Section of Molecular Hematology and Therapy.
Department of Leukemia.
J Clin Invest. 2019 Feb 21;129(5):1878-1894. doi: 10.1172/JCI120654. Print 2019 May 1.
Anti-leukemic effect of BET/BRD4 (BETP) protein inhibition has been largely attributed to transcriptional downregulation of cellular anabolic/anti-apoptotic processes but its effect on bone marrow microenvironment, a sanctuary favoring persistence of leukemia stem/progenitor cells, is unexplored. Sustained degradation of BETP with small-molecule BET proteolysis-targeting chimera (PROTAC), ARV-825, resulted in marked downregulation of surface CXCR4 and CD44, key proteins in leukemia-microenvironment interaction, in AML cells. Abrogation of surface CXCR4 expression impaired SDF-1α directed migration and was mediated through transcriptional down-regulation of PIM1 kinase that in turn phosphorylates CXCR4 and facilitates its surface localization. Down-regulation of CD44/CD44v8-10 impaired cystine uptake, lowered intracellular reduced glutathione and increased oxidative stress. More importantly, BETP degradation markedly decreased CD34+CD38-CD90-CD45RA+ leukemic stem cell population and alone or in combination with Cytarabine, prolonged survival in mouse model of human leukemia including AML-PDX. Gene expression profiling and single cell proteomics confirmed down regulation of the gene signatures associated with 'stemness' in AML and Wnt/β-catenin, Myc pathways. Hence, BETP degradation by ARV-825 simultaneously targets cell intrinsic signaling, stromal interactions and metabolism in AML.
BET/BRD4 (BETP) 蛋白抑制的抗白血病作用在很大程度上归因于细胞合成代谢/抗凋亡过程的转录下调,但它对骨髓微环境(有利于白血病干细胞/祖细胞持续存在的避难所)的影响尚未得到探索。小分子 BET 蛋白水解靶向嵌合体 (PROTAC) ARV-825 的持续降解导致 AML 细胞表面 CXCR4 和 CD44 的显著下调,这是白血病-微环境相互作用中的关键蛋白。表面 CXCR4 表达的阻断损害了 SDF-1α 介导的迁移,这是通过 PIM1 激酶的转录下调介导的,PIM1 激酶反过来磷酸化 CXCR4 并促进其表面定位。CD44/CD44v8-10 的下调损害了胱氨酸摄取,降低了细胞内还原型谷胱甘肽并增加了氧化应激。更重要的是,BETP 降解显著减少了 CD34+CD38-CD90-CD45RA+白血病干细胞群,并且单独或与阿糖胞苷联合使用,可延长包括 AML-PDX 在内的人类白血病小鼠模型的存活时间。基因表达谱和单细胞蛋白质组学证实了 AML 中与“干性”相关的基因特征以及 Wnt/β-catenin、Myc 途径的下调。因此,ARV-825 通过 BETP 降解可同时靶向 AML 中的细胞内在信号、基质相互作用和代谢。