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CREB 调节转录共激活因子 CRTC2 识别和共激活的机制。

Mechanism of CREB recognition and coactivation by the CREB-regulated transcriptional coactivator CRTC2.

机构信息

Department of Molecular Biosciences, Northwestern University, Evanston, IL 60208, USA.

出版信息

Proc Natl Acad Sci U S A. 2012 Dec 18;109(51):20865-70. doi: 10.1073/pnas.1219028109. Epub 2012 Dec 4.

Abstract

Basic leucine zipper (bZip) transcription factors regulate cellular gene expression in response to a variety of extracellular signals and nutrient cues. Although the bZip domain is widely known to play significant roles in DNA binding and dimerization, recent studies point to an additional role for this motif in the recruitment of the transcriptional apparatus. For example, the cAMP response element binding protein (CREB)-regulated transcriptional coactivator (CRTC) family of transcriptional coactivators has been proposed to promote the expression of calcium and cAMP responsive genes, by binding to the CREB bZip in response to extracellular signals. Here we show that the CREB-binding domain (CBD) of CRTC2 folds into a single isolated 28-residue helix that seems to be critical for its interaction with the CREB bZip. The interaction is of micromolar affinity on palindromic and variant half-site cAMP response elements (CREs). The CBD and CREB assemble on the CRE with 2:2:1 stoichiometry, consistent with the presence of one CRTC binding site on each CREB monomer. Indeed, the CBD helix and the solvent-exposed residues in the dimeric CREB bZip coiled-coil form an extended protein-protein interface. Because mutation of relevant bZip residues in this interface disrupts the CRTC interaction without affecting DNA binding, our results illustrate that distinct DNA binding and transactivation functions are encoded within the structural constraints of a canonical bZip domain.

摘要

碱性亮氨酸拉链(bZip)转录因子通过响应各种细胞外信号和营养线索来调节细胞基因表达。虽然 bZip 结构域广泛用于 DNA 结合和二聚化,但最近的研究表明该基序在募集转录装置方面具有额外的作用。例如,cAMP 反应元件结合蛋白(CREB)调节的转录共激活因子(CRTC)家族转录共激活因子被提出通过与细胞外信号响应的 CREB bZip 结合来促进钙和 cAMP 反应基因的表达。在这里,我们表明 CRTC2 的 CREB 结合结构域(CBD)折叠成一个单独的孤立 28 个残基的螺旋,这似乎对其与 CREB bZip 的相互作用至关重要。该相互作用在回文和变体半位点 cAMP 反应元件(CRE)上具有微摩尔亲和力。CBD 和 CREB 以 2:2:1 的比例组装在 CRE 上,这与每个 CREB 单体上存在一个 CRTC 结合位点一致。事实上,CBD 螺旋和二聚体 CREB bZip 卷曲螺旋中的溶剂暴露残基形成扩展的蛋白质-蛋白质界面。由于该界面中相关 bZip 残基的突变会破坏 CRTC 相互作用而不影响 DNA 结合,因此我们的结果表明,不同的 DNA 结合和反式激活功能被编码在规范 bZip 结构域的结构约束内。

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