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含腺嘌呤核苷酸的螺旋失稳基因-5蛋白的拉曼散射研究

A Raman scattering study of the helix-destabilizing gene-5 protein with adenine-containing nucleotides.

作者信息

Otto C, de Mul F F, Harmsen B J, Greve J

机构信息

University of Twente, Enschede, The Netherlands.

出版信息

Nucleic Acids Res. 1987 Sep 25;15(18):7605-25. doi: 10.1093/nar/15.18.7605.

Abstract

Raman spectra of gp5 and complexes of gp5 with poly(rA) and poly(dA) have been determined and analysed. From a fit of the amide I-band with model spectra it follows that the secondary structure of gp5 contains 52% beta-sheet, 28% undefined conformation and 19% alpha-helix. The band at 1032 cm-1 due to phenylalanine has an anomalous intensity both in the spectra of the complexes and the free protein. This possibly indicates a stacked structure present in the protein. Binding of gp5 to poly(rA) and poly(dA) influences the intensity of bands near 1338 and 1480 cm-1 which are considered to be marker-bands for the phosphate-sugar-base conformer. A change in conformation of the nucleotides is also reflected by vibrations originating in the phosphate- and sugar-residues of the backbone. In the spectrum of complexed poly(rA) the intensity of the conformation sensitive band at 813 cm-1, which is due to the phosphodiester group, is zero. It seems that gp5 forces poly(rA) and poly(dA) to a similar conformation. A marker band for stacking interaction in poly(rA) indicates that stacking interactions in the complex have increased.

摘要

已测定并分析了gp5以及gp5与聚(rA)和聚(dA)的复合物的拉曼光谱。通过将酰胺I带与模型光谱拟合可知,gp5的二级结构包含52%的β-折叠、28%的未定义构象和19%的α-螺旋。在复合物和游离蛋白的光谱中,由苯丙氨酸引起的1032 cm-1处的谱带强度异常。这可能表明蛋白质中存在堆积结构。gp5与聚(rA)和聚(dA)的结合会影响1338和1480 cm-1附近谱带的强度,这些谱带被认为是磷酸-糖-碱基构象异构体的标记谱带。核苷酸构象的变化也通过主链中磷酸和糖残基产生的振动得以体现。在复合聚(rA)的光谱中,由磷酸二酯基团引起的813 cm-1处构象敏感谱带的强度为零。似乎gp5迫使聚(rA)和聚(dA)形成相似的构象。聚(rA)中堆积相互作用的一个标记谱带表明复合物中的堆积相互作用增强了。

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Structure of the fd DNA--gene 5 protein complex in solution. A neutron small-angle scattering study.
J Mol Biol. 1981 Mar 5;146(3):305-20. doi: 10.1016/0022-2836(81)90390-9.
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Estimation of protein secondary structure from the laser Raman amide I spectrum.
J Mol Biol. 1983 Jun 5;166(4):581-603. doi: 10.1016/s0022-2836(83)80285-x.

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