bioRxiv · 10.1101/651240
eIF3 promotes early translation elongation to ensure mitochondrial homeostasis and skeletal muscle health
Abstract
eIF3 is a multi-subunit complex with numerous functions in canonical translation initiation. eIF3 was also found to interact with 40S and 60S ribosomal proteins and translation elongation factors, but a direct involvement in translation elongation has never been demonstrated. We found that eIF3 deficiency reduced early ribosomal elongation speed between codons 25 and 75 on a set of [~]2,700 mRNAs encoding proteins associated with mitochondrial and membrane functions, resulting in defective synthesis of their encoded proteins. To promote elongation, eIF3 interacts with 80S ribosomes translating the first [~]60 codons and serves to recruit protein quality control factors, functions required for normal mitochondrial physiology. Accordingly, eIF3e+/- mice accumulate defective mitochondria in skeletal muscle and show a progressive decline in muscle strength. Hence, eIF3 interacts with 80S ribosomes to enhance, at the level of early elongation, the synthesis of proteins with membrane-associated functions, an activity that is critical for mitochondrial physiology and muscle health.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Lin, Y., Li, F., Huang, L., Duan, H., Fang, J., Sun, L., Xing, X., Tian, G., Cheng, Y., Yang, X., Wolf, D. A.. 2019-05-29. eIF3 promotes early translation elongation to ensure mitochondrial homeostasis and skeletal muscle health. https://doi.org/10.1101/651240
Cite the original work for its findings. Save a collection to share your selection of sources.