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Orthogonally Stimulated Assembly/Disassembly of Depsipeptides by Rational Chemical Design

机译:通过正交化学设计正交刺激的二肽的组装/拆卸

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摘要

Controlling the assembly and disassembly of cross‐β‐sheet‐forming peptides is one of the predominant challenges for this class of supramolecular material. As they constitute a continuously propagating material, every atomic change can be exploited to bring about distinct responses at the architectural level. We report herein that, by using rational chemical design, serine and methionine can both be used as orthogonal chemical triggers to signal assembly/disassembly through their corresponding stimuli. Serine is used to construct an ester‐bond oligopeptide that can undergo O,N‐acyl rearrangement, whereas methionine is sensitive to oxidation by H2O2. Using the example peptide sequence, KIKISQINM, we demonstrate that assembly and disassembly can be independently controlled on demand.
机译:控制跨β片形成肽的组装和拆卸是这类超分子材料的主要挑战之一。由于它们构成了不断传播的材料,因此可以利用每个原子变化在体系结构级别上带来不同的响应。我们在本文中报道,通过使用合理的化学设计,丝氨酸和蛋氨酸都可以用作正交化学触发器,以通过它们相应的刺激信号组装/拆卸。丝氨酸用于构建可以进行O,N-酰基重排的酯键寡肽,而蛋氨酸对H2O2的氧化敏感。使用示例肽序列KIKISQINM,我们证明了可以根据需要独立控制组装和拆卸。

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