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Translational Dysregulation in Cancer: Molecular Insights and Potential Clinical Applications in Biomarker
Christos Vaklavas1, Scott W Blume1, William E Grizzle2
1Department of Medicine, Division of Hematology/Oncology, University of Alabama at Birmingham, Birmingham, AL, United States.
Abstract:
Although transcript levels have been traditionally used as a surrogate measure of gene expression, it is increasingly recognized that the latter is extensively and dynamically modulated at the level of translation (messenger RNA to protein). Over the recent years, significant progress has been made in dissecting the complex posttranscriptional mechanisms that regulate gene expression. This advancement in knowledge came hand in hand with the progress made in the methodologies to study translation both at gene-specific as well as global genomic level. The majority of translational control is exerted at the level of initiation; nonetheless, protein synthesis can be modulated at the level of translation elongation, termination, and recycling. Sequence and structural elements and epitranscriptomic modifications of individual transcripts allow for dynamic gene-specific modulation of translation. Cancer cells usurp the regulatory mechanisms that govern translation to carry out translational programs that lead to the phenotypic hallmarks of cancer. Translation is a critical nexus in neoplastic transformation. Multiple oncogenes and signaling pathways that are activated, upregulated, or mutated in cancer converge on translation and their transformative impact "bottlenecks" at the level of translation. Moreover, this translational dysregulation allows cancer cells to adapt to a diverse array of stresses associated with a hostile microenviroment and antitumor therapies. All elements involved in the process of translation, from the transcriptional template, the components of the translational machinery, to the proteins that interact with the transcriptome, have been found to be qualitatively and/or quantitatively perturbed in cancer. This review discusses the regulatory mechanisms that govern translation in normal cells and how translation becomes dysregulated in cancer leading to the phenotypic hallmarks of malignancy. We also discuss how dysregulated mediators or components of translation can be utilized as biomarkers with potential diagnostic, prognostic, or predictive significance. Such biomarkers have the potential advantage of uniform applicability in the face of inherent tumor heterogeneity and deoxyribonucleic acid instability. As translation becomes increasingly recognized as a process gone awry in cancer and agents are developed to target it, the utility and significance of these potential biomarkers is expected to increase.
Insights
Gene expression is dynamically controlled by translation (messenger RNA to protein), not just transcript levels. Dysregulated translation in cancer drives malignancy and offers potential diagnostic biomarkers.
Area of Science:
- Molecular Biology
- Cancer Biology
- Genetics
Background:
- Gene expression is traditionally measured by transcript levels, but translation (mRNA to protein) is a key regulatory point.
- Recent advances in methodologies allow for detailed study of translational control at both gene-specific and genomic levels.
- Translational control occurs at initiation, elongation, termination, and recycling stages, influenced by transcript elements and modifications.
Purpose of the Study:
- To review the regulatory mechanisms of translation in normal cells.
- To elucidate how translation dysregulation contributes to cancer hallmarks.
- To explore the potential of translation mediators as cancer biomarkers.
Main Methods:
- Literature review of post-transcriptional gene regulation.
- Analysis of translational control mechanisms in normal and cancer cells.
- Discussion of emerging methodologies for studying translation.
Main Results:
- Translation is extensively modulated by sequence, structure, and epitranscriptomic modifications.
- Cancer cells exploit translational control for neoplastic transformation and adaptation to stress.
- Components of the translational machinery are often perturbed in cancer.
Conclusions:
- Dysregulated translation is central to cancer development and progression.
- Mediators of translation hold promise as biomarkers for cancer diagnosis, prognosis, and prediction.
- Targeting translation is a developing therapeutic strategy in oncology.
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