Department of Biochemistry and Molecular Biology, University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Nucleic Acids Res. 2011 Apr;39(7):2931-42. doi: 10.1093/nar/gkq1177. Epub 2010 Nov 23.
In Gram-positive bacteria, carbon catabolite protein A (CcpA) is the master regulator of carbon catabolite control, which ensures optimal energy usage under diverse conditions. Unlike other LacI-GalR proteins, CcpA is activated for DNA binding by first forming a complex with the phosphoprotein HPr-Ser46-P. Bacillus subtilis CcpA functions as both a transcription repressor and activator and binds to more than 50 operators called catabolite response elements (cres). These sites are highly degenerate with the consensus, WTGNNARCGNWWWCAW. How CcpA-(HPr-Ser46-P) binds such diverse sequences is unclear. To gain insight into this question, we solved the structures of the CcpA-(HPr-Ser46-P) complex bound to three different operators, the synthetic (syn) cre, ackA2 cre and gntR-down cre. Strikingly, the structures show that the CcpA-bound operators display different bend angles, ranging from 31° to 56°. These differences are accommodated by a flexible linkage between the CcpA helix-turn-helix-loop-helix motif and hinge helices, which allows independent docking of these DNA-binding modules. This flexibility coupled with an abundance of non-polar residues capable of non-specific nucleobase interactions permits CcpA-(HPr-Ser46-P) to bind diverse operators. Indeed, biochemical data show that CcpA-(HPr-Ser46-P) binds the three cre sites with similar affinities. Thus, the data reveal properties that license this protein to function as a global transcription regulator.
在革兰氏阳性菌中,碳分解代谢物阻遏物蛋白 A(CcpA)是碳分解代谢物控制的主要调节剂,可确保在各种条件下实现最佳能量利用。与其他 LacI-GalR 蛋白不同,CcpA 首先与磷酸化蛋白 HPr-Ser46-P 形成复合物,然后被激活进行 DNA 结合。枯草芽孢杆菌 CcpA 作为转录阻遏物和激活物发挥作用,可与 50 多个称为碳分解代谢物应答元件(cre)的操纵子结合。这些位点高度简并,共识序列为 WTGNNARCGNWWWCAW。CcpA-(HPr-Ser46-P) 如何结合如此多样的序列尚不清楚。为了深入了解这个问题,我们解析了 CcpA-(HPr-Ser46-P) 复合物与三个不同操纵子(合成 cre、ackA2 cre 和 gntR-down cre)结合的结构。引人注目的是,这些结构表明 CcpA 结合的操纵子显示出不同的弯曲角度,范围从 31°到 56°。这种差异通过 CcpA 螺旋-转角-螺旋-环-螺旋基序和铰链螺旋之间的柔性连接来适应,这允许这些 DNA 结合模块独立对接。这种灵活性加上大量能够与非特异性核碱基相互作用的非极性残基,使 CcpA-(HPr-Ser46-P) 能够结合多种操纵子。事实上,生化数据表明 CcpA-(HPr-Ser46-P) 以相似的亲和力结合三个 cre 位点。因此,这些数据揭示了使该蛋白能够作为全局转录调节剂发挥作用的特性。