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Deletion of Cd44 Inhibits Metastasis Formation of Liver Cancer in Nf2-Mutant Mice
Monserrat Gerardo-Ramírez1, Vanessa Giam1, Diana Becker1
1Department of Medicine I, University Medical Center of the Johannes Gutenberg University, 55131 Mainz, Germany.
Abstract:
Primary liver cancer is the third leading cause of cancer-related death worldwide. An increasing body of evidence suggests that the Hippo tumor suppressor pathway plays a critical role in restricting cell proliferation and determining cell fate during physiological and pathological processes in the liver. Merlin (Moesin-Ezrin-Radixin-like protein) encoded by the NF2 (neurofibromatosis type 2) gene is an upstream regulator of the Hippo signaling pathway. Targeting of Merlin to the plasma membrane seems to be crucial for its major tumor-suppressive functions; this is facilitated by interactions with membrane-associated proteins, including CD44 (cluster of differentiation 44). Mutations within the CD44-binding domain of Merlin have been reported in many human cancers. This study evaluated the relative contribution of CD44- and Merlin-dependent processes to the development and progression of liver tumors. To this end, mice with a liver-specific deletion of the Nf2 gene were crossed with Cd44-knockout mice and subjected to extensive histological, biochemical and molecular analyses. In addition, cells were isolated from mutant livers and analyzed by in vitro assays. Deletion of Nf2 in the liver led to substantial liver enlargement and generation of hepatocellular carcinomas (HCCs), intrahepatic cholangiocarcinomas (iCCAs), as well as mixed hepatocellular cholangiocarcinomas. Whilst deletion of Cd44 had no influence on liver size or primary liver tumor development, it significantly inhibited metastasis formation in Nf2-mutant mice. CD44 upregulates expression of integrin β2 and promotes transendothelial migration of liver cancer cells, which may facilitate metastatic spreading. Overall, our results suggest that CD44 may be a promising target for intervening with metastatic spreading of liver cancer.
Insights
Loss of Merlin (NF2) promotes liver cancer, but CD44 deletion inhibits metastasis by reducing cancer cell migration. CD44 may be a therapeutic target for liver cancer metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Primary liver cancer is a major global health concern.
- The Hippo pathway, regulated by Merlin (NF2), is crucial for liver cell regulation.
- Merlin's tumor-suppressive function depends on its interaction with membrane proteins like CD44.
Purpose of the Study:
- To investigate the roles of CD44 and Merlin in liver tumor development and progression.
- To determine the impact of CD44 on metastasis in the context of NF2 mutations.
Main Methods:
- Generated mice with liver-specific deletion of the NF2 gene crossed with CD44-knockout mice.
- Performed histological, biochemical, and molecular analyses on mutant livers.
- Conducted in vitro assays on isolated liver cancer cells.
Main Results:
- NF2 deletion caused liver enlargement and various primary liver tumors (HCCs, iCCAs).
- CD44 deletion did not affect primary tumor formation but significantly reduced metastasis in NF2-mutant mice.
- CD44 was found to upregulate integrin β2, promoting cancer cell migration.
Conclusions:
- CD44 plays a critical role in liver cancer metastasis, independent of primary tumor initiation.
- CD44 facilitates metastasis by promoting cancer cell transendothelial migration.
- CD44 represents a potential therapeutic target to inhibit liver cancer spread.

