甘氨酸
硼替佐米
基因敲除
嘌呤代谢
谷胱甘肽
化学
细胞生物学
癌症研究
肿瘤微环境
多发性骨髓瘤
骨髓
细胞生长
生物化学
生物
肿瘤细胞
免疫学
氨基酸
基因
酶
作者
Jiliang Xia,Jingyu Zhang,Xuan Wu,Wanqing Du,Yinghong Zhu,Xing Liu,Zhenhao Liu,Bin Meng,Jiaojiao Guo,Qin Yang,Yihui Wang,Qinglin Wang,Xiangling Feng,Guoxiang Xie,Yi Shen,Yanjuan He,Juanjuan Xiang,Minghua Wu,Gang An,Lugui Qiu,Jia Wang,Wen Zhou
标识
DOI:10.1038/s41467-022-31248-w
摘要
Abstract Metabolites in the tumor microenvironment are a critical factor for tumor progression. However, the lack of knowledge about the metabolic profile in the bone marrow (BM) microenvironment of multiple myeloma (MM) limits our understanding of MM progression. Here, we show that the glycine concentration in the BM microenvironment is elevated due to bone collagen degradation mediated by MM cell-secreted matrix metallopeptidase 13 (MMP13), while the elevated glycine level is linked to MM progression. MM cells utilize the channel protein solute carrier family 6 member 9 (SLC6A9) to absorb extrinsic glycine subsequently involved in the synthesis of glutathione (GSH) and purines. Inhibiting glycine utilization via SLC6A9 knockdown or the treatment with betaine suppresses MM cell proliferation and enhances the effects of bortezomib on MM cells. Together, we identify glycine as a key metabolic regulator of MM, unveil molecular mechanisms governing MM progression, and provide a promising therapeutic strategy for MM treatment.
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