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苜蓿花叶病毒VRU株系外壳蛋白的一级结构。关于蛋白外壳组装中两种构象出现的假说。

The primary structure of the coat protein of alfalfa mosaic virus strain VRU. A hypothesis on the occurrence of two conformations in the assembly of the protein shell.

作者信息

Castel A, Kraal B, De Graaf J M, Bosch L

出版信息

Eur J Biochem. 1979 Dec;102(1):125-38. doi: 10.1111/j.1432-1033.1979.tb06272.x.

Abstract

The complete primary structure of the coat protein of strain VRU of alfalfa mosaic virus (AMV) is reported. The strain is morphologically different from all other AMV strains as it contains large amounts of unusually long virus particles. This is caused by structural differences in the coat protein chain. The amino acid sequence has mainly been established by the characterization of peptides obtained after cleavage with cyanogen bromide and digestion with trypsin, chymotrypsin, thermolysin or Staphylococcus aureus protease. The major sequencing technique used was the dansyl-Edman procedure. The VRU coat protein consists of 219 amino acid residues corresponding to a molecular weight of 24056. Compared to the coat protein of strain 425 [Van Beynum et al. (1977) Eur. J. Biochem. 72, 63-78], 15 amino acid substitutions were localized. Most of them have a conservative character and may be explained by single-point mutations. A correction is given for the AMV 425 coat protein: Asn-216 was shown to be Asp-216. The prediction of the secondary structure for the two viral coat proteins was not significantly influenced by the various amino acid substitutions except for the region containing residues 65-100. This led us to the hypothesis that the AMV coat protein may occur in two different conformations favouring its incorporation into either a pentagonal or hexagonal quasi-equivalent position in the lattice of the protein shell. The substitutions in the above-mentioned region of the VRU coat protein may have caused a strong preference for the hexagonal lattice conformation. The model is supported by preliminary sequence data of the same coat protein region in AMV 15/64, a strain morphologically intermediate between 425 and VRU.

摘要

本文报道了苜蓿花叶病毒(AMV)VRU株系外壳蛋白的完整一级结构。该株系在形态上与所有其他AMV株系不同,因为它含有大量异常长的病毒粒子。这是由外壳蛋白链的结构差异引起的。氨基酸序列主要通过对溴化氰裂解后以及用胰蛋白酶、糜蛋白酶、嗜热菌蛋白酶或金黄色葡萄球菌蛋白酶消化后得到的肽段进行表征来确定。使用的主要测序技术是丹磺酰-埃德曼法。VRU外壳蛋白由219个氨基酸残基组成,分子量为24056。与425株系的外壳蛋白[Van Beynum等人(1977年),《欧洲生物化学杂志》72卷,63 - 78页]相比,定位到了15个氨基酸替换。其中大多数具有保守性质,可能由单点突变解释。对AMV 425外壳蛋白进行了校正:Asn - 216被证明是Asp - 216。除了包含残基65 - 100的区域外,两种病毒外壳蛋白二级结构的预测并未受到各种氨基酸替换的显著影响。这使我们提出假说,即AMV外壳蛋白可能以两种不同构象存在,有利于其在蛋白壳晶格中掺入五边形或六边形准等效位置。VRU外壳蛋白上述区域的替换可能导致对六边形晶格构象有强烈偏好。AMV 15/64株系的同一外壳蛋白区域的初步序列数据支持了该模型,AMV 15/64株系在形态上介于425和VRU之间。

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