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[马铃薯A病毒外壳蛋白颗粒的结构及其解离]

[Structure of Potato Virus A Coat Protein Particles and Their Dissociation].

作者信息

Ksenofontov A L, Dobrov E N, Fedorova N V, Arutyunyan A M, Golanikov A E, Järvekülg L, Shtykova E V

机构信息

Belozersky Institute of' Physico-Chemical Biology, Moscow State University, Moscow, 119991 Russia.

Shubnikov Institute of Crystallography, Crystallography and Photonics Federal Scientific Research Centre, Russian Academy of Sciences, Moscow, 119333 Russia.

出版信息

Mol Biol (Mosk). 2018 Nov-Dec;52(6):1055-1065. doi: 10.1134/S0026898418060101.

Abstract

This paper reports on a complex structural analysis of the potato virus A coat protein using a set of complementary physico-chemical methods. We have demonstrated previously that this protein does not exist as individual subunits in solution and undergoes association into oligomers with subsequent transition to β-conformation. The purpose of the present work was to study the possible mechanisms of this transformation and to search for methods that dissociate protein oligomers. To analyze the low resolution protein structure in solution, small-angle X-ray scattering was used. Stable particles representing clusters of 30 coat protein subunits were present even in an aqueous salt solution with a high ionic strength and pH (pH 10.5; 0.5 M NaCl). The particles did not dissociate in the presence of 10 mM dextran sulfates (15 and 100 kDa). Dissociation in the presence of 5.2 mM sodium dodecyl sulfate results in the formation of the subunit-detergent complexes consisting of 10-12 small particles joined together like "beads on a string". Similar effects of sodium dodecyl sulfate were shown for serum albumins (bovine and human). Denaturation of the potato virus A coat protein molecules occurs in the presence of detergent concentrations that are seven times lower than that in albumins (5.2 and 35 mM), which confirms low stability of the potato virus A coat protein. Using spectral methods, preservation of the secondary structure and loss of the tertiary structure of the protein in its complex with sodium dodecyl sulfate have been demonstrated. Possible mechanism for protein particle formation through the interaction between unordered terminal domains and their transformation into β-structures has been suggested.

摘要

本文报道了使用一套互补的物理化学方法对马铃薯A病毒外壳蛋白进行的复杂结构分析。我们之前已经证明,这种蛋白在溶液中并非以单个亚基形式存在,而是会缔合成寡聚体,随后转变为β构象。本研究的目的是探究这种转变的可能机制,并寻找解离蛋白寡聚体的方法。为了分析溶液中低分辨率的蛋白质结构,我们使用了小角X射线散射技术。即使在高离子强度和pH值(pH 10.5;0.5 M NaCl)的盐水溶液中,也存在代表30个外壳蛋白亚基簇的稳定颗粒。在10 mM硫酸葡聚糖(15和100 kDa)存在的情况下,这些颗粒不会解离。在5.2 mM十二烷基硫酸钠存在下解离会导致形成由10 - 12个小颗粒像“串珠”一样连接在一起的亚基 - 去污剂复合物。十二烷基硫酸钠对牛血清白蛋白和人血清白蛋白也显示出类似的效果。马铃薯A病毒外壳蛋白分子在去污剂浓度比白蛋白低七倍(5.2和35 mM)的情况下发生变性,这证实了马铃薯A病毒外壳蛋白的稳定性较低。使用光谱方法,已证明该蛋白与十二烷基硫酸钠形成复合物时二级结构得以保留,三级结构丧失。有人提出了通过无序末端结构域之间的相互作用形成蛋白质颗粒并将其转变为β结构的可能机制。

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