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c-Jun与ATF-2和c-Fos的异源二聚化对于人尿激酶增强子的正负调控是必需的。

Heterodimerization of c-Jun with ATF-2 and c-Fos is required for positive and negative regulation of the human urokinase enhancer.

作者信息

De Cesare D, Vallone D, Caracciolo A, Sassone-Corsi P, Nerlov C, Verde P

机构信息

International Institute of Genetics and Biophysics, Naples, Italy.

出版信息

Oncogene. 1995 Jul 20;11(2):365-76.

PMID:7624151
Abstract

Dimerization plays a pivotal role in modulating the activity of the c-Jun proto-oncogene product. Heterodimerization with activating transcription factor-2 (ATF-2) alters the DNA-binding specificity of c-Jun, allowing its targeting to several cAMP responsive element (CRE)-related sequences, which control a subset of AP-1-responsive genes. Here we show that a c-Jun/ATF-2 heterodimer binds to the AP-1 site (uPA 5'-TRE) essential for the activity of the human urokinase enhancer, conferring on this element several distinctive regulatory properties. The c-Jun/ATF-2 heterodimer was identified by binding competition assays, u.v. cross linking, and monospecific antibodies. In vitro binding studies revealed that the uPA 5'-TRE sequence is recognized by the cyclic AMP-unresponsive ATF-2 factor, but not by the cyclic AMP-inducible CREB. In addition, in vivo studies suggest that ATF-2 can mediate, at the same time, the activation of the c-Jun/ATF-2 site and the repression of the canonical collagenase AP-1 site. We report that heterodimerization with c-Fos does not increase the binding of c-Jun to the uPA 5'-TRE, in contrast to the increased binding at a consensus AP-1 site. Our data further suggest that c-Fos can act as a repressor of the c-Jun/ATF-2 binding site, revealing an important functional difference, with respect to canonical AP-1 elements.

摘要

二聚化在调节c-Jun原癌基因产物的活性中起关键作用。与激活转录因子-2(ATF-2)异源二聚化会改变c-Jun的DNA结合特异性,使其能够靶向多个与cAMP反应元件(CRE)相关的序列,这些序列控制着一部分AP-1反应基因。在此我们表明,c-Jun/ATF-2异源二聚体与人类尿激酶增强子活性所必需的AP-1位点(uPA 5'-TRE)结合,赋予该元件一些独特的调控特性。通过结合竞争分析、紫外线交联和单特异性抗体鉴定出了c-Jun/ATF-2异源二聚体。体外结合研究表明,uPA 5'-TRE序列可被cAMP无反应性的ATF-2因子识别,但不能被cAMP诱导性的CREB识别。此外,体内研究表明,ATF-2可同时介导c-Jun/ATF-2位点的激活和经典胶原酶AP-1位点的抑制。我们报道,与c-Fos异源二聚化不会增加c-Jun与uPA 5'-TRE的结合,这与在共有AP-1位点结合增加的情况相反。我们的数据进一步表明,c-Fos可作为c-Jun/ATF-2结合位点的抑制因子,揭示了与经典AP-1元件相比的一个重要功能差异。

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