| Literature DB >> 32882814 |
Anaïs Aulas1, Pascal Finetti1, Shawn M Lyons2,3, François Bertucci1, Daniel Birnbaum1, Claire Acquaviva1, Emilie Mamessier1.
Abstract
Cancer treatments are constantly evolving with new approaches to improve patient outcomes. Despite progresses, too many patients remain refractory to treatment due to either the development of resistance to therapeutic drugs and/or metastasis occurrence. Growing evidence suggests that these two barriers are due to transient survival mechanisms that are similar to those observed during stress response. We review the literature and current available open databases to study the potential role of stress response and, most particularly, the involvement of Stress Granules (proteins) in cancer. We propose that Stress Granule proteins may have prognostic value for patients.Entities:
Keywords: CAPRIN-1; G3BP1; G3BP2; TIA-1; TIAR; USP10; biomarker; cancer prognosis; cell death; metastasis; pro-survival properties; resistance; stress granules
Year: 2020 PMID: 32882814 PMCID: PMC7564653 DOI: 10.3390/cancers12092470
Source DB: PubMed Journal: Cancers (Basel) ISSN: 2072-6694 Impact factor: 6.639
Figure 1Inhibition of translation pathways to induce the formation of SGs. (A) Active translation initiation complex (basal condition). Two pathways could be activated to induce translation inhibition upstream SGs formation. Under basal conditions, EIF2α is not phosphorylated and could allow the formation of the EIF2: tRNAiMet: GTP ternary complex of translation initiation. Additionally, MTOR is active and constitutively phosphorylates EIF4E-Binding Protein (4EBP). (B) The phosphorylation of a subunit of EIF2, EIF2α (or EIF2S1), by one (or more) kinase(s), notably HRI/EIF2AK1, PKR/EIF2AK2, PERK/EIF2AK3 and/or GCN2/EIF2AK4, prevents the hydrolyzed GDP from leaving the ternary complex EIF2α-tRNAmet-GTP by blocking the formation of an active complex with ATP necessary for translation initiation. (C) Hyper-phosphorylated 4EBP cannot interact with EIF4E, the mRNA cap-binding protein. However, induction of a stress response inactivates MTOR leading to a rapid de-phosphorylation of 4EBP, thereby allowing it to interact with EIF4E. The EIF4E: 4EBP interaction prevents EIF4E: EIF4G complex formation.
Figure 2Structure of stress granules (SGs) related proteins. SGs related proteins are represented according to domains described in the Uniprot database.
Figure 3Forest plot showing the hazard ratio for survival events of the mRNA expression of SGs genes according to overall and metastasis-free survival in breast cancer, overall and relapse-free survival in colon cancer, and overall and disease-free survival in pancreatic cancer patients. A ratio greater than one indicates a poor prognosis and a ratio lower than one indicates good prognosis. The black squares correspond to significant genes and the grey ones to non-significant genes. The analysis was performed according to supplementary material 1 and Table S1.
Kaplan–Maier analysis on SGs protein (high vs. low expression). Summary of Kaplan–Meier survival analysis found in the literature [64,65,68,136,137,138,139,140,141,142,143,144,145,146,147,148,149,150,151,152]. Data are presented for patients with high expression of the protein compared with patient with low expression of the protein. «Poor» means that patient with high protein expression have a worse prognosis than patients with a lower expression. «Good» means that patients with high protein expression have a better prognosis than patients with a lower expression.
| Cancer Type | G3BP1 | G3BP2 | TIA-1 | CAPRIN-1 | USP10 |
|---|---|---|---|---|---|
| Breast | Poor [ | Poor [ | |||
| Colon/Colo-Rectal | Poor [ | ||||
| Sarcoma | Poor [ | ||||
| Stomach | Poor [ | Good [ | |||
| Lung | Poor [ | Good [ | |||
| Liver | Poor [ | Poor [ | Poor [ | ||
| Prostate | Poor [ | Good [ | |||
| Intestinal | Good [ | ||||
| Ovarian | Good [ | ||||
| Osteosarcoma | Poor [ | ||||
| Lymphoma | Poor [ |
Figure 4The two steps regulation of SGs component in cancer. During oncogenesis, there is a global increased expression of mRNA encoding SGs-related proteins. Protein, but not mRNA, expression levels are prognostic for survival, suggesting different layers of regulation for SGs in cancer.
Figure 5Link between SGs proteins and prognosis in patients. Overexpression of G3BP1, G3BP2, Table 1. TIAR and CAPRIN1 are linked to increased ability to form SG. Whereas increased expression of USP10 decreases the cell ability to form SGs in response to stimuli. Increased expression G3BP1, G3BP2, TIA-1, TIAR and CAPRIN1 proteins are reported as linked to poor prognosis, whereas increased expression of USP10 is a good prognosis for patients.