Cancer cell-derived CD69 induced under lipid and oxygen starvation promotes ovarian cancer progression through fibronectin

脂质和氧气缺乏条件下诱导的癌细胞衍生 CD69 通过纤连蛋白促进卵巢癌进展

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作者:Shiro Koizume, Tomohiko Kanayama, Yayoi Kimura, Hisashi Hirano, Tomoko Takahashi, Yukihide Ota, Kaoru Miyazaki, Mitsuyo Yoshihara, Yoshiyasu Nakamura, Tomoyuki Yokose, Hisamori Kato, Katsuya Takenaka, Shinya Sato, Hiroko Tadokoro, Etsuko Miyagi, Yohei Miyagi

Abstract

Cancer tissues generally have molecular oxygen and serum component deficiencies because of poor vascularization. Recently, we revealed that ICAM1 is strongly activated through lipophagy in ovarian clear cell carcinoma (CCC) cells in response to starvation of long-chain fatty acids and oxygen and confers resistance to apoptosis caused by these harsh conditions. CD69 is a glycoprotein that is synthesized in immune cells and is associated with their activation through cellular signaling pathways. However, the expression and function of CD69 in nonhematological cells is unclear. Here, we report that CD69 is induced in CCC cells as in ICAM1. Mass spectrometry analysis of phosphorylated peptides followed by pathway analysis revealed that CD69 augments CCC cell binding to fibronectin (FN) in association with the phosphorylation of multiple cellular signaling molecules including the focal adhesion pathway. Furthermore, CD69 synthesized in CCC cells could facilitate cell survival because the CD69-FN axis can induce epithelial-mesenchymal transition. Experiments with surgically removed tumor samples revealed that CD69 is predominantly expressed in CCC tumor cells compared with other histological subtypes of epithelial ovarian cancer. Overall, our data suggest that cancer cell-derived CD69 can contribute to CCC progression through FN.

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