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Studies on crystal structures active-centre geometry and depurinating mechanism of two ribosome-inactivating proteins.

机译:研究两种核糖体失活蛋白的晶体结构活性中心几何形状和脱嘌呤机理。

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摘要

Two ribosome-inactivating proteins, trichosanthin and alpha-momorcharin, have been studied in the forms of complexes with ATP or formycin, by an X-ray-crystallographic method at 1.6-2.0 A (0.16-0.20 nm) resolution. The native alpha-momorcharin had been studied at 2.2 A resolution. Structures of trichosanthin were determined by a multiple isomorphous replacement method. Structures of alpha-momorcharin were determined by a molecular replacement method using refined trichosanthin as the searching model. Small ligands in all these complexes have been recognized and built on the difference in electron density. All these structures have been refined to achieve good results, both in terms of crystallography and of ideal geometry. These two proteins show considerable similarity in their three-dimensional folding and to that of related proteins. On the basis of these structures, detailed geometries of the active centres of these two proteins are described and are compared with those of related proteins. In all complexes the interactions between ligand atoms and protein atoms, including hydrophobic forces, aromatic stacking interactions and hydrogen bonds, are found to be specific towards the adenine base. The relationship between the sequence conservation of ribosome-inactivating proteins and their active-centre geometry was analysed. A depurinating mechanism of ribosome-inactivating proteins is proposed on the basis of these results. The N-7 atom of the substrate base group is proposed to be protonated by an acidic residue in the active centre.
机译:已经通过X射线晶体学方法以1.6-2.0 A(0.16-0.20 nm)的分辨率研究了两种核糖体失活蛋白,天花粉蛋白和α-吗啡蛋白与ATP或甲霉素的复合物形式。天然α-吗啡已在2.2 A分辨率下进行了研究。天花粉蛋白的结构通过多重同构置换法确定。使用精制的天花粉蛋白作为检索模型,通过分子置换法确定了α-吗啡的结构。所有这些配合物中的小配体均已被认识并建立在电子密度的差异上。所有这些结构都经过精制,无论在晶体学还是在理想的几何形状方面均能达到良好的效果。这两种蛋白质在其三维折叠中和与相关蛋白质的折叠中显示出相当大的相似性。基于这些结构,描述了这两种蛋白质的活性中心的详细几何形状,并与相关蛋白质进行了比较。在所有配合物中,发现配体原子和蛋白质原子之间的相互作用,包括疏水力,芳族堆积相互作用和氢键,对腺嘌呤碱基具有特异性。分析了核糖体失活蛋白的序列保守性与它们的活性中心几何形状之间的关系。基于这些结果,提出了核糖体失活蛋白的去嘌呤机理。底物基团的N-7原子被提议通过活性中心中的酸性残基进行质子化。

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