Aass Kristin Roseth, Mjelle Robin, Kastnes Martin H, Tryggestad Synne S, van den Brink Luca M, Aass Roseth Ingrid, Westhrin Marita, Zahoor Muhammad, Moen Siv H, Vikene Nedal Tonje M, Buene Glenn, Misund Kristine, Sponaas Anne-Marit, Ma Qianli, Sundan Anders, Groen Richard Wj, Slørdahl Tobias S, Waage Anders, Standal Therese
Centre of Molecular Inflammation Research, Norwegian University of Science and Technology, Trondheim 7491, Norway.
Department of Clinical and Molecular Medicine, Norwegian University of Science and Technology, Trondheim 7491, Norway.
iScience. 2021 Dec 13;25(1):103605. doi: 10.1016/j.isci.2021.103605. eCollection 2022 Jan 21.
Interleukin-32 (IL-32) is a nonclassical cytokine expressed in cancers, inflammatory diseases, and infections. Its expression is regulated by two different oxygen sensing systems; HIF1α and cysteamine dioxygenase (ADO), indicating that IL-32 may be involved in the response to hypoxia. We here demonstrate that endogenously expressed, intracellular IL-32 interacts with components of the mitochondrial respiratory chain and promotes oxidative phosphorylation. Knocking out IL-32 in three myeloma cell lines reduced cell survival and proliferation and . High-throughput transcriptomic and MS-metabolomic profiling of IL-32 KO cells revealed that cells depleted of IL-32 had perturbations in metabolic pathways, with accumulation of lipids, pyruvate precursors, and citrate. IL-32 was expressed in a subgroup of myeloma patients with inferior survival, and primary myeloma cells expressing IL-32 had a gene signature associated with immaturity, proliferation, and oxidative phosphorylation. In conclusion, we demonstrate a previously unrecognized role of IL-32 in the regulation of plasma cell metabolism.
白细胞介素-32(IL-32)是一种在癌症、炎症性疾病和感染中表达的非经典细胞因子。其表达受两种不同的氧传感系统调控,即缺氧诱导因子1α(HIF1α)和半胱胺双加氧酶(ADO),这表明IL-32可能参与缺氧反应。我们在此证明,内源性表达的细胞内IL-32与线粒体呼吸链的成分相互作用并促进氧化磷酸化。在三种骨髓瘤细胞系中敲除IL-32可降低细胞存活和增殖能力。对IL-32基因敲除细胞的高通量转录组学和质谱代谢组学分析表明,缺乏IL-32的细胞代谢途径存在紊乱,伴有脂质、丙酮酸前体和柠檬酸的积累。IL-32在生存较差的骨髓瘤患者亚组中表达,表达IL-32的原发性骨髓瘤细胞具有与不成熟、增殖和氧化磷酸化相关的基因特征。总之,我们证明了IL-32在浆细胞代谢调节中具有先前未被认识的作用。