Butterfoss Glenn L, Drew Kevin, Renfrew P Douglas, Kirshenbaum Kent, Bonneau Richard
Center for Genomics and Systems Biology, New York University Abu Dhabi, P.O. Box, 129188, Abu Dhabi, United Arab Emirates.
Biopolymers. 2014 Sep;102(5):369-78. doi: 10.1002/bip.22516.
Peptomers are oligomeric molecules composed of both α-amino acids and N-substituted glycine monomers, thus creating a hybrid of peptide and peptoid units. Peptomers have been used in several applications such as antimicrobials, protease inhibitors, and antibody mimics. Despite the considerable promise of peptomers as chemically diverse molecular scaffolds, we know little about their conformational tendencies. This lack of knowledge limits the ability to implement computational approaches for peptomer design. Here we computationally evaluate the local structural propensities of the peptide-peptoid linkage. We find some general similarities between the peptide residue conformational preferences and the Ramachandran distribution of residues that precede proline in folded protein structures. However, there are notable differences. For example, several β-turn motifs are disallowed when the i+2 residue is also a peptoid monomer. Significantly, the lowest energy geometry, when dispersion forces are accounted for, corresponds to a "cis-Pro touch-turn" conformation, an unusual turn motif that has been observed at protein catalytic centers and binding sites. The peptomer touch-turn thus represents a useful design element for the construction of folded oligomers capable of molecular recognition and as modules in the assembly of structurally complex peptoid-protein hybrid macromolecules.
肽聚体是由α-氨基酸和N-取代甘氨酸单体组成的寡聚分子,从而形成了肽和类肽单元的杂合体。肽聚体已被用于多种应用,如抗菌剂、蛋白酶抑制剂和抗体模拟物。尽管肽聚体作为具有化学多样性的分子支架有很大潜力,但我们对其构象倾向了解甚少。这种知识的缺乏限制了实施肽聚体设计计算方法的能力。在此,我们通过计算评估肽-类肽连接的局部结构倾向。我们发现肽残基的构象偏好与折叠蛋白结构中脯氨酸之前残基的拉氏分布之间存在一些普遍相似性。然而,也有显著差异。例如,当i + 2残基也是类肽单体时,几种β-转角基序是不允许的。重要的是,当考虑色散力时,最低能量几何结构对应于一种“顺式脯氨酸接触转角”构象,这是一种在蛋白质催化中心和结合位点观察到的不寻常转角基序。因此,肽聚体接触转角是构建能够进行分子识别的折叠寡聚体以及作为结构复杂的类肽-蛋白质杂合大分子组装模块的有用设计元素。