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TAT-CC fusion protein depresses the oncogenicity of BCR-ABL in vitro and in vivo through interrupting its oligomerization

机译:TAT-CC融合蛋白通过中断BCR-ABL的寡聚作用而在体内和体外抑制其致癌性

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摘要

Chronic myeloid leukemia (CML) is a clonal hematologic malignancy characterized by the BCR-ABL protein. BCR-ABL is a constitutively active tyrosine kinase and plays a critical role in the pathogenesis of CML. Imatinib mesylate, a selective tyrosine kinase inhibitor, is effective in CML, but drug resistance and relapse occur. The coiled-coil (CC) domain located in BCR_(1-72) mediates BCR-ABL tetramerization, which is essential for the activation of tyrosine kinase and transformation potential of BCR-ABL. CC domain is supposed to be a therapeutic target for CML. We purified a TAT-CC protein compe-tively binding with the endogenous CC domain to reduce BCR-ABL kinase activity. We found that TAT-CC co-located and interacted with BCR-ABL in Ba/F3-p210 and K562 cells. It induced apoptosis and inhibited proliferation in these cells. It increased the sensitivity of these cells to imatinib and reduced the phosphorylation of BCR-ABL, CRKL and STAT5. We confirmed that TAT-CC could attenuate the oncogenicity of Ba/F3-p210 cells and diminish the volume of K562 solid tumor in mice. We conclude targeting the CC may provide a complementary therapy to inhibit BCR-ABL oncogenicity.
机译:慢性粒细胞白血病(CML)是一种以BCR-ABL蛋白为特征的克隆性血液恶性肿瘤。 BCR-ABL是一种组成型活性酪氨酸激酶,在CML的发病机理中起关键作用。甲磺酸伊马替尼,一种选择性的酪氨酸激酶抑制剂,对CML有效,但会产生耐药性和复发。位于BCR_(1-72)中的卷曲螺旋(CC)域介导BCR-ABL四聚化,这对于酪氨酸激酶的激活和BCR-ABL的转化潜力至关重要。 CC域被认为是CML的治疗目标。我们纯化了TAT-CC蛋白与内源性CC域竞争性结合,以减少BCR-ABL激酶活性。我们发现TAT-CC在Ba / F3-p210和K562细胞中共存并与BCR-ABL相互作用。它诱导这些细胞凋亡并抑制其增殖。它增加了这些细胞对伊马替尼的敏感性,并减少了BCR-ABL,CRKL和STAT5的磷酸化。我们证实,TAT-CC可以减弱Ba / F3-p210细胞的致癌性并减少小鼠K562实体瘤的体积。我们认为靶向CC可能提供抑制BCR-ABL致癌性的补充疗法。

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