Phosphoethanolamine Accumulation Protects Cancer Cells under Glutamine Starvation through Downregulation of PCYT2

磷酸乙醇胺积累通过下调 PCYT2 保护谷氨酰胺缺乏的癌细胞

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作者:Tsuyoshi Osawa, Teppei Shimamura, Kyoko Saito, Yoko Hasegawa, Naoko Ishii, Miyuki Nishida, Ritsuko Ando, Ayano Kondo, Muyassar Anwar, Rika Tsuchida, Shinjiro Hino, Akihisa Sakamoto, Kaori Igarashi, Kaori Saitoh, Keiko Kato, Keiko Endo, Shotaro Yamano, Yasuharu Kanki, Yoshihiro Matsumura, Takashi Min

Abstract

Tolerance to severe tumor microenvironments, including hypoxia and nutrient starvation, is a common feature of aggressive cancer cells and can be targeted. However, metabolic alterations that support cancer cells upon nutrient starvation are not well understood. Here, by comprehensive metabolome analyses, we show that glutamine deprivation leads to phosphoethanolamine (PEtn) accumulation in cancer cells via the downregulation of PEtn cytidylyltransferase (PCYT2), a rate-limiting enzyme of phosphatidylethanolamine biosynthesis. PEtn accumulation correlated with tumor growth under nutrient starvation. PCYT2 suppression was partially mediated by downregulation of the transcription factor ELF3. Furthermore, PCYT2 overexpression reduced PEtn levels and tumor growth. In addition, PEtn accumulation and PCYT2 downregulation in human breast tumors correlated with poor prognosis. Thus, we show that glutamine deprivation leads to tumor progression by regulating PE biosynthesis via the ELF3-PCYT2 axis. Furthermore, manipulating glutamine-responsive genes could be a therapeutic approach to limit cancer progression.

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