EA 7501 GICC, Université de Tours, Tours, France.
N2C, Nutrition Growth and Cancer, Faculté de Médecine, Université de Tours, Inserm, UMR 1069, Tours, France.
Cell Mol Life Sci. 2022 May 8;79(6):284. doi: 10.1007/s00018-022-04311-4.
Recent evidences highlight a role of the mitochondria calcium homeostasis in the development of colorectal cancer (CRC). To overcome treatment resistance, we aimed to evaluate the role of the mitochondrial sodium-calcium-lithium exchanger (NCLX) and its targeting in CRC. We also identified curcumin as a new inhibitor of NCLX.
We examined whether curcumin and pharmacological compounds induced the inhibition of NCLX-mediated mitochondrial calcium (mtCa) extrusion, the role of redox metabolism in this process. We evaluated their anti-tumorigenic activity in vitro and in a xenograft mouse model. We analyzed NCLX expression and associations with survival in The Cancer Genome Atlas (TCGA) dataset and in tissue microarrays from 381 patients with microsatellite instability (MSI)-driven CRC.
In vitro, curcumin exerted strong anti-tumoral activity through its action on NCLX with mtCa and reactive oxygen species overload associated with a mitochondrial membrane depolarization, leading to reduced ATP production and apoptosis. NCLX inhibition with pharmacological and molecular approaches reproduced the effects of curcumin. NCLX inhibitors decreased CRC tumor growth in vivo. Both transcriptomic analysis of TCGA dataset and immunohistochemical analysis of tissue microarrays demonstrated that higher NCLX expression was associated with MSI status, and for the first time, NCLX expression was significantly associated with recurrence-free survival.
Our findings highlight a novel anti-tumoral mechanism of curcumin through its action on NCLX and mitochondria calcium overload that could benefit for therapeutic schedule of patients with MSI CRC.
最近的证据强调了线粒体钙稳态在结直肠癌(CRC)发展中的作用。为了克服治疗耐药性,我们旨在评估线粒体钠钙锂交换器(NCLX)及其在 CRC 中的靶向作用。我们还确定姜黄素是 NCLX 的一种新抑制剂。
我们研究了姜黄素和药理学化合物是否诱导了 NCLX 介导的线粒体钙(mtCa)外排的抑制,以及氧化还原代谢在这一过程中的作用。我们评估了它们在体外和异种移植小鼠模型中的抗肿瘤活性。我们分析了 NCLX 的表达及其与癌症基因组图谱(TCGA)数据集和 381 例微卫星不稳定(MSI)驱动 CRC 组织微阵列中生存的相关性。
在体外,姜黄素通过其对 NCLX 的作用发挥强大的抗肿瘤活性,导致 mtCa 和活性氧物质过载,伴随着线粒体膜去极化,导致 ATP 产生减少和凋亡。药理学和分子方法抑制 NCLX 可再现姜黄素的作用。NCLX 抑制剂可减少 CRC 肿瘤在体内的生长。TCGA 数据集的转录组分析和组织微阵列的免疫组织化学分析均表明,较高的 NCLX 表达与 MSI 状态相关,并且首次表明 NCLX 表达与无复发生存率显著相关。
我们的研究结果强调了姜黄素通过其对 NCLX 和线粒体钙过载的作用发挥新型抗肿瘤机制,这可能有益于 MSI CRC 患者的治疗方案。