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The eIF4A2 negative regulator of mRNA translation promotes extracellular matrix deposition to accelerate hepatocellular carcinoma initiation

Moore, M.; Pardo, L.; Mitchell, L.; Schmidt, T.; May, S.; Mueller, M.; Strathdee, D.; Bryson, S.; Hodge, K.; Lilla, S.; Zanivan, S.; Waldron, J.; McGarry, L.; Peter-Durairaj, R.; Kanellos, G.; Nixon, C.; Ballantyne, F.; LeQuesne, J.; Sansom, O. J.; Bird, T.; Bushell, M.; Norman, J. C.

2023-08-16 cancer biology
10.1101/2023.08.16.553544 bioRxiv
Show abstract

Increased protein synthesis supports growth of established tumours. However, how mRNA translation contributes to early tumorigenesis remains unclear. Here we show that following oncogene activation, hepatocytes enter a non-proliferative/senescent-like phase characterized by 5{beta}1 integrin-dependent deposition of fibronectin-rich extracellular matrix (ECM) niches. These niches then promote exit from oncogene-induced senescence to permit progression to proliferating hepatocellular carcinoma (HCC). Removal of eIF4A2, a negative regulator of mRNA translation, boosts the synthesis of membrane/secretory proteins which drives a compensatory increase in the turnover/degradation of membrane proteins including 5{beta}1 integrin. This increased membrane protein degradation, in turn, compromises generation of ECM-rich tumour initiation niches, senescence-exit and progression to proliferating HCC. Consistently, pharmacological inhibition of mRNA translation following eIF4A2 loss restores ECM deposition and reinstates HCC progression. Thus, although inhibition of protein synthesis may be an effective way to reduce tumour biomass and the growth of established tumours, our results highlight how agents which reduce mRNA translation, if administered during early tumorigenesis, may awaken senescent cells and promote tumour progression.

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