Bunone G, Borrello M G, Picetti R, Bongarzone I, Peverali F A, de Franciscis V, Della Valle G, Pierotti M A
Dipartimento di Genetica e Microbiologia, Università di Pavia, Italy.
Exp Cell Res. 1995 Mar;217(1):92-9. doi: 10.1006/excr.1995.1067.
RET proto-oncogene products are involved in neural crest development, and constitutional RET mutations are associated with syndromes characterized by tumors of neural crest origin. To study the regulation of RET transcription during neuronal differentiation we analyzed RET expression in neuroblastoma cell lines treated with various differentiating agents. A marked increase in RET mRNA levels was observed in all the cell lines examined shortly after retinoic acid (RA) treatment and before the onset of detectable morphological changes. Upregulation of RET expression was also found in SK-N-BE cells induced to differentiate by 12-O-tetradecanoylphorbol-13-acetate, glial cell-conditioned medium, alpha or gamma interferon, and in SH-SY-5Y cells exposed to nerve growth factor. Induction of RET expression by RA occurred in the absence of de novo protein synthesis. On the other hand, cycloheximide treatment by itself caused upregulation of RET transcripts. These results indicate that the positive transcriptional regulation of RET is closely associated with early neuronal differentiation and suggest that a negative regulatory factor/s controls RET transcription in neuroblastoma cells. Finally, anti-Ret antibodies immunoprecipitated four bands with apparent molecular weights of 150, 155, 170, and 175 kDa in RA-induced SK-N-BE cells. These bands likely represent differently glycosylated forms of the two RET primary products (117 and 122 kDa) detected in tunicamycin-treated cells.
RET原癌基因产物参与神经嵴发育,而遗传性RET突变与以神经嵴起源肿瘤为特征的综合征相关。为了研究神经元分化过程中RET转录的调控,我们分析了用各种分化剂处理的神经母细胞瘤细胞系中RET的表达。在视黄酸(RA)处理后不久且在可检测到的形态学变化开始之前,在所检测的所有细胞系中均观察到RET mRNA水平显著增加。在由12 - O - 十四烷酰佛波醇 - 13 - 乙酸酯、胶质细胞条件培养基、α或γ干扰素诱导分化的SK - N - BE细胞以及暴露于神经生长因子的SH - SY - 5Y细胞中也发现了RET表达上调。RA诱导RET表达的发生不依赖于从头合成蛋白质。另一方面,单独用放线菌酮处理会导致RET转录本上调。这些结果表明RET的正向转录调控与早期神经元分化密切相关,并提示一种负性调节因子控制神经母细胞瘤细胞中的RET转录。最后,抗Ret抗体在RA诱导的SK - N - BE细胞中免疫沉淀出四条表观分子量分别为150、155、170和175 kDa的条带。这些条带可能代表在衣霉素处理细胞中检测到的两种RET初级产物(117和122 kDa)的不同糖基化形式。