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天然存在的抗菌中长肽十五肽戊肽及其自旋标记类似物的合成、构象分析和抗肿瘤活性。

Synthesis, Conformational Analysis and Antitumor Activity of the Naturally Occurring Antimicrobial Medium-Length Peptaibol Pentadecaibin and Spin-Labeled Analogs Thereof.

机构信息

Department of Chemical Sciences, University of Padova, 35131 Padova, Italy.

Department of Biology, University of Padova, 35131 Padova, Italy.

出版信息

Int J Mol Sci. 2023 Aug 29;24(17):13396. doi: 10.3390/ijms241713396.

Abstract

Peptaibols are proteolysis-resistant, membrane-active peptides. Their remarkably stable helical 3D-structures are key for their bioactivity. They can insert themselves into the lipid bilayer as barrel staves, or lay on its surface like carpets, depending on both their length and the thickness of the lipid bilayer. Medium-length peptaibols are of particular interest for studying the peptide-membrane interaction because their length allows them to adopt either orientation as a function of the membrane thickness, which, in turn, might even result in an enhanced selectivity. Electron paramagnetic resonance (EPR) is the election technique used to this aim, but it requires the synthesis of spin-labeled medium-length peptaibols, which, in turn, is hampered by the poor reactivity of the C-tetrasubstituted residues featured in their sequences. After several years of trial and error, we are now able to give state-of-the-art advice for a successful synthesis of nitroxide-containing peptaibols, avoiding deleted sequences, side reactions and difficult purification steps. Herein, we describe our strategy and itsapplication to the synthesis of spin-labeled analogs of the recently discovered, natural, medium-length peptaibol pentadecaibin. We studied the antitumor activity of pentadecaibin and its analogs, finding potent cytotoxicity against human triple-negative breast cancer and ovarian cancer. Finally, our analysis of the peptide conformational preferences and membrane interaction proved that pentadecaibinspin-labeling does not alter the biological features of the native sequence and is suitable for further EPR studies. The nitroxide-containing pentadecaibins, and their synthetic strategy described herein, will help to shed light on the mechanism of the peptide-membrane interaction of medium-length peptaibols.

摘要

短杆菌肽是一种抗蛋白水解、具有膜活性的肽。其显著稳定的螺旋 3D 结构是其生物活性的关键。它们可以作为桶板插入脂质双层中,或者像地毯一样铺在其表面上,这取决于它们的长度和脂质双层的厚度。中长链短杆菌肽因其长度允许它们根据膜厚度采用任一种取向而特别引起人们的兴趣,这反过来又可能导致选择性增强。电子顺磁共振 (EPR) 是用于此目的的首选技术,但它需要合成自旋标记的中长链短杆菌肽,而这又受到其序列中 C-四取代残基反应性差的阻碍。经过多年的反复试验,我们现在能够为成功合成含氮氧化物的短杆菌肽提供最新建议,避免缺失序列、副反应和困难的纯化步骤。在此,我们描述了我们的策略及其在最近发现的天然中长链短杆菌肽 pentadecaibin 的自旋标记类似物合成中的应用。我们研究了 pentadecaibin 及其类似物的抗肿瘤活性,发现它们对人三阴性乳腺癌和卵巢癌具有很强的细胞毒性。最后,我们对肽构象偏好和膜相互作用的分析证明,pentadecaibin 自旋标记不会改变天然序列的生物学特征,适合进一步的 EPR 研究。含氮氧化物的 pentadecaibin 及其本文所述的合成策略将有助于阐明中长链短杆菌肽与膜相互作用的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8646/10487733/73732733443a/ijms-24-13396-g001.jpg

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