The adipocyte-rich microenvironment forms a niche for ovarian cancer metastasis, but the mechanisms driving this process are incompletely understood. Here we show that salt-inducible kinase 2 (SIK2) is overexpressed in adipocyte-rich metastatic deposits compared with ovarian primary lesions. Overexpression of SIK2 in ovarian cancer cells promotes abdominal metastasis while SIK2 depletion prevents metastasis in vivo. Importantly, adipocytes induce calcium-dependent activation and autophosphorylation of SIK2. Activated SIK2 plays a dual role in augmenting AMPK-induced phosphorylation of acetyl-CoA carboxylase and in activating the PI3K/AKT pathway through p85α-S154 phosphorylation. These findings identify SIK2 at the apex of the adipocyte-induced signaling cascades in cancer cells and make a compelling case for targeting SIK2 for therapy in ovarian cancer.

译文

富含脂肪细胞的微环境形成了卵巢癌转移的利基,但驱动这一过程的机制尚不完全清楚。在这里,我们显示与卵巢原发性病变相比,盐诱导激酶2 (SIK2) 在富含脂肪细胞的转移性沉积物中过表达。卵巢癌细胞中SIK2的过表达促进腹部转移,而SIK2的耗竭阻止体内转移。重要的是,脂肪细胞诱导sik2的钙依赖性激活和自磷酸化。活化的SIK2在增强AMPK诱导的乙酰辅酶a羧化酶的磷酸化以及通过p85α-S154磷酸化激活PI3K/AKT途径中起双重作用。这些发现确定了SIK2在癌细胞中脂肪细胞诱导的信号级联的顶点,并为靶向SIK2治疗卵巢癌提供了令人信服的理由。

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