BRAF inhibitors enhance erythropoiesis and treat anemia through paradoxical activation of MAPK signaling

IF 40.8 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Signal Transduction and Targeted Therapy Pub Date : 2024-12-02 DOI:10.1038/s41392-024-02033-6
Shunkang Wu, Yuelin Deng, Haobo Sun, Xuewen Liu, Shuo Zhou, Hanxi Zhao, Huan Li, Fusheng Guo, Qiuyu Yue, Fan Wu, Xinying Zhao, Na Li, Shicong Zhu, Qi Hu, Si Xie, Jie Zheng, Meng Lv, Yuan Kong, Xiao-Jun Huang, Xiaoguang Lei, Xiangmin Tong, Xiaofei Gao, Hsiang-Ying Lee
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Abstract

Erythropoiesis is a crucial process in hematopoiesis, yet it remains highly susceptible to disruption by various diseases, which significantly contribute to the global challenges of anemia and blood shortages. Current treatments like erythropoietin (EPO) or glucocorticoids often fall short, especially for hereditary anemias such as Diamond-Blackfan anemia (DBA). To uncover new erythropoiesis-stimulating agents, we devised a screening system using primary human hematopoietic stem and progenitor cells (HSPCs). We discovered that BRAF inhibitors (BRAFi), commonly used to treat BRAFV600E melanoma, can unexpectedly and effectively promote progenitor cell proliferation by temporarily delaying erythroid differentiation. Notably, these inhibitors exhibited pronounced efficacy even under cytokine-restricted conditions and in patient samples of DBA. Mechanistically, although these BRAFi inhibit the MAPK cascade in BRAFV600E mutant cells, they paradoxically act as amplifiers in wild-type BRAF cells, potently enhancing the cascade. Furthermore, we found that while the oncogenic BRAFV600E mutation disrupts hematopoiesis and erythropoiesis through AP-1 hyperactivation, BRAFi minimally impact HSPC self-renewal and differentiation. In vivo studies have shown that BRAFi can enhance human hematopoiesis and erythropoiesis in severe immunodeficient mouse models and alleviate anemia in the Rpl11 haploinsufficiency DBA model, as well as other relevant anemia models. This discovery underscores the role of the MAPK pathway in hematopoiesis and positions BRAFi as a promising therapeutic option for improving hematopoietic reconstitution and treating anemias, including DBA.

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BRAF抑制剂通过矛盾的激活MAPK信号来增强红细胞生成和治疗贫血
红细胞生成是造血过程中的一个关键过程,但它仍然极易受到各种疾病的干扰,这在很大程度上导致了贫血和血液短缺的全球挑战。目前的治疗方法,如促红细胞生成素(EPO)或糖皮质激素通常效果不佳,尤其是遗传性贫血,如Diamond-Blackfan贫血(DBA)。为了发现新的促红细胞生成药物,我们设计了一种使用原代人造血干细胞和祖细胞(HSPCs)的筛选系统。我们发现通常用于治疗BRAFV600E黑色素瘤的BRAF抑制剂(BRAFi)可以通过暂时延缓红系分化而意外有效地促进祖细胞增殖。值得注意的是,即使在细胞因子限制条件下和DBA患者样本中,这些抑制剂也表现出明显的疗效。从机制上讲,尽管这些BRAFi在BRAFV600E突变细胞中抑制了MAPK级联,但它们在野生型BRAF细胞中却矛盾地充当了放大器,有力地增强了级联。此外,我们发现,虽然致癌BRAFV600E突变通过AP-1过度激活破坏造血和红细胞生成,但BRAFi对HSPC自我更新和分化的影响很小。体内研究表明,BRAFi可以增强严重免疫缺陷小鼠模型的人造血和红细胞生成能力,缓解Rpl11单倍不全DBA模型以及其他相关贫血模型的贫血。这一发现强调了MAPK通路在造血中的作用,并将BRAFi定位为改善造血重建和治疗贫血(包括DBA)的有希望的治疗选择。
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来源期刊
Signal Transduction and Targeted Therapy
Signal Transduction and Targeted Therapy Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
44.50
自引率
1.50%
发文量
384
审稿时长
5 weeks
期刊介绍: Signal Transduction and Targeted Therapy is an open access journal that focuses on timely publication of cutting-edge discoveries and advancements in basic science and clinical research related to signal transduction and targeted therapy. Scope: The journal covers research on major human diseases, including, but not limited to: Cancer,Cardiovascular diseases,Autoimmune diseases,Nervous system diseases.
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