Scotto C, Deloulme J C, Rousseau D, Chambaz E, Baudier J
Département de Biologie Moléculaire et Structurale du CEA, DBMS-BRCE INSERM Unité 244, 38054 Grenoble Cedex 9, France.
Mol Cell Biol. 1998 Jul;18(7):4272-81. doi: 10.1128/MCB.18.7.4272.
In glial C6 cells constitutively expressing wild-type p53, synthesis of the calcium-binding protein S100B is associated with cell density-dependent inhibition of growth and apoptosis in response to UV irradiation. A functional interaction between S100B and p53 was first demonstrated in p53-negative mouse embryo fibroblasts (MEF cells) by sequential transfection with the S100B and the temperature-sensitive p53Val135 genes. We show that in MEF cells expressing a low level of p53Val135, S100B cooperates with p53Val135 in triggering calcium-dependent cell growth arrest and cell death in response to UV irradiation at the nonpermissive temperature (37.5 degreesC). Calcium-dependent growth arrest of MEF cells expressing S100B correlates with specific nuclear accumulation of the wild-type p53Val135 conformational species. S100B modulation of wild-type p53Val135 nuclear translocation and functions was confirmed with the rat embryo fibroblast (REF) cell line clone 6, which is transformed by oncogenic Ha-ras and overexpression of p53Val135. Ectopic expression of S100B in clone 6 cells restores contact inhibition of growth at 37.5 degreesC, which also correlates with nuclear accumulation of the wild-type p53Val135 conformational species. Moreover, a calcium ionophore mediates a reversible G1 arrest in S100B-expressing REF (S100B-REF) cells at 37.5 degreesC that is phenotypically indistinguishable from p53-mediated G1 arrest at the permissive temperature (32 degreesC). S100B-REF cells proceeding from G1 underwent apoptosis in response to UV irradiation. Our data support a model in which calcium signaling and S100B cooperate with the p53 pathways of cell growth inhibition and apoptosis.
在组成性表达野生型p53的神经胶质C6细胞中,钙结合蛋白S100B的合成与细胞密度依赖性生长抑制以及对紫外线照射的凋亡反应相关。S100B与p53之间的功能性相互作用首先在p53阴性的小鼠胚胎成纤维细胞(MEF细胞)中得到证实,方法是依次转染S100B和温度敏感型p53Val135基因。我们发现,在表达低水平p53Val135的MEF细胞中,S100B与p53Val135协同作用,在非允许温度(37.5℃)下对紫外线照射触发钙依赖性细胞生长停滞和细胞死亡。表达S100B的MEF细胞的钙依赖性生长停滞与野生型p53Val135构象形式的特定核积累相关。用大鼠胚胎成纤维细胞(REF)细胞系克隆6证实了S100B对野生型p53Val135核转位和功能的调节,该细胞系由致癌性Ha-ras转化并过表达p53Val135。S100B在克隆6细胞中的异位表达恢复了37.5℃下的生长接触抑制,这也与野生型p53Val135构象形式的核积累相关。此外,钙离子载体在37.5℃下介导表达S100B的REF(S100B-REF)细胞中可逆的G1期停滞,其表型与在允许温度(32℃)下p53介导的G1期停滞无法区分。从G1期进入的S100B-REF细胞在紫外线照射下发生凋亡。我们的数据支持一种模型,即钙信号传导和S100B与细胞生长抑制和凋亡的p53途径协同作用。