Olive M, Krylov D, Echlin D R, Gardner K, Taparowsky E, Vinson C
Laboratory of Biochemistry, NCI, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 1997 Jul 25;272(30):18586-94. doi: 10.1074/jbc.272.30.18586.
We describe a dominant negative (DN) to activation protein-1 (AP1) that inhibits DNA binding in an equimolar competition. AP1 is a heterodimer of the oncogenes Fos and Jun, members of the bZIP family of transcription factors. The DN, termed A-Fos, consists of a newly designed acidic amphipathic protein sequence appended onto the N-terminus of the Fos leucine zipper, replacing the normal basic region critical for DNA binding. The acidic extension and the Jun basic region form a heterodimeric coiled coil structure that stabilizes the complex over 3000-fold and prevents the basic region of Jun from binding to DNA. Gel shift assays indicate that A-Fos can inactivate the DNA binding of a Fos:Jun heterodimer in an equimolar competition. Transient transfection assays indicate that A-Fos inhibits Jun-dependent transactivation. Both the acidic extension and the Fos leucine zipper are critical for this inhibition. Expression of A-Fos in mouse fibroblasts inhibits focus formation more than colony formation, reflecting the ability of A-Fos to interfere with the AP1 biological functions in mammalian cells. This reagent is more potent than a deletion of either the Fos or Jun transactivation domain, which has been used previously as a dominant negative to AP1 activity.
我们描述了一种针对激活蛋白-1(AP1)的显性负性(DN)蛋白,它在等摩尔竞争中抑制DNA结合。AP1是癌基因Fos和Jun的异二聚体,属于bZIP转录因子家族成员。这种DN蛋白称为A-Fos,由新设计的酸性两亲性蛋白序列附加到Fos亮氨酸拉链的N端组成,取代了对DNA结合至关重要的正常碱性区域。酸性延伸部分和Jun碱性区域形成异二聚体卷曲螺旋结构,使复合物的稳定性提高3000倍以上,并阻止Jun的碱性区域与DNA结合。凝胶迁移实验表明,A-Fos能在等摩尔竞争中使Fos:Jun异二聚体的DNA结合失活。瞬时转染实验表明,A-Fos抑制Jun依赖的反式激活。酸性延伸部分和Fos亮氨酸拉链对这种抑制作用都至关重要。在小鼠成纤维细胞中表达A-Fos对集落形成的抑制作用大于对焦点形成的抑制作用,这反映了A-Fos干扰哺乳动物细胞中AP1生物学功能的能力。这种试剂比之前用作AP1活性显性负性蛋白的Fos或Jun反式激活结构域缺失更有效。