Carter R, Cosenza S C, Pena A, Lipson K, Soprano D R, Soprano K J
Department of Microbiology and Immunology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.
Oncogene. 1991 Feb;6(2):229-35.
When the level of c-jun mRNA was analyzed in WI-38 human fibroblasts exciting short- and long-term quiescence, two peaks of c-jun mRNA accumulation were found. The first occurred one hour after stimulation and lasted three to five hours, whereas the second occurred at the G1/S border and was coupled to the time of entry to S phase rather than to the time of stimulation. The early peak is well documented and in agreement with the proposed role of c-Jun/AP-1 in mediating cellular responses to receptor-generated signals. The later peak, however, has not been previously reported. Additional follow-up studies showed that late G1/S expression was not solely a phenomenon of cells existing a quiescent state, nor was it restricted only to human cells. Gel retardation studies confirmed that there is AP-1 specific DNA binding activity in nuclear extracts isolated in late G1 and S phase, and that this AP-1 binding activity is due to the presence of Jun protein. An anti-Fos antibody was able to significantly decrease AB-1 binding activity in early G1 extracts, but had no effect on extracts isolated in late G1 and S phase, indicating that the complexes observed in late G1 and S phase are clearly different from those seen in early G1. These studies are among the first to suggest a functional dissociation of c-Jun from c-Fos. Our results identify a new, previously unreported role for c-Jun/AP-1 in regulation of cell cycle progression and mammalian cell growth.
在对处于短期和长期静止状态的WI-38人成纤维细胞中的c-jun mRNA水平进行分析时,发现了c-jun mRNA积累的两个峰值。第一个峰值出现在刺激后1小时,持续3至5小时,而第二个峰值出现在G1/S边界,与进入S期的时间相关,而非与刺激时间相关。早期峰值已有充分记录,并且与c-Jun/AP-1在介导细胞对受体产生信号的反应中所起的作用相符。然而,后期峰值此前尚未见报道。进一步的后续研究表明,G1/S晚期的表达并非仅仅是细胞从静止状态进入的一种现象,也不仅限于人类细胞。凝胶阻滞研究证实,在G1晚期和S期分离的核提取物中存在AP-1特异性DNA结合活性,并且这种AP-1结合活性是由于Jun蛋白的存在。一种抗Fos抗体能够显著降低G1早期提取物中的AB-1结合活性,但对G1晚期和S期分离的提取物没有影响,这表明在G1晚期和S期观察到的复合物与在G1早期观察到的明显不同。这些研究首次表明c-Jun与c-Fos在功能上存在解离。我们的结果确定了c-Jun/AP-1在调节细胞周期进程和哺乳动物细胞生长方面一个新的、此前未报道的作用。