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Engineering a BCR-ABL-activated caspase for the selective elimination of leukemic cells.

机译:设计用于选择性消除白血病细胞的BCR-aBL活化的半胱天冬酶。

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摘要

Increased understanding of the precise molecular mechanisms involved in cell survival and cell death signaling pathways offers the promise of harnessing these molecules to eliminate cancer cells without damaging normal cells. Tyrosine kinase oncoproteins promote the genesis of leukemias through both increased cell proliferation and inhibition of apoptotic cell death. Although tyrosine kinase inhibitors, such as the BCR-ABL inhibitor imatinib, have demonstrated remarkable efficacy in the clinic, drug-resistant leukemias emerge in some patients because of either the acquisition of point mutations or amplification of the tyrosine kinase, resulting in a poor long-term prognosis. Here, we exploit the molecular mechanisms of caspase activation and tyrosine kinase/adaptor protein signaling to forge a unique approach for selectively killing leukemic cells through the forcible induction of apoptosis. We have engineered caspase variants that can directly be activated in response to BCR-ABL. Because we harness, rather than inhibit, the activity of leukemogenic kinases to kill transformed cells, this approach selectively eliminates leukemic cells regardless of drug-resistant mutations.
机译:对细胞存活和细胞死亡信号通路中涉及的精确分子机制的更多了解为利用这些分子消除癌细胞而不破坏正常细胞提供了希望。酪氨酸激酶癌蛋白通过增加细胞增殖和抑制凋亡细胞死亡来促进白血病的发生。尽管酪氨酸激酶抑制剂(例如BCR-ABL抑制剂伊马替尼)在临床上已显示出显着的疗效,但由于获得了点突变或酪氨酸激酶的扩增,某些患者仍出现了耐药性白血病,导致长期不良期预后。在这里,我们利用caspase激活和酪氨酸激酶/适配器蛋白信号转导的分子机制,以建立独特的方法,通过强制诱导凋亡来选择性杀死白血病细胞。我们设计了可以直接响应BCR-ABL激活的caspase变体。因为我们利用而不是抑制致白血病激酶杀死转化细胞的活性,所以这种方法有选择地消除了白血病细胞,而与耐药性突变无关。

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