Zhou M, Yeager A M, Smith S D, Findley H W
Division of Pediatric Hematology/Oncology/Bone Marrow Transplantation, Emory University School of Medicine, Atlanta, GA 30322.
Blood. 1995 Mar 15;85(6):1608-14.
The wild-type (wt) p53 tumor suppressor gene is commonly inactivated in human malignancies, either by mutations or by loss of expression. An additional proposed mechanism for inactivation of wt-p53 is amplification of the murine double minute 2 (MDM2) gene and overexpression of the MDM2 protein, which binds to p53 and eliminates its tumor suppressor function. To investigate a potential role for MDM2 in the inactivation of wt-p53 in pediatric acute lymphoblastic leukemia (ALL), we examined the expression of MDM2 and p53, as well as the occurrence of p53 mutations and possible amplification of the MDM2 gene, in 19 pediatric ALL cell lines and one pediatric acute myelogenous leukemia (AML) line. Although we did not find significant amplification of the MDM2 gene in any of the leukemic lines, we detected overexpression of MDM2 in all 10 lines that expressed wt-p53. Of the 10 lines without overexpression of the MDM2 gene, six (including the AML line) did not express p53, and four expressed mutant p53 with single point mutations in exons 7 and 8. To determine whether primary leukemic cells showed a similar correlation, we analyzed the original cryopreserved leukemic bone marrow cells from seven patients from whom cell lines were established. We obtained similar results from both the primary leukemic cells and the corresponding cell lines: overexpression of MDM2 was present in primary cells that expressed wt-p53 but not in cells that lacked expression of wt-p53. These findings suggest an important role for MDM2 in the pathogenesis of pediatric ALL in which leukemic cells express wt-p53.
野生型(wt)p53肿瘤抑制基因在人类恶性肿瘤中通常会因突变或表达缺失而失活。另一种提出的野生型p53失活机制是鼠双微体2(MDM2)基因的扩增和MDM2蛋白的过表达,MDM2蛋白与p53结合并消除其肿瘤抑制功能。为了研究MDM2在小儿急性淋巴细胞白血病(ALL)野生型p53失活中的潜在作用,我们检测了19个小儿ALL细胞系和1个小儿急性髓性白血病(AML)细胞系中MDM2和p53的表达,以及p53突变的发生情况和MDM2基因的可能扩增。虽然我们在任何白血病细胞系中均未发现MDM2基因的显著扩增,但在所有表达野生型p53的10个细胞系中均检测到MDM2的过表达。在10个未过表达MDM2基因的细胞系中,6个(包括AML细胞系)不表达p53,4个表达在外显子7和8中有单点突变的突变型p53。为了确定原代白血病细胞是否显示出类似的相关性,我们分析了来自7例建立了细胞系的患者的原始冻存白血病骨髓细胞。我们从原代白血病细胞和相应的细胞系中均获得了类似的结果:MDM2的过表达存在于表达野生型p53的原代细胞中,而不存在于缺乏野生型p53表达的细胞中。这些发现表明MDM2在白血病细胞表达野生型p53的小儿ALL发病机制中起重要作用。