Amson R B, Nemani M, Roperch J P, Israeli D, Bougueleret L, Le Gall I, Medhioub M, Linares-Cruz G, Lethrosne F, Pasturaud P, Piouffre L, Prieur S, Susini L, Alvaro V, Millasseau P, Guidicelli C, Bui H, Massart C, Cazes L, Dufour F, Bruzzoni-Giovanelli H, Owadi H, Hennion C, Charpak G, Telerman A
Fondation Jean Dausset-Centre d'Etude du Polymorphisme Humain (Human Polymorphism Study Center), Paris, France.
Proc Natl Acad Sci U S A. 1996 Apr 30;93(9):3953-7. doi: 10.1073/pnas.93.9.3953.
We report the isolation of 10 differentially expressed cDNAs in the process of apoptosis induced by the p53 tamor suppressor. As a global analytical method, we performed a differential display of mRNA between mouse M1 myeloid leukemia cells and derived clone LTR6 cells, which contain a stably transfected temperature-sensitive mutant of p53. At 32 degrees C wild-type p53 function is activated in LTR6 cells, resulting in programmed cell death. Eight genes are activated (TSAP; tumor suppressor activated pathway), and two are inhibited (TSIP, tumor suppressor inhibited pathway) in their expression. None of the 10 sequences has hitherto been recognized as part of the p53 signaling pathway. Three TSAPs are homologous to known genes. TSAP1 corresponds to phospholipase C beta 4. TSAP2 has a conserved domain homologous to a multiple endocrine neoplasia I (ZFM1) candidate gene. TSAP3 is the mouse homologue of the Drosophila seven in absentia gene. These data provide novel molecules involved in the pathway of wild-type p53 activation. They establish a functional link between a homologue of a conserved developmental Drosophila gene and signal transduction in tumor suppression leading to programmed cell death.
我们报告了在p53肿瘤抑制因子诱导的细胞凋亡过程中10个差异表达的cDNA的分离情况。作为一种全局分析方法,我们对小鼠M1髓系白血病细胞和衍生克隆LTR6细胞之间的mRNA进行了差异显示,LTR6细胞含有稳定转染的温度敏感型p53突变体。在32摄氏度时,LTR6细胞中野生型p53功能被激活,导致程序性细胞死亡。八个基因被激活(TSAP;肿瘤抑制因子激活途径),两个基因的表达被抑制(TSIP,肿瘤抑制因子抑制途径)。这10个序列中迄今没有一个被认为是p53信号通路的一部分。三个TSAP与已知基因同源。TSAP1对应于磷脂酶Cβ4。TSAP2有一个与多发性内分泌肿瘤I(ZFM1)候选基因同源的保守结构域。TSAP3是果蝇无七基因的小鼠同源物。这些数据提供了参与野生型p53激活途径的新分子。它们在保守的果蝇发育基因的同源物与导致程序性细胞死亡的肿瘤抑制信号转导之间建立了功能联系。