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Model of specific complex between catabolite gene activator protein and B-DNA suggested by electrostatic complementarity.

机译:静电互补性表明分解代谢物基因激活蛋白和B-DNA之间的特定复合物模型。

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摘要

Calculation of the electrostatic potential energy surfaces of Escherichia coli catabolite gene activator protein (CAP) dimer suggests a model for the complex between CAP and a specific DNA sequence. The positive electrostatic charge density of CAP lies on the two COOH-terminal domains and about 20-30 A from the molecular 2-fold axis. Assuming that the 2-fold axes of the CAP dimer and the DNA to which it binds are coincident, the positions of the positive electrostatic potential surfaces strongly suggest the rotational orientation of the DNA relative to the protein. A specific complex between CAP and its DNA binding site in the lac operon has been built with the DNA in this orientation. The amino ends of the two protruding F alpha-helices interact in successive major grooves of the DNA. Four side chains emanating from each F helix can form hydrogen bonds with the exposed edges of four bases in the major groove. Electrostatic considerations as well as the necessity to make interactions between CAP and a DNA site as much as 20 base pairs long require us to bend or kink the DNA. In our model of CAP complexed with B-DNA, as with those proposed for Cro and lambda cI repressors, the protruding second helices of the two-helix motif from both subunits interact in successive major grooves of B-DNA. However, unlike Cro and similar to lambda cI, the protruding alpha-helices are nearly parallel to the bases rather than the groove.
机译:大肠杆菌分解代谢基因激活蛋白(CAP)二聚体的静电势能表面的计算提出了CAP和特定DNA序列之间复合物的模型。 CAP的正静电荷密度位于两个COOH末端结构域,距离分子2倍轴大约20-30A。假设CAP二聚体的2轴和与其结合的DNA是重合的,则正电势表面的位置强烈暗示了DNA相对于蛋白质的旋转方向。在lac操纵子中CAP及其DNA结合位点之间的特定复合物已被DNA沿此方向构建。两个突出的Fα螺旋的氨基末端在DNA的连续主要凹槽中相互作用。从每个F螺旋发出的四个侧链可以与主槽中四个碱基的暴露边缘形成氢键。静电因素以及在CAP和DNA位点之间进行相互作用的必要性长达20个碱基对,这要求我们弯曲或扭结DNA。在我们的与B-DNA复合的CAP模型中,就像针对Cro和lambda cI阻遏物所建议的那样,两个亚基中两个螺旋基序突出的第二个螺旋在B-DNA的连续主要沟中相互作用。但是,与Cro不同,类似于lambda cI,突出的alpha螺旋几乎平行于基部,而不是凹槽。

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