School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
Department of Chemical and Materials Engineering, University of Kentucky, Lexington, Kentucky 40506, United States.
J Phys Chem B. 2021 Apr 29;125(16):4004-4015. doi: 10.1021/acs.jpcb.0c11645. Epub 2021 Apr 20.
Coassembling peptides offer an additional degree of freedom in the design of nanostructured biomaterials when compared to analogous self-assembling peptides. Yet, our understanding of how amino acid sequences encodes coassembled nanofiber structure is limited. Prior work on a charge-complementary pair, CATCH+ and CATCH- peptides, detected like-peptide nearest neighbors (CATCH+:CATCH+ and CATCH-:CATCH-) within coassembled β-sheet nanofibers; these self-associated peptide pairs marked a departure from an "ideal" coassembled structure. In this work, we employ solid-state NMR, isotope-edited FTIR, and coarse-grained molecular dynamics simulations to evaluate the alignment of β-strands within CATCH peptide nanofibers. Both experimental and computational results suggest that CATCH molecules coassemble into structurally heterogeneous nanofibers, which is consistent with our observations in another coassembling system, the King-Webb peptides. Within β-sheet nanofibers, β-strands were found to have nearest neighbors aligned in-register parallel, in-register antiparallel, and out-of-register. In comparison to the King-Webb peptides, CATCH nanofibers exhibit a greater degree of structural heterogeneity. By comparing the amino acid sequences of CATCH and King-Webb peptides, we can begin to unravel sequence-to-structure relationships, which may encode more precise coassembled β-sheet nanostructures.
与类似的自组装肽相比,共组装肽在设计纳米结构生物材料时提供了额外的自由度。然而,我们对氨基酸序列如何编码共组装纳米纤维结构的理解是有限的。先前关于电荷互补对 CATCH+和 CATCH-肽的研究检测到共组装 β-折叠纳米纤维内的类似肽最近邻(CATCH+:CATCH+和 CATCH-:CATCH-);这些自缔合的肽对偏离了“理想”的共组装结构。在这项工作中,我们使用固态 NMR、同位素编辑 FTIR 和粗粒分子动力学模拟来评估 CATCH 肽纳米纤维内 β-链的排列。实验和计算结果均表明,CATCH 分子共组装成结构不均匀的纳米纤维,这与我们在另一个共组装系统 King-Webb 肽中的观察结果一致。在 β-折叠纳米纤维中,β-链被发现具有最近邻的链在同一直线上平行、同一直线上反平行和不在同一直线上。与 King-Webb 肽相比,CATCH 纳米纤维表现出更大程度的结构不均匀性。通过比较 CATCH 和 King-Webb 肽的氨基酸序列,我们可以开始揭示序列到结构的关系,这可能编码更精确的共组装 β-折叠纳米结构。