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Myc癌基因:神秘的家族。

Myc oncogenes: the enigmatic family.

作者信息

Ryan K M, Birnie G D

机构信息

The Beatson Institute for Cancer Research, Glasgow, Scotland, U.K.

出版信息

Biochem J. 1996 Mar 15;314 ( Pt 3)(Pt 3):713-21. doi: 10.1042/bj3140713.

Abstract

The myc family of proto-oncogenes is believed to be involved in the establishment of many types of human malignancy. The members of this family have been shown to function as transcription factors, and through a designated target sequence bring about continued cell-cycle progression, cellular immortalization and blockages to differentiation in many lineages. However, while much of the recent work focusing on the c-myc oncogene has provided some very important advances, it has also brought to light a large amount of conflicting data as to the mechanism of action of the gene product. In this regard, it has now been shown that c-myc is effective in transcriptional repression as well as transcriptional activation and, perhaps more paradoxically, that it has a role in programmed cell death (apoptosis) as well as in processes of cell-cycle progression. In addition, particular interest has surrounded the distinct roles of the two alternative translation products of the c-myc gene, c-Myc 1 and c-Myc 2. The intriguing observation that the ratio of c-Myc 1 to c-Myc 2 increases markedly upon cellular quiescence led to the discovery that the enforced expression of the two proteins individually showed that c-Myc 2 stimulates cell growth, whereas c-Myc 1 appears to be growth suppressing. Clearly, the disparities in the activities of c-Myc, together with the consistent occurrence of mutations of c-myc in human malignancies, means that, although reaching an understanding of the functions of the myc gene family might not be simple, it remains well worthy of pursuit.

摘要

原癌基因的myc家族被认为与多种人类恶性肿瘤的发生有关。该家族成员已被证明可作为转录因子发挥作用,并通过特定的靶序列导致细胞周期持续进展、细胞永生化以及许多谱系的分化受阻。然而,尽管最近许多针对c-myc癌基因的研究取得了一些非常重要的进展,但也揭示了大量关于该基因产物作用机制的相互矛盾的数据。在这方面,现已表明c-myc在转录抑制以及转录激活方面均有效,而且或许更自相矛盾的是,它在程序性细胞死亡(凋亡)以及细胞周期进展过程中均发挥作用。此外,c-myc基因的两种可变翻译产物c-Myc 1和c-Myc 2的不同作用尤其受到关注。有趣的是,细胞静止时c-Myc 1与c-Myc 2的比例会显著增加,这一发现促使人们发现单独强制表达这两种蛋白时,c-Myc 2会刺激细胞生长,而c-Myc 1似乎具有生长抑制作用。显然,c-Myc活性的差异,以及c-myc在人类恶性肿瘤中持续发生突变的情况,意味着尽管要了解myc基因家族的功能并非易事,但仍非常值得去探索。

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