Catalina-Rodriguez Olga, Kolukula Vamsi K, Tomita York, Preet Anju, Palmieri Ferdinando, Wellstein Anton, Byers Stephen, Giaccia Amato J, Glasgow Eric, Albanese Chris, Avantaggiati Maria Laura
Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University, Washington, DC, USA.
Oncotarget. 2012 Oct;3(10):1220-35. doi: 10.18632/oncotarget.714.
Dysregulation of the pathways that preserve mitochondrial integrity hallmarks many human diseases including diabetes, neurodegeration, aging and cancer. The mitochondrial citrate transporter gene, SLC25A1 or CIC, maps on chromosome 22q11.21, a region amplified in some tumors and deleted in developmental disorders known as velo-cardio-facial- and DiGeorge syndromes. We report here that in tumor cells CIC maintains mitochondrial integrity and bioenergetics, protects from mitochondrial damage and circumvents mitochondrial depletion via autophagy, hence promoting proliferation. CIC levels are increased in human cancers and its inhibition has anti-tumor activity, albeit with no toxicity on adult normal tissues. The knock-down of the CIC gene in zebrafish leads to mitochondria depletion and to proliferation defects that recapitulate features of human velo-cardio-facial syndrome, a phenotype rescued by blocking autophagy. Our findings reveal that CIC maintains mitochondrial homeostasis in metabolically active, high proliferating tissues and imply that this protein is a therapeutic target in cancer and likely, in other human diseases.
维持线粒体完整性的信号通路失调是许多人类疾病的标志,包括糖尿病、神经退行性疾病、衰老和癌症。线粒体柠檬酸转运蛋白基因SLC25A1或CIC,定位于22q11.21染色体区域,该区域在某些肿瘤中扩增,在诸如心脏-面部-迪格奥尔格综合征等发育障碍中缺失。我们在此报告,在肿瘤细胞中,CIC维持线粒体完整性和生物能量学,保护细胞免受线粒体损伤,并通过自噬避免线粒体耗竭,从而促进细胞增殖。CIC水平在人类癌症中升高,抑制CIC具有抗肿瘤活性,且对成人正常组织无毒性。在斑马鱼中敲低CIC基因会导致线粒体耗竭和增殖缺陷,重现人类心脏-面部综合征的特征,通过阻断自噬可挽救该表型。我们的研究结果表明,CIC在代谢活跃、高增殖组织中维持线粒体稳态,这意味着该蛋白是癌症以及其他人类疾病的治疗靶点。