The HIF-1-inducible Lysyl Oxidase activates HIF-1 via the Akt pathway in a positive regulation loop and synergizes with HIF-1 in promoting tumor cell growth.

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Pez, Floriane | Dayan, Frédéric | Durivault, Jérome | Kaniewski, Bastien | Aimond, Géraldine | Le Provost, Gabrielle S | Deux, Blandine | Clézardin, Philippe | Sommer, Pascal | Pouyssegur, Jacques | Reynaud, Caroline

Edité par CCSD ; American Association for Cancer Research -

International audience. Adaptation to hypoxia is a driving force for tumor progression that leads to therapy resistance and poor clinical outcome. Hypoxic responses are mainly mediated by hypoxia-inducible factor-1 (HIF-1). One critical HIF-1 target mediating tumor progression is lysyl oxidase (LOX), which catalyzes cross-linking of collagens and elastin in the extracellular matrix thereby regulating the tissue tensile strength. Paradoxically, LOX has been reported to be both upregulated or downregulated in cancer cells, especially in colorectal cancer. Thus, we hypothesized that LOX might regulate expression of HIF-1 to create a self-timing regulatory circuit. Using human colorectal carcinoma cell lines where HIF-1 and LOX expression could be modulated, we showed that LOX induction enhanced HIF-1 expression, whereas LOX silencing reduced it. Mechanistic investigations revealed that LOX activated the PI3K-Akt signaling pathway, thereby upregulating HIF-1α protein synthesis in a manner requiring LOX-mediated hydrogen peroxide production. Consistent with these results, cancer cells proliferation was stimulated by secreted and active LOX in a HIF-1α-dependent fashion. Further, nude mice xenograft assays established that HIF-1 potentiated LOX action on tumor growth in vivo. Taken together, these findings provide compelling evidence that LOX and HIF-1 act in synergy to foster tumor formation, and they suggest that HIF-1/LOX mutual regulation is a pivotal mechanism in the adaptation of tumor cells to hypoxia.

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