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靶向PML/RARα易位产物可触发早幼粒细胞白血病细胞凋亡。

Targeting the PML/RAR alpha translocation product triggers apoptosis in promyelocytic leukemia cells.

作者信息

Nason-Burchenal K, Takle G, Pace U, Flynn S, Allopenna J, Martin P, George S T, Goldberg A R, Dmitrovsky E

机构信息

Department of Medicine, Memorial Hospital, Sloan-Kettering Institute, Memorial Sloan-Kettering Cancer Center, New York 10021, USA.

出版信息

Oncogene. 1998 Oct 8;17(14):1759-68. doi: 10.1038/sj.onc.1202075.

Abstract

The t(15;17) rearrangement found in acute promyelocytic leukemia (APL) yields a fusion transcript, PML/RAR alpha. PML/RAR alpha expression is linked to leukemogenesis and to clinical sensitivity to all-trans retinoic acid (RA). Paradoxically, RA treatment causes transient complete remissions in most t(15;17) APL cases. The precise roles of PML/RAR alpha in triggering leukemia or in causing a maturation block are not yet known. This study explores directly these PML/RAR alpha functions in the growth and differentiation of APL cells using a hammerhead ribozyme to target PML/RAR alpha mRNA in the NB4 APL cell line. When the PML/RAR alpha cleaving but not the non-catalytic control ribozyme is introduced into the NB4 APL cell line, PML/RAR alpha protein expression is reduced. This catalysis signals growth suppression, cytotoxicity, and apoptosis without overcoming the maturation block found in these leukemic cells. These biologic effects depend on the selective pressure used to express the ribozyme from an episomal vector. Introduction of a non-catalytic, control ribozyme into NB4 cells caused no observed phenotype due to anti-sense activities. Expression of the catalytic or non-catalytic ribozymes in control cells lacking PML/RAR alpha mRNA yielded no apparent growth or differentiation effects. Thus, use of a hammerhead ribozyme that targets PML/RAR alpha expression in APL cells reveals the anti-apoptotic function of this translocation product and demonstrates that PML/RAR alpha cleavage is insufficient to overcome the differentiation block observed in these leukemic cells. Taken together, these findings indicate that persistent PML/RAR alpha expression is required to maintain basal leukemic cell growth and point to the therapeutic potential of targeting PML/RAR alpha in APL.

摘要

在急性早幼粒细胞白血病(APL)中发现的t(15;17)重排产生了一种融合转录本PML/RARα。PML/RARα的表达与白血病发生以及对全反式维甲酸(RA)的临床敏感性相关。矛盾的是,RA治疗能使大多数t(15;17) APL病例实现短暂的完全缓解。PML/RARα在引发白血病或导致成熟阻滞的确切作用尚不清楚。本研究使用锤头状核酶靶向NB4 APL细胞系中的PML/RARα mRNA,直接探究了这些PML/RARα功能在APL细胞生长和分化中的作用。当将切割PML/RARα的核酶而非无催化活性的对照核酶导入NB4 APL细胞系时,PML/RARα蛋白表达降低。这种催化作用预示着生长抑制、细胞毒性和细胞凋亡,但并未克服这些白血病细胞中存在的成熟阻滞。这些生物学效应取决于用于从游离型载体表达核酶的选择压力。将无催化活性的对照核酶导入NB4细胞未观察到由于反义活性导致的表型。在缺乏PML/RARα mRNA的对照细胞中表达催化性或非催化性核酶未产生明显的生长或分化效应。因此,使用靶向APL细胞中PML/RARα表达的锤头状核酶揭示了这种易位产物的抗凋亡功能,并证明PML/RARα切割不足以克服这些白血病细胞中观察到的分化阻滞。综上所述,这些发现表明持续的PML/RARα表达对于维持白血病细胞的基础生长是必需的,并指出了在APL中靶向PML/RARα的治疗潜力。

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