining both interaction losses simultaneously improved maintenance and growth, challenging the idea that growth-maintenance tradeoff resorts only from limited resources, and revealing how compensatory evolution operates within RNAP.

langue originaleAnglais
Numéro d'article6319
journalNature Communications
Volume14
Numéro de publication1
Les DOIs
étatPublié - 1 déc. 2023
Modification externeOui

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