Raelson J V, Nervi C, Rosenauer A, Benedetti L, Monczak Y, Pearson M, Pelicci P G, Miller W H
Lady Davis Institute for Medical Research, Sir Mortimer Davis Jewish General Hospital, Montréal, Québec, Canada.
Blood. 1996 Oct 15;88(8):2826-32.
Acute promyelocytic leukemia (APL) is characterized by the translocation, t(15;17) and the expression of a PML/RAR alpha fusion protein that is diagnostic of the disease. There is evidence that PML/RAR alpha protein acts as a dominant negative inhibitor of normal retinoid receptor function and myeloid differentiation. We now show that the PML/RAR alpha fusion product is directly downregulated in response to retinoic acid (tRA) treatment in the human APL cell line, NB4. tRA treatment induces loss of PML/RAR alpha at the protein level but not at the level of mRNA, as determined by Northern blots, by Western blots, and by ligand binding assays and in binding to RA-responsive DNA elements. We present evidence that this regulation is posttranslational. This evidence suggests that tRA induces synthesis of a protein that selectively degrades PML/RAR alpha. We further show that this loss of PML/ RAR-alpha is not limited to the unique APL cell line. NB4, because PML/RAR alpha protein is selectively downregulated by tRA when expressed in the transfected myeloid cell line U937. The loss of PML/RAR alpha may be directly linked to tRA-induced differentiation, because in a retinoid-resistant subclone of NB4, tRA does not decrease PML/RAR alpha protein expression. In NB4 cells, the specific downregulation of the fusion protein decreases the ratio of PML/RAR alpha to wild-type RAR alpha. Because the ratio of expression of PML/RAR alpha to wild-type RAR alpha and PML may be important in maintaining the dominant negative block of myelocytic differentiation, these data suggest a molecular mechanism for restoration by tRA normal myeloid differentiation in APL cells.
急性早幼粒细胞白血病(APL)的特征是存在15号和17号染色体易位(t(15;17))以及PML/RARα融合蛋白的表达,该蛋白可用于诊断此病。有证据表明,PML/RARα蛋白作为正常视黄酸受体功能和髓系分化的显性负性抑制剂发挥作用。我们现在发现,在人APL细胞系NB4中,全反式维甲酸(tRA)处理可直接下调PML/RARα融合产物。如通过Northern印迹、Western印迹、配体结合试验以及与视黄酸反应性DNA元件的结合所确定的,tRA处理在蛋白质水平而非mRNA水平诱导PML/RARα缺失。我们提供的证据表明,这种调节是翻译后水平的。这一证据提示,tRA诱导合成一种选择性降解PML/RARα的蛋白质。我们进一步表明,PML/RARα的这种缺失并不局限于独特的APL细胞系NB4,因为当在转染的髓系细胞系U937中表达时,PML/RARα蛋白也会被tRA选择性下调。PML/RARα的缺失可能与tRA诱导的分化直接相关,因为在NB4的视黄酸耐药亚克隆中,tRA不会降低PML/RARα蛋白表达。在NB4细胞中,融合蛋白的特异性下调降低了PML/RARα与野生型RARα的比例。由于PML/RARα与野生型RARα及PML的表达比例可能在维持髓系分化的显性负性阻滞中起重要作用,这些数据提示了tRA恢复APL细胞正常髓系分化的分子机制。