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Updated: Feb 16, 2026

Analysis of Translation Initiation During Stress Conditions by Polysome Profiling
Published on: May 19, 2014
Translational control of aberrant stress responses as a hallmark of cancer
Amal M El-Naggar1,2,3, Poul H Sorensen1,2
1Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, Canada.
Abstract:
Altered mRNA translational control is emerging as a critical factor in cancer development and progression. Targeting specific elements of the translational machinery, such as mTORC1 or eIF4E, is emerging as a new strategy for innovative cancer therapy. While translation of most mRNAs takes place through cap-dependent mechanisms, a sub-population of cellular mRNA species, particularly stress-inducible mRNAs with highly structured 5'-UTR regions, are primarily translated through cap-independent mechanisms. Intriguingly, many of these mRNAs encode proteins that are involved in tumour cell adaptation to microenvironmental stress, and thus linked to aggressive behaviour including tumour invasion and metastasis. This necessitates a rigorous search for links between microenvironmental stress and aggressive tumour phenotypes. Under stress, cells block global protein synthesis to preserve energy while maintaining selective synthesis of proteins that support cell survival. One highly conserved mechanism to regulate protein synthesis under cell stress is to sequester mRNAs into cytosolic aggregates called stress granules (SGs), where their translation is silenced. SGs confer survival advantages and chemotherapeutic resistance to tumour cells under stress. Recently, it has been shown that genetically blocking SG formation dramatically reduces tumour invasive and metastatic capacity in vivo. Therefore, targeting SG formation might represent a potential treatment strategy to block cancer metastasis. Here, we present the critical link between selective mRNA translation, stress adaptation, SGs, and tumour progression. Further, we also explain how deciphering mechanisms of selective mRNA translation occurs under cell stress holds great promise for the identification of new targets in the treatment of cancer. Copyright © 2018 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
Insights
Altered mRNA translation and stress granules (SGs) are key in cancer progression. Blocking SG formation may inhibit tumor invasion and metastasis, offering a novel therapeutic strategy against aggressive cancers.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Stress Response
Background:
- Altered mRNA translational control is crucial in cancer development.
- Selective mRNA translation, particularly cap-independent mechanisms, supports tumor cell adaptation to stress.
- Stress granules (SGs) are cytosolic aggregates that silence mRNA translation under stress, conferring survival and resistance.
Purpose of the Study:
- To elucidate the link between microenvironmental stress, selective mRNA translation, and tumor progression.
- To highlight the role of stress granules (SGs) in cancer aggressiveness.
- To identify novel therapeutic targets for cancer treatment by understanding stress-induced translation.
Main Methods:
- Review of literature on mRNA translation, stress granules, and cancer.
- Analysis of mechanisms regulating protein synthesis under cellular stress.
- Examination of the impact of SG formation on tumor invasion and metastasis.
Main Results:
- Stress-inducible mRNAs translated via cap-independent mechanisms often encode proteins promoting tumor adaptation.
- Stress granules (SGs) play a critical role in tumor cell survival and chemotherapeutic resistance.
- Genetically blocking SG formation significantly reduces tumor invasive and metastatic capacity in vivo.
Conclusions:
- Targeting SG formation presents a potential therapeutic strategy to combat cancer metastasis.
- Deciphering selective mRNA translation under cell stress can reveal new therapeutic targets for cancer treatment.
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