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Updated: May 10, 2026

Monitoring eIF4F Assembly by Measuring eIF4E-eIF4G Interaction in Live Cells
Published on: May 1, 2020
eIF4B phosphorylation by pim kinases plays a critical role in cellular transformation by Abl oncogenes
Jianling Yang1, Jun Wang, Ke Chen
1CAS Key Laboratory of Pathogenic Microbiology and Immunology, Institute of Microbiology, Chinese Academy of Sciences (CAS), Beijing 100101, China.
Abstract:
Alterations in translation occur in cancer cells, but the precise pathogenic processes and mechanistic underpinnings are not well understood. In this study, we report that interactions between Pim family kinases and the translation initiation factor eIF4B are critical for Abl oncogenicity. Pim kinases, Pim-1 and Pim-2, both directly phosphorylated eIF4B on Ser406 and Ser422. Phosphorylation of eIF4B on Ser422 was highly sensitive to pharmacologic or RNA interference-mediated inhibition of Pim kinases. Expression and phosphorylation of eIF4B relied upon Abl kinase activity in both v-Abl- and Bcr-Abl-expressing leukemic cells based on their blockade by the Abl kinase inhibitor imatinib. Ectopic expression of phosphomimetic mutants of eIF4B conferred resistance to apoptosis by the Pim kinase inhibitor SMI-4a in Abl-transformed cells. In contrast, silencing eIF4B sensitized Abl-transformed cells to imatinib-induced apoptosis and also inhibited their growth as engrafted tumors in nude mice. Extending these observations, we found that primary bone marrow cells derived from eIF4B-knockdown transgenic mice were less susceptible to Abl transformation, relative to cells from wild-type mice. Taken together, our results identify eIF4B as a critical substrate of Pim kinases in mediating the activity of Abl oncogenes, and they highlight eIF4B as a candidate therapeutic target for treatment of Abl-induced cancers.
Insights
Pim kinases phosphorylate translation factor eIF4B, crucial for Abl oncogene activity in cancer. Targeting eIF4B offers a new therapeutic strategy for Abl-induced cancers.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cancer cells exhibit altered translation, but underlying mechanisms remain unclear.
- Abl oncogenes drive cancer development, yet their precise regulation is not fully understood.
Purpose of the Study:
- To investigate the role of Pim kinases and translation initiation factor eIF4B in Abl oncogenicity.
- To identify eIF4B as a potential therapeutic target in Abl-induced cancers.
Main Methods:
- Investigated interactions between Pim kinases and eIF4B using phosphorylation site analysis (Ser406, Ser422).
- Utilized Abl kinase inhibitor imatinib and RNA interference to assess eIF4B dependency on Abl activity.
- Employed phosphomimetic mutants and knockdown models in Abl-transformed cells and primary mouse bone marrow cells.
Main Results:
- Pim-1 and Pim-2 directly phosphorylate eIF4B on Ser406 and Ser422.
- eIF4B phosphorylation is dependent on Abl kinase activity and sensitive to Pim kinase inhibition.
- Silencing eIF4B inhibits tumor growth and sensitizes cells to imatinib-induced apoptosis.
Conclusions:
- eIF4B is a critical substrate of Pim kinases, mediating Abl oncogene activity.
- eIF4B represents a promising therapeutic target for treating Abl-induced cancers.
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