首页> 美国卫生研究院文献>Biochemical Journal >Biochemical filtering of a protein-protein docking simulation identifies the structure of a complex between a recombinant antibody fragment and alpha-bungarotoxin.
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Biochemical filtering of a protein-protein docking simulation identifies the structure of a complex between a recombinant antibody fragment and alpha-bungarotoxin.

机译:蛋白质-蛋白质对接模拟的生化过滤可识别重组抗体片段和α-邦加罗毒素之间的复合物结构。

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摘要

The structural characterization of a complex of alpha-bungarotoxin with a recombinant antibody fragment that mimics the acetylcholine receptor was achieved using docking simulation procedures. To drive the computer simulation towards a limited set of solutions with biological significance, a filter, incorporating general considerations of antigen-antibody interactions, specificity of the selected antibody fragment and results from alpha-bungarotoxin epitope mapping, was adopted. Two similar structures were obtained for the complex, both of them stabilized by cation-pi and hydrophobic interactions due to tyrosilyl residues of the antibody fragment. Site-directed mutagenesis studies, removing each of the latter aromatic residues and causing full inactivation of the interaction process between the antibody fragment and the neurotoxin, support the validity of the calculated structure of the complex.
机译:使用对接模拟程序实现了α-邦格鲁毒素与模拟乙酰胆碱受体的重组抗体片段的复合物的结构表征。为了使计算机模拟朝着有限的具有生物学意义的解决方案的方向发展,采用了一种过滤器,该过滤器结合了抗原-抗体相互作用的一般考虑,所选抗体片段的特异性以及α-真菌毒素表位作图的结果。对于该复合物获得了两个相似的结构,由于抗体片段的酪氨酰残基,它们都通过阳离子-π和疏水相互作用而稳定。定点诱变研究消除了后面的每个芳香族残基,并导致抗体片段与神经毒素之间的相互作用过程完全失活,这支持了复合物计算结构的有效性。

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