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一种具有药物递送应用的可变色大环肽。

A chameleonic macrocyclic peptide with drug delivery applications.

作者信息

Payne Colton D, Franke Bastian, Fisher Mark F, Hajiaghaalipour Fatemeh, McAleese Courtney E, Song Angela, Eliasson Carl, Zhang Jingjing, Jayasena Achala S, Vadlamani Grishma, Clark Richard J, Minchin Rodney F, Mylne Joshua S, Rosengren K Johan

机构信息

The University of Queensland, School of Biomedical Sciences Brisbane QLD 4072 Australia

The University of Western Australia, School of Molecular Sciences, The ARC Centre of Excellence in Plant Energy Biology Crawley WA 6009 Australia.

出版信息

Chem Sci. 2021 Apr 11;12(19):6670-6683. doi: 10.1039/d1sc00692d.

Abstract

Head-to-tail cyclized peptides are intriguing natural products with unusual properties. The PawS-Derived Peptides (PDPs) are ribosomally synthesized as part of precursors for seed storage albumins in species of the daisy family, and are post-translationally excised and cyclized during proteolytic processing. Here we report a PDP twice the typical size and with two disulfide bonds, identified from seeds of . In water, synthetic PDP-23 forms a unique dimeric structure in which two monomers containing two β-hairpins cross-clasp and enclose a hydrophobic core, creating a square prism. This dimer can be split by addition of micelles or organic solvent and in monomeric form PDP-23 adopts open or closed V-shapes, exposing different levels of hydrophobicity dependent on conditions. This chameleonic character is unusual for disulfide-rich peptides and engenders PDP-23 with potential for cell delivery and accessing novel targets. We demonstrate this by conjugating a rhodamine dye to PDP-23, creating a stable, cell-penetrating inhibitor of the P-glycoprotein drug efflux pump.

摘要

头对尾环化肽是一类具有独特性质的有趣天然产物。源自PawS的肽(PDPs)在雏菊科植物中作为种子储存白蛋白前体的一部分进行核糖体合成,并在蛋白水解加工过程中进行翻译后切除和环化。在此,我们报道了一种从[具体植物名称]种子中鉴定出的、具有两个二硫键且大小为典型PDP两倍的PDP。在水中,合成的PDP - 23形成一种独特的二聚体结构,其中两个含有两个β - 发夹结构的单体相互交叉扣合,包围一个疏水核心,形成一个方棱柱。通过添加胶束或有机溶剂可使该二聚体解离,单体形式的PDP - 23呈现开放或闭合的V形,根据条件暴露不同程度的疏水性。这种变色龙般的特性对于富含二硫键的肽来说是不寻常的,赋予了PDP - 23细胞递送和靶向新靶点的潜力。我们通过将罗丹明染料与PDP - 23偶联来证明这一点,从而创建了一种稳定的、可穿透细胞的P - 糖蛋白药物外排泵抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3230/8132947/4e53bef440e7/d1sc00692d-f1.jpg

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