Center for Neuroendocrine Tumors, Fudan University Shanghai Cancer Center, Shanghai 200032, China.
Department of Pancreatic Surgery, Fudan University Shanghai Cancer Center, Shanghai 200032, China.
Acta Biochim Biophys Sin (Shanghai). 2022 Nov 25;54(11):1599-1609. doi: 10.3724/abbs.2022162.
Pancreatic neuroendocrine tumor (pNET) is the second most common malignant tumors of the pancreas. Multiple endocrine neoplasia 1 ( ) is the most frequently mutated gene in pNETs and MEN1-encoded protein, menin, is a scaffold protein that interacts with transcription factors and chromatin-modifying proteins to regulate various signaling pathways. However, the role of MEN1 in lipid metabolism has not been studied in pNETs. In this study, we perform targeted metabolomics analysis and find that MEN1 promotes the generation and oxidation of polyunsaturated fat acids (PUFAs). Meanwhile lipid peroxidation is a hallmark of ferroptosis, and we confirm that MEN1 promotes ferroptosis by inhibiting the activation of mTOR signaling which is the central hub of metabolism. We show that stearoyl-coA desaturase (SCD1) is the downstream of MEN1-mTOR signaling and oleic acid (OA), a metabolite of SCD1, recues the lipid peroxidation caused by MEN1 overexpression. The negative correlation between MEN1 and SCD1 is further verified in clinical specimens. Furthermore, we find that BON-1 and QGP-1 cells with MEN1 overexpression are more sensitive to everolimus, a widely used drug in pNETs that targets mTOR signaling. In addition, combined use everolimus with ferroptosis inducer, RSL3, possesses a more powerful ability to kill cells, which may provide a new strategy for the comprehensive therapy of pNETs.
胰腺神经内分泌肿瘤(pNET)是胰腺的第二大常见恶性肿瘤。多发性内分泌肿瘤 1 型(MEN1)是 pNET 中最常突变的基因,MEN1 编码的蛋白 menin 是一种支架蛋白,与转录因子和染色质修饰蛋白相互作用,调节各种信号通路。然而,MEN1 在 pNET 中的脂质代谢中的作用尚未得到研究。在这项研究中,我们进行了靶向代谢组学分析,发现 MEN1 促进多不饱和脂肪酸(PUFAs)的生成和氧化。同时,脂质过氧化是铁死亡的标志,我们证实 MEN1 通过抑制 mTOR 信号的激活来促进铁死亡,mTOR 信号是代谢的中心枢纽。我们表明硬脂酰辅酶 A 去饱和酶(SCD1)是 MEN1-mTOR 信号的下游,而 SCD1 的代谢物油酸(OA)可挽救 MEN1 过表达引起的脂质过氧化。MEN1 和 SCD1 之间的负相关在临床标本中进一步得到验证。此外,我们发现 MEN1 过表达的 BON-1 和 QGP-1 细胞对依维莫司(一种广泛用于靶向 mTOR 信号的 pNET 药物)更为敏感。此外,联合使用依维莫司和铁死亡诱导剂 RSL3 具有更强的杀伤细胞能力,这可能为 pNET 的综合治疗提供新策略。