自噬
生物
下调和上调
溶酶体
细胞生物学
调节器
癌症研究
细胞毒性
髓样
主要组织相容性复合体
细胞培养
机制(生物学)
HEK 293细胞
脂质代谢
新陈代谢
胆固醇
生物化学
髓系白血病
内体
分解代谢
威尼斯人
功能(生物学)
PI3K/AKT/mTOR通路
作者
Cecília Bonolo de Campos,Ruijuan He,Tessa Pelino,Dor Abelman,Zhihua Li,Daniel K.C. Lee,Ding Yan Wang,Michael St. Paul,Jeffrey P. Bruce,Craig D. Simpson,Leanne Wybenga-Groot,Michael F. Moran,Rodger E. Tiedemann,Trevor J. Pugh,Tak W. Mak,Olga Issakova,Nikolai Sepetov,Suzanne Trudel,A. Keith Stewart
出处
期刊:Blood
[Elsevier BV]
日期:2025-11-05
卷期号:147 (6): 650-661
被引量:2
标识
DOI:10.1182/blood.2025030061
摘要
ABSTRACT: We previously reported a chemogenomics screen that unexpectedly identified phosphatidylinositol-3-phosphate 5-kinase (PIKfyve) as a vulnerable target in multiple myeloma (MM). PIKfyve is an essential regulator of lysosomal function and autophagy. Given the high basal requirement for autophagy in MM for sustainable immunoglobulin synthesis, targeting autophagy holds clinical potential as a novel therapeutic avenue. Here, we report the development and characterization of PIK001 and analogs, potent and selective novel small-molecule inhibitors of PIKfyve. PIK001 demonstrated potent anti-MM activity in vitro, as well as synergistic activity with established anti-MM agents (including venetoclax and selinexor), while retaining efficacy in lenalidomide-resistant models. Multiomic characterization of isogenic cell lines sensitive and resistant to PIK001 identified a catalytic domain mutation (PIKFYVE N1939K) and heterogenous alterations in autophagy capabilities. Importantly, we noted that PIK001 exposure also resulted in significantly increased cholesterol metabolism and upregulation of major histocompatibility complex (MHC) class I expression, with potential implications in tumor immunity. Beyond MM, PIKfyve inhibition also shows selective cytotoxicity in acute myeloid leukemia, melanoma, and renal cancer, highlighting broader therapeutic potential. These findings establish PIKfyve inhibition as a valid target for MM and other hematologic malignancies, provide insights into mechanisms of sensitivity and resistance, and lay the foundation for further preclinical (particularly the role of cholesterol metabolism and tumor immunity) and clinical development.
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