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环磷酸腺苷反应元件结合蛋白与大鼠纹状体中脑啡肽原增强子相互作用,而Fos蛋白则不与之相互作用。

The cAMP-response-element-binding protein interacts, but Fos protein does not interact, with the proenkephalin enhancer in rat striatum.

作者信息

Konradi C, Kobierski L A, Nguyen T V, Heckers S, Hyman S E

机构信息

Laboratory of Molecular and Developmental Neuroscience, Massachusetts General Hospital, Boston.

出版信息

Proc Natl Acad Sci U S A. 1993 Aug 1;90(15):7005-9. doi: 10.1073/pnas.90.15.7005.

Abstract

The proenkephalin gene is a well-studied model of transcription factor-target gene interaction in the nervous system and has been proposed as a regulatory target of the protein product of the immediate-early gene c-fos. This regulatory mechanism has been proposed, in part, because the cAMP response element 2 (CRE-2) site, the key DNA regulatory element within the proenkephalin second-messenger-inducible enhancer, avidly binds AP-1 proteins, including Fos, in vitro. However, we observe a dissociation in the time course of activation of c-fos and proenkephalin mRNA in rat striatum after administration of the dopamine D2 receptor antagonist haloperidol. This result prompted us to investigate the composition of protein complexes in striatal nuclear extracts that bind to the CRE-2 site. Even though our striatal nuclear extracts had substantial basal and haloperidol-inducible AP-1-binding activities that contained Fos, we could not detect Fos in complexes bound to the CRE-2 element. Instead, as determined by antibody supershift analysis, we detect CRE-binding protein (CREB)-like proteins binding to CRE-2 in both basal and haloperidol-stimulated conditions. Finally, we show that haloperidol induces CREB protein phosphorylation in striatum.

摘要

前脑啡肽原基因是神经系统中转录因子-靶基因相互作用一个经过充分研究的模型,并且已被提出作为即刻早期基因c-fos蛋白质产物的调控靶标。提出这种调控机制的部分原因在于,前脑啡肽原第二信使诱导型增强子内的关键DNA调控元件——环磷酸腺苷反应元件2(CRE-2)位点,在体外能与包括Fos在内的活化蛋白-1(AP-1)蛋白紧密结合。然而,我们观察到,在给予多巴胺D2受体拮抗剂氟哌啶醇后,大鼠纹状体中c-fos和前脑啡肽原mRNA的激活时间进程出现了分离。这一结果促使我们研究纹状体核提取物中与CRE-2位点结合的蛋白质复合物的组成。尽管我们的纹状体核提取物具有大量的基础和氟哌啶醇诱导的AP-1结合活性,且其中含有Fos,但我们在与CRE-2元件结合的复合物中未能检测到Fos。相反,通过抗体超迁移分析确定,在基础和氟哌啶醇刺激条件下,我们均检测到有CRE结合蛋白(CREB)样蛋白与CRE-2结合。最后,我们表明氟哌啶醇可诱导纹状体中CREB蛋白磷酸化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc48/47064/cf4b6d2745d3/pnas01472-0121-a.jpg

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