威尼斯人
髓系白血病
癌症研究
髓样
白血病
医学
细胞凋亡
离体
线粒体
生物
调节器
功能(生物学)
免疫学
Bcl xL型
淋巴瘤
灵活性(工程)
细胞
抗药性
程序性细胞死亡
柔红霉素
综合应力响应
下调和上调
作者
Sofia La Vecchia,Saurav Doshi,Petros Antonoglou,Tanima Kundu,Wafa Al Santli,Kleopatra Avrampou,Matthew T. Witkowski,Anna Pellattiero,Federico Magrin,Kristina Ames,Amit Verma,Kira Gritsman,Xiaoyang Su,Andrea Mattarei,Iannis Aifantis,Luca Scorrano,Christina Glytsou
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-10-15
卷期号:11 (42): eadx8662-eadx8662
被引量:7
标识
DOI:10.1126/sciadv.adx8662
摘要
Acute myeloid leukemia (AML) is the most prevalent and deadliest adult leukemia. Its frontline treatment uses the BH3 mimetic venetoclax to trigger mitochondria-dependent apoptosis. However, drug resistance nearly always develops, calling for therapies to circumvent it. Advanced microscopy and genome-wide CRISPRi screen analyses pinpointed mitochondrial adaptations primarily mediated by the master regulator of cristae shape optic atrophy 1 (OPA1) as critical for BH3 mimetics resistance. Resistant AML cells up-regulate OPA1 to modify their mitochondrial structure and evade apoptosis. MYLS22 and Opitor-0, two specific and nontoxic OPA1 inhibitors, promote apoptotic cristae remodeling and cytochrome c release, synergizing with venetoclax in AML cells and xenografts derived from AML patients ex vivo and in vivo. Mechanistically, OPA1 loss renders AML cells dependent on glutamine and sensitizes them to ferroptosis by activating ATF4-regulated integrated stress responses. Overall, our data clarify how OPA1 up-regulation allows AML cells' metabolic flexibility and survival and nominates specific OPA1 inhibitors as efficacious tools to overcome venetoclax resistance in leukemia.
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