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非手性甘氨酸残基对类似两亲性短肽自组装纳米纤维手性的影响。

Effect of Achiral Glycine Residue on the Handedness of Surfactant-Like Short Peptide Self-Assembly Nanofibers.

机构信息

State Key Laboratory of Heavy Oil Processing, Center for Bioengineering and Biotechnology, China University of Petroleum (East China), Qingdao 266580, China.

Spallation Neutron Source Science Center, Dongguan 523803, China.

出版信息

Langmuir. 2023 Jul 18;39(28):9932-9941. doi: 10.1021/acs.langmuir.3c01165. Epub 2023 Jul 4.

Abstract

Surfactant-like short peptides are a kind of ideal model for the study of chiral self-assembly. At present, there are few studies on the chiral self-assembly of multicharged surfactant-like peptides. In this study, we adopted a series of short peptides of Ac-IKGK-NH with different combinations of -lysine and -lysine residues as the model molecules. TEM, AFM and SANS results showed that Ac-IKGK-NH, Ac-IKGK-NH, and Ac-IKGK-NH formed the morphologies of nanofibers, and Ac-IKGK-NH formed nanoribbons. All the self-assembled nanofibers, including the intermediate nanofibers of Ac-IKGK-NH nanoribbons, showed the chirality of left handedness. Based on the molecular simulation results, it has been demonstrated that the supramolecular chirality was directly dictated by the orientation of single β strand. The insertion of glycine residue demolished the effect of lysine residues on the single strand conformation due to its high conformational flexibility. The replacement of -isoleucine with -isoleucine also confirmed that the isoleucine residues involved in the β-sheet determined the supramolecular handedness. This study provides a profound mechanism of the chiral self-assembly of short peptides. We hope that it will improve the regulation of chiral molecular self-assembly with achiral glycine, as well.

摘要

两亲性短肽是手性自组装研究的理想模型。目前,关于多电荷两亲性短肽的手性自组装研究较少。本研究采用一系列不同赖氨酸残基组合的 Ac-IKGK-NH 短肽作为模型分子。TEM、AFM 和 SANS 结果表明,Ac-IKGK-NH、Ac-IKGK-NH 和 Ac-IKGK-NH 形成了纳米纤维的形态,而 Ac-IKGK-NH 形成了纳米带。所有自组装的纳米纤维,包括 Ac-IKGK-NH 纳米带的中间纳米纤维,均表现出左手性。基于分子模拟结果,证明了超分子手性是由单 β 链的取向直接决定的。甘氨酸残基的插入由于其高度的构象灵活性而破坏了赖氨酸残基对单链构象的影响。用异亮氨酸取代异亮氨酸也证实了参与β-折叠的异亮氨酸残基决定了超分子的手性。本研究为短肽的手性自组装提供了深刻的机制。我们希望它也能改善对非手性甘氨酸的手性分子自组装的调控。

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