Suppression of Ca2+ signaling enhances melanoma progression

抑制 Ca2+ 信号传导可促进黑色素瘤进展

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作者:Scott Gross, Robert Hooper, Dhanendra Tomar, Alexander P Armstead, No'ad Shanas, Pranava Mallu, Hinal Joshi, Suravi Ray, Parkson Lee-Gau Chong, Igor Astsaturov, Jeffrey M Farma, Kathy Q Cai, Kumaraswamy Naidu Chitrala, John W Elrod, M Raza Zaidi, Jonathan Soboloff

Abstract

The role of store-operated Ca2+ entry (SOCE) in melanoma metastasis is highly controversial. To address this, we here examined UV-dependent metastasis, revealing a critical role for SOCE suppression in melanoma progression. UV-induced cholesterol biosynthesis was critical for UV-induced SOCE suppression and subsequent metastasis, although SOCE suppression alone was both necessary and sufficient for metastasis to occur. Further, SOCE suppression was responsible for UV-dependent differences in gene expression associated with both increased invasion and reduced glucose metabolism. Functional analyses further established that increased glucose uptake leads to a metabolic shift towards biosynthetic pathways critical for melanoma metastasis. Finally, examination of fresh surgically isolated human melanoma explants revealed cholesterol biosynthesis-dependent reduced SOCE. Invasiveness could be reversed with either cholesterol biosynthesis inhibitors or pharmacological SOCE potentiation. Collectively, we provide evidence that, contrary to current thinking, Ca2+ signals can block invasive behavior, and suppression of these signals promotes invasion and metastasis.

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