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p53 restoration kills primitive leukemia cells in vivo and increases survival of leukemic mice

机译:p53修复在体内杀死原始白血病细胞并增加白血病小鼠的存活率

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摘要

Loss of p53 function is a common feature of human cancers and it is required for differentiated tumor cell maintenance; however, it is not known whether sustained inactivation of the p53 pathway is needed for cancer stem cell persistence. Chronic myeloid leukemia (CML) is caused by a chromosome translocation that generates the BCRABL oncogene encoding a constitutively active protein tyrosine kinase. The disease originates in a hematopoietic stem cell and is maintained by leukemic stem cells (LSCs). Treatment with specific tyrosine kinase inhibitors does not eliminate LSCs because they do not depend on the oncogene for survival. We have combined a switchable p53 knock-in mouse model, p53KI/KI, with the well-characterized Sca1-BCRABLp210 CML transgenic model, to show that transient restoration of p53 slows disease progression and significantly extends the survival of leukemic animals, being the mechanism responsible for this effect, apoptotic death of primitive leukemia cells. In agreement with these in vivo findings, in vitro assays show that restoring p53 reduces hematopoietic colony formation by cells of leukemic animals. These results suggest that reestablishing p53 function may be a therapeutic strategy for the eradication of leukemic stem cells and to prevent disease progression.
机译:p53功能丧失是人类癌症的普遍特征,是分化肿瘤细胞维持所必需的。然而,尚不知道是否需要持续灭活p53途径来维持癌症干细胞的持久性。慢性粒细胞白血病(CML)是由染色体易位引起的,该染色体易位产生了编码构成活性蛋白酪氨酸激酶的BCRABL致癌基因。该疾病起源于造血干细胞,并由白血病干细胞(LSC)维持。用特定的酪氨酸激酶抑制剂治疗不能消除LSC,因为它们不依赖癌基因生存。我们将可转换的p53敲入小鼠模型p53 KI / KI 与功能完备的Sca1-BCRABLp210 CML转基因模型相结合,显示p53的瞬时恢复减慢了疾病进程并显着延长了白血病动物的存活,是造成这种作用的机制,是原始白血病细胞凋亡性死亡。与这些体内发现一致的是,体外测定表明,恢复p53减少了白血病动物细胞造血集落的形成。这些结果表明,重建p53功能可能是根除白血病干细胞并预防疾病进展的治疗策略。

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