由非离子1-癸烷酰丙三醇和两性离子十二烷基二甲胺- n -氧化物组成的二元表面活性剂体系中的黄氧还毒素:分子动力学模拟方法

IF 1.2 Q3 PHYSICS, MULTIDISCIPLINARY Papers in Physics Pub Date : 2020-08-21 DOI:10.4279/pip.120004
Behnaz Bazaziyan, M. Bozorgmehr, M. Momen-Heravi, S. Beyramabadi
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引用次数: 0

摘要

由于自旋-自旋弛豫过程的时间常数较短,在制备大型蛋白质的核磁共振样品溶液时存在一定的局限性。为了克服这个问题,使用了反胶束系统。本文采用分子动力学模拟的方法,研究了黄伏还毒素在由1-癸烷-癸甘油、十二烷基二甲胺- n -氧化物、戊烷和己醇组成的季系混合物中的结构。以己醇为共溶剂。在三种不同的共溶剂浓度下进行了模拟。根据实验条件选择混合料中各组分的配比。为了比较,还进行了黄氧还毒素在水中的模拟。模拟结果表明,水中蛋白质的Cα-RMSD小于表面活性剂混合物的Cα-RMSD。此外,在表面活性剂的存在下,黄氧还毒素的旋转半径增大。通过模拟得到了两个残基之间的距离,即trp-57和phe94之间的距离,作为蛋白质活性的度量。结果表明,在表面活性剂混合物中,该距离增大。二级结构分析表明,黄氧还蛋白的n端受到表面活性剂的影响较大。黄氧还毒素在表面活性剂混合物中的扩散系数相对于其在水中的扩散系数减小。
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Flavodoxin in a binary surfactant system consisting of the nonionic 1-decanoyl-rac-glycerol and the zwitterionic lauryldimethylamine-N-oxide: molecular dynamics simulation approach
Due to the short time constant of the spin-spin relaxation process, there is a limitation in the preparation of NMR sample solution for large proteins. To overcome this problem, reverse micelle systems are used. Here, molecular dynamics simulation was used to study the structure of flavodoxin in a quaternary mixture of 1-decanoyl-rac-glycerol, lauryldimethylamine-N-oxide, pentane and hexanol. Hexanol was used as co-solvent. Simulations were performed at three different co-solvent concentrations. The proportion of components in the mixture was selected according to experimental conditions. For comparison, simulation of flavodoxin in water was also performed. The simulation results show that the Cα-RMSD for the protein in water is less than for the surfactant mixture. Also, the radius of gyration of flavodoxin increased in the presence of surfactants. The distance between the two residues trp-57 and phe-94, as a measure of protein activity, was obtained from the simulations. The results showed that in the surfactant mixtures this distance increases. Analysis of the secondary structure of the protein shows that the N-terminal part of the flavodoxin is more affected by surfactants. The flavodoxin diffusion coefficient in the surfactant mixture decreased in relation to its diffusion coefficient in water.
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来源期刊
Papers in Physics
Papers in Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
13
期刊介绍: Papers in Physics publishes original research in all areas of physics and its interface with other subjects. The scope includes, but is not limited to, physics of particles and fields, condensed matter, relativity and gravitation, nuclear physics, physics of fluids, biophysics, econophysics, chemical physics, statistical mechanics, soft condensed matter, materials science, mathematical physics and general physics. Contributions in the areas of foundations of physics, history of physics and physics education are not considered for publication. Articles published in Papers in Physics contain substantial new results and ideas that advance the state of physics in a non-trivial way. Articles are strictly reviewed by specialists prior to publication. Papers in Physics highlights outstanding articles published in the journal through the Editors'' choice section. Papers in Physics offers two distinct editorial treatments to articles from which authors can choose. In Traditional Review, manuscripts are submitted to anonymous reviewers seeking constructive criticism and editors make a decision on whether publication is appropriate. In Open Review, manuscripts are sent to reviewers. If the paper is considered original and technically sound, the article, the reviewer''s comments and the author''s reply are published alongside the names of all involved. This way, Papers in Physics promotes the open discussion of controversies among specialists that are of help to the reader and to the transparency of the editorial process. Moreover, our reviewers receive their due recognition by publishing a recorded citable report. Papers in Physics publishes Commentaries from the reviewer(s) if major disagreements remain after exchange with the authors or if a different insight proposed is considered valuable for the readers.
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