Transforming growth factor beta type 1 (TGF-β) and hypoxia-inducible factor 1 (HIF-1) transcription complex as master regulators of the immunosuppressive protein galectin-9 expression in human cancer and embryonic cells

转化生长因子 β 1 型 (TGF-β) 和缺氧诱导因子 1 (HIF-1) 转录复合物作为人类癌症和胚胎细胞中免疫抑制蛋白半乳糖凝集素 9 表达的主要调节剂

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作者:Anette Teo Hansen Selnø, Stephanie Schlichtner, Inna M Yasinska, Svetlana S Sakhnevych, Walter Fiedler, Jasmin Wellbrock, Elena Klenova, Ludmila Pavlova, Bernhard F Gibbs, Martin Degen, Isabelle Schnyder, Nijas Aliu, Steffen M Berger, Elizaveta Fasler-Kan, Vadim V Sumbayev

Abstract

Galectin-9 is one of the key proteins employed by a variety of human malignancies to suppress anti-cancer activities of cytotoxic lymphoid cells and thus escape immune surveillance. Human cancer cells in most cases express higher levels of galectin-9 compared to non-transformed cells. However, the biochemical mechanisms underlying this phenomenon remain unclear. Here we report for the first time that in human cancer as well as embryonic cells, the transcription factors hypoxia-inducible factor 1 (HIF-1) and activator protein 1 (AP-1) are involved in upregulation of transforming growth factor beta 1 (TGF-β1) expression, leading to activation of the transcription factor Smad3 through autocrine action. This process triggers upregulation of galectin-9 expression in both malignant (mainly in breast and colorectal cancer as well as acute myeloid leukaemia (AML)) and embryonic cells. The effect, however, was not observed in mature non-transformed human cells. TGF-β1-activated Smad3 therefore displays differential behaviour in human cancer and embryonic vs non-malignant cells. This study uncovered a self-supporting biochemical mechanism underlying high levels of galectin-9 expression operated by the human cancer and embryonic cells employed in our investigations. Our results suggest the possibility of using the TGF-β1 signalling pathway as a potential highly efficient target for cancer immunotherapy.

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