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Chemical biology. A small-molecule inhibitor of the aberrant transcription factor CBFbeta-SMMHC delays leukemia in mice

机译:化学生物学。异常转录因子CBFbeta-smmHC的小分子抑制剂延迟小鼠的白血病

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摘要

Acute myeloid leukemia (AML) is the most common form of adult leukemia. The transcription factor fusion CBFbeta-SMMHC (core binding factor beta and the smooth-muscle myosin heavy chain), expressed in AML with the chromosome inversion inv(16)(p13q22), outcompetes wild-type CBFbeta for binding to the transcription factor RUNX1, deregulates RUNX1 activity in hematopoiesis, and induces AML. Current inv(16) AML treatment with nonselective cytotoxic chemotherapy results in a good initial response but limited long-term survival. Here, we report the development of a protein-protein interaction inhibitor, AI-10-49, that selectively binds to CBFbeta-SMMHC and disrupts its binding to RUNX1. AI-10-49 restores RUNX1 transcriptional activity, displays favorable pharmacokinetics, and delays leukemia progression in mice. Treatment of primary inv(16) AML patient blasts with AI-10-49 triggers selective cell death. These data suggest that direct inhibition of the oncogenic CBFbeta-SMMHC fusion protein may be an effective therapeutic approach for inv(16) AML, and they provide support for transcription factor targeted therapy in other cancers.
机译:急性髓细胞性白血病(AML)是成人白血病的最常见形式。转录因子融合CBFbeta-SMMHC(核心结合因子β和平滑肌肌球蛋白重链)在AML中以染色体倒置inv(16)(p13q22)表达,在竞争作用上胜过野生型CBFbeta与转录因子RUNX1的结合,在造血过程中解除RUNX1的活性,并诱导AML。当前的inv(16)AML治疗采用非选择性细胞毒性化学疗法可产生良好的初始反应,但长期生存率有限。在这里,我们报告蛋白质-蛋白质相互作用抑制剂AI-10-49的发展,该抑制剂选择性结合CBFbeta-SMMHC并破坏其与RUNX1的结合。 AI-10-49恢复RUNX1转录活性,显示出良好的药代动力学,并延迟小鼠白血病的进展。 AI-10-49治疗原发性inv(16)AML患者胚细胞可触发选择性细胞死亡。这些数据表明,直接抑制致癌性CBFbeta-SMMHC融合蛋白可能是inv(16)AML的有效治疗方法,并且它们为其他癌症中靶向转录因子的治疗提供了支持。

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