Birkenmeier Katrin, Moll Katharina, Newrzela Sebastian, Hartmann Sylvia, Dröse Stefan, Hansmann Martin-Leo
Dr. Senckenberg Institute of Pathology, University Hospital of Frankfurt, 60596 Frankfurt am Main, Germany.
Clinic of Anesthesiology, Intensive-Care Medicine and Pain Therapy, Goethe-University Hospital, 60596 Frankfurt am Main, Germany.
Oncotarget. 2016 Jul 19;7(29):46579-46588. doi: 10.18632/oncotarget.10300.
As current classical Hodgkin lymphoma (cHL) treatment strategies have pronounced side-effects, specific inhibition of signaling pathways may offer novel strategies in cHL therapy. Basal autophagy, a regulated catabolic pathway to degrade cell's own components, is in cancer linked with both, tumor suppression or promotion. The finding that basal autophagy enhances tumor cell survival would thus lead to immediately testable strategies for novel therapies. Thus, we studied its contribution in cHL.We found constitutive activation of autophagy in cHL cell lines and primary tissue. The expression of key autophagy-relevant proteins (e.g. Beclin-1, ULK1) and LC3 processing was increased in cHL cells, even in lymphoma cases. Consistently, cHL cells exhibited elevated numbers of autophagic vacuoles and intact autophagic flux. Autophagy inhibition with chloroquine or inactivation of ATG5 induced apoptosis and reduced proliferation of cHL cells. Chloroquine-mediated inhibition of basal autophagy significantly impaired HL growth in-vivo in NOD SCID γc-/- (NSG) mice. We found that basal autophagy plays a pivotal role in sustaining mitochondrial function.We conclude that cHL cells require basal autophagy for growth, survival and sustained metabolism making them sensitive to autophagy inhibition. This suggests basal autophagy as useful target for new strategies in cHL treatment.
由于目前经典型霍奇金淋巴瘤(cHL)的治疗策略有明显的副作用,信号通路的特异性抑制可能为cHL治疗提供新策略。基础自噬是一种降解细胞自身成分的调节性分解代谢途径,在癌症中与肿瘤抑制或促进均有关联。基础自噬增强肿瘤细胞存活这一发现将因此带来可立即进行测试的新治疗策略。因此,我们研究了其在cHL中的作用。我们发现cHL细胞系和原发组织中存在自噬的组成性激活。cHL细胞中关键的自噬相关蛋白(如Beclin-1、ULK1)的表达以及LC3的加工过程均增加,甚至在淋巴瘤病例中也是如此。一致地,cHL细胞表现出自噬泡数量增加且自噬流完整。用氯喹抑制自噬或使ATG5失活可诱导cHL细胞凋亡并减少其增殖。氯喹介导的基础自噬抑制显著损害了NOD SCID γc-/-(NSG)小鼠体内HL的生长。我们发现基础自噬在维持线粒体功能中起关键作用。我们得出结论,cHL细胞的生长、存活和持续代谢需要基础自噬,这使得它们对自噬抑制敏感。这表明基础自噬是cHL治疗新策略的有用靶点。