Carfilzomib公司
癌症研究
烟酰胺磷酸核糖转移酶
蛋白酶体抑制剂
药理学
生物
IDH2型
医学
多发性骨髓瘤
化学
免疫学
NAD+激酶
IDH1
生物化学
酶
突变
基因
作者
Elisa Bergaggio,Chiara Riganti,Giulia Garaffo,Nicoletta Vitale,Elisabetta Mereu,Cecilia Bandini,Elisa Pellegrino,Verdiana Pullano,Paola Omedè,Katia Todoerti,Luciano Cascione,Valentina Audrito,Anna Riccio,Antonio Rossi,Francesco Bertoni,Silvia Deaglio,Antonino Neri,Antônio Palumbo,Roberto Piva
出处
期刊:Blood
[Elsevier BV]
日期:2018-11-19
卷期号:133 (2): 156-167
被引量:55
标识
DOI:10.1182/blood-2018-05-850826
摘要
Abstract Proteasome inhibitors (PI) are extensively used for the therapy of multiple myeloma (MM) and mantle cell lymphoma. However, patients continuously relapse or are intrinsically resistant to this class of drugs. Here, to identify targets that synergize with PI, we carried out a functional screening in MM cell lines using a short hairpin RNA library against cancer driver genes. Isocitrate dehydrogenase 2 (IDH2) was identified as a top candidate, showing a synthetic lethal activity with the PI carfilzomib (CFZ). Combinations of US Food and Drug Administration–approved PI with a pharmacological IDH2 inhibitor (AGI-6780) triggered synergistic cytotoxicity in MM, mantle cell lymphoma, and Burkitt lymphoma cell lines. CFZ/AGI-6780 treatment increased death of primary CD138+ cells from MM patients and exhibited a favorable cytotoxicity profile toward peripheral blood mononuclear cells and bone marrow–derived stromal cells. Mechanistically, the CFZ/AGI-6780 combination significantly decreased tricarboxylic acid cycle activity and adenosine triphosphate levels as a consequence of enhanced IDH2 enzymatic inhibition. Specifically, CFZ treatment reduced the expression of nicotinamide phosphoribosyltransferase (NAMPT), thus limiting IDH2 activation through the NAD+-dependent deacetylase SIRT3. Consistently, combination of CFZ with either NAMPT or SIRT3 inhibitors impaired IDH2 activity and increased MM cell death. Finally, inducible IDH2 knockdown enhanced the therapeutic efficacy of CFZ in a subcutaneous xenograft model of MM, resulting in inhibition of tumor progression and extended survival. Taken together, these findings indicate that NAMPT/SIRT3/IDH2 pathway inhibition enhances the therapeutic efficacy of PI, thus providing compelling evidence for treatments with lower and less toxic doses and broadening the application of PI to other malignancies.
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