Mechanistic Insights into Protein Biogenesis and Maturation on the Ribosome
Abstract
The ribosome is a major cellular machine that converts genetic information into biological function. Emerging data show that the ribosome is not only a protein synthesis machine, but also participates in the maturation of the nascent protein into properly folded and active molecules. The ribosome surface near the opening of the polypeptide exit tunnel can interact directly with the newly synthesized proteins and, more importantly, provides a platform where numerous protein biogenesis factors assemble, gain access to the nascent chain, and direct them into diverse biogenesis pathways. In this article, we review the current understanding of cotranslational protein maturation pathways, with an emphasis on systems in which biochemical studies provided a high-resolution molecular understanding and yielded generalizable mechanistic principles.
Copyright and License
© 2025 Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
Funding
This work is supported by NIH grant R35 GM136321 and NSF award 2219287 to S.O.S, and by a fund from the Johns Hopkins Whiting School of Engineering to A.M.L.
Contributions
Alfred Lentzsch: Writing – review & editing, Writing – original draft. Jae Ho Lee: Writing – review & editing. Shu-ou Shan: Writing – review & editing, Writing – original draft.
Additional details
Identifiers
- PMID
- 40024436
- PMCID
- PMC12353465
Related works
- Describes
- Journal Article: 40024436 (PMID)
- Journal Article: PMC12353465 (PMCID)
Funding
- National Institutes of Health
- R35 GM136321
- National Science Foundation
- MCB-2219287
- Johns Hopkins University
Dates
- Submitted
-
2025-01-13
- Accepted
-
2025-02-25
- Available
-
2025-02-28Available online
- Available
-
2025-10-29Version of record
Caltech Custom Metadata
- Caltech groups
- Division of Chemistry and Chemical Engineering (CCE)
- Publication Status
- Published