Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, The Russian Academy of Sciences, Miklukho-Maklaya St. 16/10, 117997, Moscow, Russia.
INSERM UMR S-1134, DSIMB, Univ. Paris Diderot, Sorbonne Paris Cite, Univ de la Reunion, Univ des Antilles, INTS, Lab. of Excellence GR-Ex 6, Rue Alexandre Cabanel, 75739, Paris Cedex 15, France.
Biochimie. 2019 May;160:88-92. doi: 10.1016/j.biochi.2019.02.006. Epub 2019 Feb 19.
The aim of this work was to find a minimal set of structurally stable pentapeptides, which allows forming a polypeptide chain of a required 3D structure. To search for factors that ensure structural stability of the pentapeptide, we generated peptide sequences with no more than three functional groups, based on the alanine pentapeptide AAAAA. We analyzed 44,860 structures of peptides by the molecular dynamics method and found that 1,225 pentapeptides over 80% of the simulation time were in a stable conformation. Clustering of these conformations revealed 54 topological types of conformationally stable pentapeptides. These conformations relate to different combined elements of the protein secondary structure. So, we obtained a minimal set of amino acid structures of conformationally stable pentapeptides, creating a complete set of different topologies that ensure the formation of pre-folded conformation of protein structures.
这项工作的目的是找到一组结构稳定的最小五肽,以形成所需的 3D 结构的多肽链。为了寻找确保五肽结构稳定性的因素,我们在丙氨酸五肽 AAAAA 的基础上,生成了不超过三个官能团的肽序列。我们通过分子动力学方法分析了 44860 个肽结构,发现 1225 个五肽在超过 80%的模拟时间内处于稳定构象。对这些构象进行聚类,揭示了 54 种构象稳定的五肽拓扑类型。这些构象与蛋白质二级结构的不同组合元素有关。因此,我们获得了一组结构稳定的最小氨基酸五肽结构,形成了完整的拓扑结构集,以确保蛋白质结构预折叠构象的形成。