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萘二肽胶束的原子结构揭示了组装和凝胶化机制。

Atomic structures of naphthalene dipeptide micelles unravel mechanisms of assembly and gelation.

作者信息

Sonani Ravi R, Bianco Simona, Dietrich Bart, Doutch James, Draper Emily R, Adams Dave J, Egelman Edward H

机构信息

Department of Biochemistry and Molecular Genetics, University of Virginia, Charlottesville, VA 22903, USA.

School of Chemistry, University of Glasgow, G12 8QQ Glasgow, UK.

出版信息

Cell Rep Phys Sci. 2024 Feb 21;5(2). doi: 10.1016/j.xcrp.2024.101812. Epub 2024 Jan 31.

Abstract

Peptide-based biopolymers have gained increasing attention due to their versatile applications. A naphthalene dipeptide (2NapFF) can form chirality-dependent tubular micelles, leading to supramolecular gels. The precise molecular arrangement within these micelles and the mechanism governing gelation have remained enigmatic. We determined, at near-atomic resolution, cryoelectron microscopy structures of the 2NapFF micelles LL-tube and LD-tube, generated by the stereoisomers (l,l)-2NapFF and (l,d)-2NapFF, respectively. The structures reveal that the fundamental packing of dipeptides is driven by the systematic π-π stacking of aromatic rings and that same-charge repulsion between the carbonyl groups is responsible for the stiffness of both tubes. The structural analysis elucidates how a single residue's altered chirality gives rise to markedly distinct tubular structures and sheds light on the mechanisms underlying the pH-dependent gelation of LL- and LD-tubes. The understanding of dipeptide packing and gelation mechanisms provides insights for the rational design of 2NapFF derivatives, enabling the modulation of micellar dimensions.

摘要

基于肽的生物聚合物因其广泛的应用而越来越受到关注。一种萘二肽(2NapFF)可以形成手性依赖的管状胶束,进而形成超分子凝胶。这些胶束内精确的分子排列以及凝胶化的机制一直是个谜。我们通过冷冻电子显微镜,以近原子分辨率确定了分别由立体异构体(l,l)-2NapFF和(l,d)-2NapFF生成的2NapFF胶束LL-管和LD-管的结构。结构表明,二肽的基本堆积是由芳香环的系统π-π堆积驱动的,并且羰基之间的同电荷排斥是两根管子刚性的原因。结构分析阐明了单个残基手性的改变如何产生明显不同的管状结构,并揭示了LL-管和LD-管pH依赖凝胶化的潜在机制。对二肽堆积和凝胶化机制的理解为2NapFF衍生物的合理设计提供了见解,从而能够调节胶束尺寸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e43/10922087/ebc51dbb2a98/nihms-1969419-f0002.jpg

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