Glyakina Anna V, Galzitskaya Oxana V
Institute of Protein Research, Russian Academy of Sciences, Pushchino, Russia.
Institute of Mathematical Problems of Biology RAS, Keldysh Institute of Applied Mathematics, Russian Academy of Sciences, Pushchino, Russia.
Front Genet. 2020 Dec 10;11:617763. doi: 10.3389/fgene.2020.617763. eCollection 2020.
It is time to review all the available data and find the distinctive characteristics of actin that make it such an important cell molecule. The presented double-stranded organization of filamentous actin cannot explain the strong polymorphism of actin fibrils. In this work, we performed bioinformatics analysis of a set of 296 amino acid actin sequences from representatives of different classes of the Chordate type. Based on the results of the analysis, the degree of conservatism of the primary structure of this protein in representatives of the Chordate type was determined. In addition, 155 structures of rabbit actin obtained using X-ray diffraction analysis and electron microscopy have been analyzed over the past 30 years. From pairwise alignments and the calculation of root-mean-square deviations (RMSDs) for these structures, it follows that they are very similar to each other without correlation with the structure resolution and the reconstruction method: the RMSDs for 11,781 pairs did not exceed 3 Å. It turned out that in rabbit actin most of the charged amino acid residues are located inside the protein, which is not typical for the protein structure. We found that two of six exon regions correspond to structural subdomains. To test the double-stranded organization of the actin structure, it is necessary to use new approaches and new techniques, taking into account our new data obtained from the structural analysis of actin.
现在是时候回顾所有可用数据,找出肌动蛋白的独特特征,正是这些特征使其成为如此重要的细胞分子。丝状肌动蛋白呈现出的双链结构无法解释肌动蛋白纤维的强多态性。在这项工作中,我们对来自不同类别的脊索动物类型代表的296个氨基酸的肌动蛋白序列进行了生物信息学分析。根据分析结果,确定了这种蛋白质在脊索动物类型代表中的一级结构保守程度。此外,在过去30年里,我们分析了通过X射线衍射分析和电子显微镜获得的155个兔肌动蛋白结构。从这些结构的成对比对和均方根偏差(RMSD)计算结果来看,它们彼此非常相似,与结构分辨率和重建方法无关:11781对结构的RMSD不超过3埃。结果表明,在兔肌动蛋白中,大多数带电荷的氨基酸残基位于蛋白质内部,这对于蛋白质结构来说并不典型。我们发现六个外显子区域中的两个对应于结构亚域。为了检验肌动蛋白结构的双链组织,有必要采用新方法和新技术,同时考虑我们从肌动蛋白结构分析中获得的新数据。