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The Ras/MAPK pathway and hepatocarcinoma: pathogenesis and therapeutic implications
Bénédicte Delire1, Peter Stärkel1,2
1Laboratory of Hepato-Gastroenterology, Institut de Recherche Expérimentale et Clinique (IREC), Catholic University of Louvain, Brussels, Belgium.
Background:
Hepatocellular carcinoma (HCC) is still a major health problem, often diagnosed at an advanced stage. The multikinase inhibitor sorafenib is to date the sole approved systemic therapy. Several signalling pathways are implicated in tumour development and progression. Among these pathways, the Ras/MAPK pathway is activated in 50-100% of human HCCs and is correlated with a poor prognosis. The aim of this work was to review the main intracellular mechanisms leading to aberrant Ras pathway activation in HCC and the potential therapeutic implications.
Materials And Methods:
This review is based on the material found on PubMed up to December 2014. 'Ras signaling, Ras dysregulation, Ras inhibition, MAPK pathway, cancer, hepatocarcinoma and liver cancer' alone or in combination were the main terms used for online research.
Results:
Multiple mechanisms lead to the deregulation of the Ras pathway in liver cancer. Ras and Raf gene mutations are rare events in human hepatocarcinogenesis in contrast to experimental models in rodents. Downregulation of several Ras/MAPK pathway inhibitors such as GAPs, RASSF proteins, DUSP1, Sprouty and Spred proteins is largely implicated in the aberrant activation of this pathway in the context of wild-type Ras and Raf genes. Epigenetic or post-transcriptional mechanisms lead to the downregulation of these tumour suppressor genes.
Conclusion:
Ras/MAPK pathway effectors may be considered as potential therapeutic targets in the field of HCC. In particular after the arrival of sorafenib, more Ras/MAPK inhibitors have emerged and are still in preclinical or clinical investigation for HCC therapy.
Insights
Aberrant activation of the Ras/MAPK pathway, common in liver cancer (HCC), is driven by reduced inhibitors, not gene mutations. Targeting this pathway offers potential new therapies for HCC.
Area of Science:
- Oncology
- Molecular Biology
- Hepatology
Background:
- Hepatocellular carcinoma (HCC) presents a significant health challenge, frequently diagnosed at advanced stages.
- Sorafenib is the only approved systemic treatment, highlighting the need for novel therapeutic strategies.
- The Ras/MAPK pathway is frequently activated in HCC (50-100%) and associated with poor prognosis.
Purpose of the Study:
- To review intracellular mechanisms causing aberrant Ras pathway activation in HCC.
- To explore potential therapeutic implications of targeting the Ras pathway in HCC.
Main Methods:
- Literature review using PubMed up to December 2014.
- Search terms included 'Ras signaling', 'Ras dysregulation', 'Ras inhibition', 'MAPK pathway', 'cancer', 'hepatocarcinoma', and 'liver cancer'.
Main Results:
- Ras/Raf gene mutations are uncommon in human HCC, unlike in rodent models.
- Downregulation of Ras/MAPK pathway inhibitors (e.g., GAPs, RASSF, DUSP1, Sprouty, Spred) is a key mechanism for pathway activation in wild-type Ras/Raf HCC.
- Epigenetic and post-transcriptional mechanisms contribute to the downregulation of these tumor suppressor genes.
Conclusions:
- Ras/MAPK pathway effectors represent promising therapeutic targets for HCC.
- Emerging Ras/MAPK inhibitors are under preclinical and clinical investigation for HCC treatment, particularly following sorafenib's approval.
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