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Synthetic structural and biological studies of the ubiquitin system: chemically synthesized and native ubiquitin fold into identical three-dimensional structures.

机译:泛素系统的合成结构和生物学研究:化学合成的和天然的泛素折叠成相同的三维结构。

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摘要

The solid-phase chemical synthesis of ubiquitin produced a molecule with physicochemical properties similar to those of the natural protein. We have grown crystals of this synthetic ubiquitin and performed an X-ray analysis at 1.8 A resolution in order to compare the synthetic protein with the known natural structure. The crystals were isomorphous with those of the natural protein, the R-factor between them being 7.1%. Difference Fourier analysis shows that the synthetic and natural structures are indistinguishable. The co-ordinates of the natural ubiquitin (1UBQ) were used as the starting point for restrained least-squares refinement (TNT program) against the synthetic X-ray data. The refinement converged to R = 16.5% and the resulting model did not change when refined against natural ubiquitin X-ray data (R = 18.7%). From both the refinement and featureless difference Fourier synthesis, we conclude that the synthetic and natural protein structures are identical. A short discussion about the uses of proteins with 'non-standard' amino acid residues is included.
机译:泛素的固相化学合成产生的分子具有与天然蛋白质相似的物理化学性质。我们已经生长了这种合成泛素的晶体,并以1.8 A的分辨率进行了X射线分析,以便将合成蛋白与已知的天然结构进行比较。晶体与天然蛋白质同构,它们之间的R因子为7.1%。差异傅立叶分析表明,合成和天然结构是无法区分的。天然泛素(1UBQ)的坐标用作针对合成X射线数据进行约束最小二乘法(TNT程序)的起点。细化收敛到R = 16.5%,并且针对自然泛素X射线数据(R = 18.7%)进行细化后,所得模型没有改变。从细化和无特征差异傅立叶合成中,我们得出结论,合成蛋白质结构和天然蛋白质结构相同。包括有关使用“非标准”氨基酸残基的蛋白质的简短讨论。

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