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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The protein phosphatase 2A regulatory subunit B55α is a modulator of signaling and microRNA expression in acute myeloid leukemia cells
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The protein phosphatase 2A regulatory subunit B55α is a modulator of signaling and microRNA expression in acute myeloid leukemia cells

机译:蛋白磷酸酶2A调节亚基B55α是急性髓细胞白血病细胞中信号传导和microRNA表达的调节剂

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We recently discovered that the protein phosphatase 2A (PP2A) B55α subunit (PPP2R2A) is under-expressed in primary blast cells and is unfavorable for remission duration in AML patients. In this study, reverse phase protein analysis (RPPA) of 230 proteins in 511 AML patient samples revealed a strong correlation of B55α with a number of proteins including MYC, PKC α, and SRC. B55α suppression in OCI-AML3 cells by shRNA demonstrated that the B subunit is a PKCα phosphatase. B55α does not target SRC, but rather the kinase suppresses protein expression of the B subunit. Finally, the correlation between B55α and MYC levels reflected a complex stoichiometric competition between B subunits. Loss of B55α in OCI-AML3 cells did not change global PP2A activity and the only isoform that is induced is the one containing B56α. In cells containing B55α shRNA, MYC was suppressed with concomitant induction of the competing B subunit B56α (PPP2R5A). A recent study determined that FTY-720, a drug whose action involves the activation of PP2A, resulted in the induction of B55α In AML cells, and a reduction of the B subunit rendered these cells resistant to FTY-720. Finally, reduction of the B subunit resulted in an increase in the expression of miR-191-5p and a suppression of miR-142-3p. B55α regulation of these miRs was intriguing as high levels of miR-191 portend poor survival in AML, and miR-142-3p is mutated in 2% of AML patient samples. In summary, the suppression of B55α activates signaling pathways that could support leukemia cell survival.
机译:我们最近发现,蛋白磷酸酶2A(PP2A)B55α亚基(PPP2R2A)在原代母细胞中表达不足,不利于AML患者缓解。在这项研究中,对511例AML患者样品中的230种蛋白质进行了反相蛋白质分析(RPPA),发现B55α与包括MYC,PKCα和SRC在内的许多蛋白质具有很强的相关性。 shRNA对OCI-AML3细胞的B55α抑制作用表明B亚基为PKCα磷酸酶。 B55α不靶向SRC,而是激酶抑制B亚基的蛋白质表达。最后,B55α和MYC水平之间的相关性反映了B亚基之间复杂的化学计量竞争。 OCI-AML3细胞中B55α的丢失并没有改变总体PP2A活性,唯一诱导的同种型是含有B56α的同种型。在含有B55αshRNA的细胞中,MYC被竞争性B亚基B56α(PPP2R5A)的伴随诱导所抑制。最近的一项研究确定,作用涉及PP2A的药物FTY-720导致AML细胞中B55α的诱导,而B亚基的减少使得这些细胞对FTY-720具有抗性。最后,B亚基的减少导致miR-191-5p表达的增加和miR-142-3p的抑制。这些miRs的B55α调节很有趣,因为高水平的miR-191预示着AML的不良生存,并且在2%的AML患者样本中miR-142-3p发生了突变。总之,B55α的抑制激活了可能支持白血病细胞存活的信号通路。

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