FGF19 and its analog Aldafermin cooperate with MYC to induce aggressive hepatocarcinogenesis

Author:

Ursic-Bedoya JoséORCID,Desandré GuillaumeORCID,Chavey CarineORCID,Marie Pauline,Polizzi ArnaudORCID,Rivière Benjamin,Guillou HervéORCID,Assenat Eric,Hibner UrszulaORCID,Gregoire DamienORCID

Abstract

AbstractFGF19 hormone has pleiotropic metabolic functions, notably the modulation of insulin sensitivity, glucose/lipid metabolism and energy homeostasis. On top of its physiological metabolic role, FGF19 has been identified as a potentially targetable oncogenic driver, notably in hepatocellular carcinoma (HCC). Nevertheless, FGF19 remained an attractive candidate for treatment of metabolic disease, prompting the development of analogs uncoupling its metabolic and tumor-promoting activities.Using pre-clinical mice models of somatic mutation driven HCC, we assessed the oncogenicity of FGF19 in combination with frequent HCC tumorigenic alterations: p53 inactivation, CTNNB1 mutation, CCND1 or MYC overexpression. Our data revealed a strong oncogenic cooperation between FGF19 and MYC. Most importantly, we show that this oncogenic synergy is conserved with a FGF19-analog Aldafermin (NGM282), designed to solely mimic the hormone’s metabolic functions. In particular, even a short systemic treatment with recombinant proteins triggered rapid appearance of proliferative foci of MYC-expressing hepatocytes.The fact that FGF19 analog Aldafermin is not fully devoid of the hormone’s oncogenic properties raises concerns in the context of its potential use for patients with damaged, mutation-prone liver.

Publisher

Cold Spring Harbor Laboratory

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