TY - JOUR
T1 - Cancer-Associated Eukaryotic Translation Initiation Factor 1A Mutants Impair Rps3 and Rps10 Binding and Enhance Scanning of Cell Cycle Genes
AU - Sehrawat, Urmila
AU - Koning, Femke
AU - Ashkenazi, Shaked
AU - Stelzer, Gil
AU - Leshkowitz, Dena
AU - Dikstein, Rivka
N1 - This work was supported by grants from the Minerva Foundation (number 712278) and the Israel Science Foundation (number 843/17) and an internal grant donated by the Auctoriana Anstalt organization. R.D. is the incumbent of the Ruth and Leonard Simon Chair of Cancer Research. R.D. and U.S. conceived of and designed the study, analyzed the data, and wrote the paper. U.S. carried out most of the experiments; F.K. and S.A. performed part of the experiments; G.S. and D.L. performed the analysis of the ribosomal profiling data.
PY - 2019/1/16
Y1 - 2019/1/16
N2 - Protein synthesis is linked to cell proliferation, and its deregulation contributes to cancer. Eukaryotic translation initiation factor 1A (eIF1A) plays a key role in scanning and AUG selection and differentially affects the translation of distinct mRNAs. Its unstructured N-terminal tail (NTT) is frequently mutated in several malignancies. Here we report that eIF1A is essential for cell proliferation and cell cycle progression. Ribosome profiling of eIF1A knockdown cells revealed a substantial enrichment of cell cycle mRNAs among the downregulated genes, which are predominantly characterized by a lengthy 5' untranslated region (UTR). Conversely, eIF1A depletion caused a broad stimulation of 5' UTR initiation at a near cognate AUG, unveiling a prominent role of eIF1A in suppressing 5' UTR translation. In addition, the AUG context-dependent autoregulation of eIF1 was disrupted by eIF1A depletion, suggesting their cooperation in AUG context discrimination and scanning. Importantly, cancer-associated eIF1A NTT mutants augmented the eIF1A positive effect on a long 5' UTR, while they hardly affected AUG selection. Mechanistically, these mutations diminished the eIF1A interaction with Rps3 and Rps10 implicated in scanning arrest. Our findings suggest that the reduced binding of eIF1A NTT mutants to the ribosome retains its open state and facilitates scanning of long 5' UTR-containing cell cycle genes.
AB - Protein synthesis is linked to cell proliferation, and its deregulation contributes to cancer. Eukaryotic translation initiation factor 1A (eIF1A) plays a key role in scanning and AUG selection and differentially affects the translation of distinct mRNAs. Its unstructured N-terminal tail (NTT) is frequently mutated in several malignancies. Here we report that eIF1A is essential for cell proliferation and cell cycle progression. Ribosome profiling of eIF1A knockdown cells revealed a substantial enrichment of cell cycle mRNAs among the downregulated genes, which are predominantly characterized by a lengthy 5' untranslated region (UTR). Conversely, eIF1A depletion caused a broad stimulation of 5' UTR initiation at a near cognate AUG, unveiling a prominent role of eIF1A in suppressing 5' UTR translation. In addition, the AUG context-dependent autoregulation of eIF1 was disrupted by eIF1A depletion, suggesting their cooperation in AUG context discrimination and scanning. Importantly, cancer-associated eIF1A NTT mutants augmented the eIF1A positive effect on a long 5' UTR, while they hardly affected AUG selection. Mechanistically, these mutations diminished the eIF1A interaction with Rps3 and Rps10 implicated in scanning arrest. Our findings suggest that the reduced binding of eIF1A NTT mutants to the ribosome retains its open state and facilitates scanning of long 5' UTR-containing cell cycle genes.
UR - http://www.scopus.com/inward/record.url?scp=85060129384&partnerID=8YFLogxK
U2 - 10.1128/MCB.00441-18
DO - 10.1128/MCB.00441-18
M3 - مقالة
C2 - 30420357
SN - 0270-7306
VL - 39
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 3
M1 - e00441-18
ER -