Community science designed ribosomes with beneficial phenotypes

Author:

Krüger AntjeORCID,Watkins Andrew M.,Wellington-Oguri Roger,Romano JonathanORCID,Kofman Camila,DeFoe Alysse,Kim Yejun,Anderson-Lee JeffORCID,Fisker Eli,Townley JillORCID,d’Aquino Anne E.,Das RhijuORCID,Jewett Michael C.ORCID,

Abstract

AbstractFunctional design of ribosomes with mutant ribosomal RNA (rRNA) can expand opportunities for understanding molecular translation, building cells from the bottom-up, and engineering ribosomes with altered capabilities. However, such efforts are hampered by cell viability constraints, an enormous combinatorial sequence space, and limitations on large-scale, 3D design of RNA structures and functions. To address these challenges, we develop an integrated community science and experimental screening approach for rational design of ribosomes. This approach couples Eterna, an online video game that crowdsources RNA sequence design to community scientists in the form of puzzles, with in vitro ribosome synthesis, assembly, and translation in multiple design-build-test-learn cycles. We apply our framework to discover mutant rRNA sequences that improve protein synthesis in vitro and cell growth in vivo, relative to wild type ribosomes, under diverse environmental conditions. This work provides insights into rRNA sequence-function relationships and has implications for synthetic biology.

Funder

Foundation for the National Institutes of Health

Stanford Medicine Discovery Innovation Award

United States Department of Defense | United States Army | U.S. Army Research, Development and Engineering Command | Army Research Office

David and Lucile Packard Foundation

Camille Dreyfus Teacher-Scholar Program

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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