首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >SHP2 inhibition reduces leukemogenesis in models of combined genetic and epigenetic mutations
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SHP2 inhibition reduces leukemogenesis in models of combined genetic and epigenetic mutations

机译:SHP2 抑制可减少遗传和表观遗传突变联合模型中的白血病发生

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摘要

In patients with acute myeloid leukemia (AML), 10 to 30 with the normal karyotype express mutations in regulators of DNA methylation, such as TET2 or DNMT3A, in conjunction with activating mutation in the receptor tyrosine kinase FLT3. These patients have a poor prognosis because they do not respond well to established therapies. Here, utilizing mouse models of AML that recapitulate cardinal features of the human disease and bear a combination of loss-of-function mutations in either Tet2 or Dnmt3a along with expression of Flt3(ITD), we show that inhibition of the protein tyrosine phosphatase SHP2, which is essential for cytokine receptor signaling (including FLT3), by the small molecule allosteric inhibitor SHP099 impairs growth and induces differentiation of leukemic cells without impacting normal hematopoietic cells. We also show that SHP099 normalizes the gene expression program associated with increased cell proliferation and self-renewal in leukemic cells by downregulating the Myc signature. Our results provide a new and more effective target for treating a subset of patients with AML who bear a combination of genetic and epigenetic mutations.
机译:在急性髓系白血病 (AML) 患者中,10%-30% 的正常核型表达 DNA 甲基化调节因子(如 TET2 或 DNMT3A)突变,同时激活受体酪氨酸激酶 FLT3 突变。这些患者的预后较差,因为他们对既定疗法反应不佳。在这里,利用AML的小鼠模型,这些模型概括了人类疾病的主要特征,并带有Tet2或Dnmt3a的功能丧失突变以及Flt3(ITD)的表达,我们表明,小分子变构抑制剂SHP099抑制蛋白质酪氨酸磷酸酶SHP2,这对细胞因子受体信号传导(包括FLT3)至关重要,损害生长并诱导白血病细胞分化,而不影响正常造血细胞。 我们还表明,SHP099通过下调Myc特征,使白血病细胞中与细胞增殖和自我更新增加相关的基因表达程序正常化。我们的研究结果为治疗携带遗传和表观遗传突变的AML患者子集提供了一个新的、更有效的靶点。

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