首页> 外文期刊>The Tohoku Journal of Experimental Medicine >Honokiol Inhibits Constitutive and Inducible STAT3 Signaling via PU.1-Induced SHP1 Expression in Acute Myeloid Leukemia Cells
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Honokiol Inhibits Constitutive and Inducible STAT3 Signaling via PU.1-Induced SHP1 Expression in Acute Myeloid Leukemia Cells

机译:厚朴酚通过急性髓样白血病细胞通过PU.1诱导的SHP1表达抑制组成型和诱导型STAT3信号传导。

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Constitutive and inducible activation of signal transducer and activator of transcription 3 (STAT3) signaling facilitates the carcinogenesis in most human cancers including acute myeloid leukemia (AML). Negative regulators, such as protein tyrosine phosphatases SHP1, inhibit the activated STAT3 signaling. In this study, we investigated the effect of honokiol (HNK), a constituent of Magnolia officinalis, on the STAT3 signaling. STAT3 signaling and SHP1 expression were measured by quantitative real-time PCR and western blotting in leukemic cell lines and primary AML blasts treated with HNK. HNK decreased the phosphorylated STAT3 but not the total STAT3 through increasing the expression of SHP1. In addition, HNK inhibited transcription activity of STAT3, reduced nuclear translocation of STAT3, and decreased the expression of STAT3 target genes. Knockdown of SHP1 by small hairpin RNA (shRNA) or treatment with vanadate, a protein tyrosine phosphatases inhibitor, abolished HNK-induced STAT3 inhibition, suggesting that SHP1 plays an important role in the inhibition of STAT3 signaling by HNK. Further, HNK increased the expression of transcript factor PU.1, which had been reported to activate the expression of SHP1 via binding SHP1 promoter region. Knockdown of PU.1 reversed HNK-induced upregulation of SHP1 and inactivation of STAT3 signaling. Finally, HNK increased the expression of PU.1 and SHP1 in hematopoietic progenitors isolated from patients with AML. In conclusion, our data have shown a regulatory mechanism underlying the inhibition of STAT3 signaling by HNK. Therefore, as a relative non-toxic compound, HNK may offer a therapeutic advantage in the clinical treatment for AML.
机译:信号转导子和转录激活子3(STAT3)的组成性和诱导性激活可促进大多数人类癌症(包括急性髓细胞性白血病(AML))的癌变。负调节剂,例如蛋白质酪氨酸磷酸酶SHP1,抑制激活的STAT3信号传导。在这项研究中,我们调查了厚朴酚(厚朴成分)对STAT3信号的影响。 STAT3信号和SHP1表达通过定量实时PCR和Western印迹法在白血病细胞系和经HNK处理的原发性AML母细胞中测量。 HNK通过增加SHP1的表达降低了磷酸化的STAT3,但没有降低总STAT3。此外,HNK抑制STAT3的转录活性,减少STAT3的核易位,并降低STAT3目标基因的表达。通过小发夹RNA(shRNA)敲除SHP1或用蛋白酪氨酸磷酸酶抑制剂钒酸盐进行处理,废除了HNK诱导的STAT3抑制作用,表明SHP1在HNK抑制STAT3信号传导中起重要作用。此外,HNK增加了转录因子PU.1的表达,据报道该转录因子通过结合SHP1启动子区域激活SHP1的表达。敲低PU.1可逆转HNK诱导的SHP1上调和STAT3信号的失活。最后,HNK增加了从AML患者中分离出的造血祖细胞中PU.1和SHP1的表达。总之,我们的数据显示了HNK抑制STAT3信号的潜在调节机制。因此,作为相对无毒的化合物,HNK可以在AML的临床治疗中提供治疗优势。

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