Müller S, Matunis M J, Dejean A
Unité de Recombinaison et Expression Génétique, INSERM U 163, Institut Pasteur, 28 rue du Dr Roux, 75724 Paris Cedex 15, France.
EMBO J. 1998 Jan 2;17(1):61-70. doi: 10.1093/emboj/17.1.61.
The PML protein, identified first as part of the oncogenic PML-RARalpha chimera in acute promyelocytic leukemia (APL), concentrates within discrete subnuclear structures, corresponding to some types of nuclear bodies. These structures are disrupted in APL cells, and retinoic acid (RA) can trigger their reorganization, correlating with its therapeutic effect in this type of leukemia. Recently, arsenic trioxide (As2O3) was identified as a potent antileukemic agent which, similarly to RA, induces complete remissions in APL patients. Here we show that, in APL cells, As2O3 triggers rapid degradation of PML-RARalpha and provokes the restoration of intact nuclear bodies. In non-APL cells, the ubiquitin-like protein SUMO-1 is covalently attached to a subset of wild-type PML in a reversible and phosphorylation-dependent manner. The unmodified form of PML is found in the soluble nucleoplasmic fraction, whereas the SUMO-1-polymodified forms of PML are compartmentalized exclusively in the PML nuclear bodies. As2O3 administration strikingly increases the pool of SUMO-1-PML conjugates that, subsequently, accumulate in enlarged nuclear bodies. In contrast to PML-RARalpha, the overall amount of PML seems to remain unaltered up to 36 h following As2O3 treatment. These findings indicate that the conjugation of PML with SUMO-1 modulates its intracellular localization and suggest that post-translational modification by SUMO-1 may be more generally involved than previously suspected in the targeting of proteins to distinct subcellular structures. They provide additional evidence that the role of 'ubiquitin-like' post-translational modification is not limited to a degradation signal.
早幼粒细胞白血病(APL)中的致癌性PML-RARα嵌合体的一部分首次被鉴定出的PML蛋白,集中在离散的核内亚结构中,这些结构与某些类型的核体相对应。这些结构在APL细胞中被破坏,而视黄酸(RA)可以触发它们的重组,这与其在这种白血病中的治疗效果相关。最近,三氧化二砷(As2O3)被鉴定为一种有效的抗白血病药物,与RA类似,它能诱导APL患者完全缓解。在这里我们表明,在APL细胞中,As2O3触发PML-RARα的快速降解,并促使完整核体的恢复。在非APL细胞中,类泛素蛋白SUMO-1以可逆的、依赖磷酸化的方式与野生型PML的一个亚群共价连接。未修饰形式的PML存在于可溶性核质部分,而SUMO-1多修饰形式的PML仅在PML核体中被分隔。给予As2O3显著增加了SUMO-1-PML缀合物的总量,随后这些缀合物在扩大的核体中积累。与PML-RARα不同,在As2O3处理后长达36小时,PML的总量似乎保持不变。这些发现表明PML与SUMO-1的缀合调节其细胞内定位,并表明SUMO-1的翻译后修饰可能比以前怀疑的更普遍地参与将蛋白质靶向到不同的亚细胞结构。它们提供了额外的证据,证明“类泛素”翻译后修饰的作用不限于降解信号。