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儿童急性淋巴细胞白血病中对Fas介导的细胞凋亡的敏感性与突变型p53表型及Bcl-2表达缺失有关。

Sensitivity to Fas-mediated apoptosis in pediatric acute lymphoblastic leukemia is associated with a mutant p53 phenotype and absence of Bcl-2 expression.

作者信息

Zhou M, Gu L, Yeager A M, Findley H W

机构信息

Division of Pediatric Hematology/Oncology/Bone Marrow Transplantation, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Leukemia. 1998 Nov;12(11):1756-63. doi: 10.1038/sj.leu.2401198.

Abstract

Fas (APO-1/CD95) is a cell-surface protein that can mediate apoptosis upon specific ligand or antibody binding. The Bcl-2 protein may function as a modulator of Fas-induced apoptosis by blocking a downstream activation step, and Bcl-2 expression in acute lymphoblastic leukemia (ALL) cells appears to depend partly on expression of a wild-type (wt) p53 tumor suppressor gene (Findley et al, Blood 1997; 89: 2986). We therefore investigated the relationship between sensitivity to Fas-mediated apoptosis and (1) Fas expression, (2) p53 status, and (3) Bcl-2 protein levels in pediatric ALL cell lines and primary leukemic cells. Cell lines included 21 B cell precursor (BCP)-ALL and four T-ALL lines; in five cases, cryopreserved primary leukemic cells from which these lines were established were also examined. Additionally, we evaluated the effect of anti-Fas monoclonal antibody on the activation of protease CPP32 and induction of apoptosis in these lines. By SSCP analysis and DNA sequencing, we detected p53 mutations (mt) in eight out of 25 ALL cell lines (exon-7, codon 248 n=6; exon-8, codon 273, n=2). The expression of Fas and Bcl-2 was examined by immunofluorescence staining and quantified as the number of molecules of equivalent soluble fluorochrome (MESF). Elevated levels of Fas were expressed in all six lines with a mutation of p53 in codon 248 (1500 to 10800 MESF). Although Fas was detectable in seven of the 17 lines with wt-p53, expression was lower (150-900 MESF) compared with mt-p53+ lines. Bcl-2 was expressed in 10 of the 25 lines. Most (9/10) wt-p53+ lines expressed Bcl-2, whereas only one of eight mt-p53+ lines and no p53-null lines expressed this protein. Treatment of Fas-positive lines with anti-Fas monoclonal antibody (200 ng/ml) for 6 h induced activation of CPP32 and apoptosis in eight of 13 Fas+ lines. Sensitivity to Fas-mediated apoptosis was associated with a mt-p53 phenotype and absence of Bcl-2 expression. Six of eight Fas+/Fas-sensitive (S) lines were mt-53+/Bcl-2-, whereas only two Fas+/Fas-S lines were wt-p53+/Bcl-2+; both of these latter lines expressed low levels of Bcl-2 compared to Fas-resistant lines. In contrast, four of five Fas+/Fas-resistant (R) lines were wt-p53+/Bcl-2+; the exception was p53-null/Bcl-2- but expressed a low level of Fas (150 MESF). Activation of the cysteine protease CPP32 and cleavage of its substrate poly(ADP-ribose)polymerase (PARP) was also detected in Fas-S but not Fas-R lines. We obtained similar results from both the primary leukemic cells and the corresponding cell lines in five cases: overexpression of Fas and Fas-sensitivity were present in mt-p53+/Bcl-2- but not wt-p53+/Bcl-2+ cells. These results suggest that some pediatric ALL cells expressing mt-p53+ may be sensitive to Fas-mediated apoptosis due to high levels of Fas expression and lack of Bcl-2, and further suggest that molecular methods of activating Fas may be useful for therapy of refractory ALL with the Fas+/mt-p53+ phenotype.

摘要

Fas(APO-1/CD95)是一种细胞表面蛋白,在与特定配体或抗体结合后可介导细胞凋亡。Bcl-2蛋白可能通过阻断下游激活步骤来调节Fas诱导的细胞凋亡,急性淋巴细胞白血病(ALL)细胞中Bcl-2的表达似乎部分依赖于野生型(wt)p53肿瘤抑制基因的表达(Findley等人,《血液》,1997年;89:2986)。因此,我们研究了小儿ALL细胞系和原发性白血病细胞对Fas介导的细胞凋亡的敏感性与(1)Fas表达、(2)p53状态和(3)Bcl-2蛋白水平之间的关系。细胞系包括21个B细胞前体(BCP)-ALL和4个T-ALL系;在5个病例中,还检查了用于建立这些细胞系的冷冻保存的原发性白血病细胞。此外,我们评估了抗Fas单克隆抗体对这些细胞系中蛋白酶CPP32激活和细胞凋亡诱导的影响。通过SSCP分析和DNA测序,我们在25个ALL细胞系中的8个中检测到p53突变(mt)(外显子7,密码子248,n = 6;外显子8,密码子273,n = 2)。通过免疫荧光染色检测Fas和Bcl-2的表达,并将其定量为等效可溶性荧光染料(MESF)分子数。在密码子248处有p53突变的所有6个细胞系中均表达了高水平的Fas(1500至10800 MESF)。尽管在17个wt-p53细胞系中的7个中可检测到Fas,但其表达水平低于mt-p53 +细胞系(150 - 900 MESF)。25个细胞系中有10个表达Bcl-2。大多数(9/10)wt-p53 +细胞系表达Bcl-2,而8个mt-p53 +细胞系中只有1个表达该蛋白,p53缺失的细胞系中没有表达。用抗Fas单克隆抗体(200 ng/ml)处理Fas阳性细胞系6小时,在13个Fas +细胞系中的8个中诱导了CPP32的激活和细胞凋亡。对Fas介导的细胞凋亡的敏感性与mt-p53表型和Bcl-2表达缺失有关。8个Fas + /Fas敏感(S)细胞系中有6个是mt-53 + /Bcl-2 -,而只有2个Fas + /Fas-S细胞系是wt-p53 + /Bcl-2 +;与Fas抗性细胞系相比,后两个细胞系均表达低水平的Bcl-2。相反,5个Fas + /Fas抗性(R)细胞系中有4个是wt-p53 + /Bcl-2 +;例外的是p53缺失/Bcl-2 -,但表达低水平的Fas(150 MESF)。在Fas-S细胞系中也检测到了半胱氨酸蛋白酶CPP32的激活及其底物聚(ADP-核糖)聚合酶(PARP)的裂解,而在Fas-R细胞系中未检测到。我们在5个病例的原发性白血病细胞和相应的细胞系中均获得了类似的结果:mt-p53 + /Bcl-2 -细胞中存在Fas的过表达和Fas敏感性,而wt-p53 + /Bcl-2 +细胞中则不存在。这些结果表明,一些表达mt-p53 +的小儿ALL细胞可能由于Fas的高表达和Bcl-2的缺乏而对Fas介导的细胞凋亡敏感,并且进一步表明激活Fas的分子方法可能对治疗具有Fas + /mt-p53 +表型的难治性ALL有用。

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