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套索肽:探索自然界最小互锁基序的折叠景观。

Lasso Peptides: Exploring the Folding Landscape of Nature's Smallest Interlocked Motifs.

机构信息

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, United States.

出版信息

J Am Chem Soc. 2024 Feb 21;146(7):4444-4454. doi: 10.1021/jacs.3c10126. Epub 2024 Jan 2.

Abstract

Lasso peptides make up a class of natural products characterized by a threaded structure. Given their small size and stability, chemical synthesis would offer tremendous potential for the development of novel therapeutics. However, the accessibility of the pre-folded lasso architecture has limited this advance. To better understand the folding process , simulations are used herein to characterize the folding propensity of microcin J25 (MccJ25), a lasso peptide known for its antimicrobial properties. New algorithms are developed to unambiguously distinguish threaded from nonthreaded precursors and determine handedness, a key feature in natural lasso peptides. We find that MccJ25 indeed forms right-handed pre-lassos, in contrast to past predictions but consistent with all natural lasso peptides. Additionally, the native pre-lasso structure is shown to be metastable prior to ring formation but to readily transition to entropically favored unfolded and nonthreaded structures, suggesting that lasso folding is rare. However, by altering the ring forming residues and appending thiol and thioester functionalities, we are able to increase the stability of pre-lasso conformations. Furthermore, conditions leading to protonation of a histidine imidazole side chain further stabilize the modified pre-lasso ensemble. This work highlights the use of computational methods to characterize lasso folding and demonstrates that access to lasso structures can be facilitated by optimizing sequence, unnatural modifications, and reaction conditions like pH.

摘要

套索肽是一类具有线状结构的天然产物,其特点是具有线状结构。鉴于其体积小、稳定性好,化学合成将为新型治疗药物的开发提供巨大潜力。然而,预折叠套索结构的可及性限制了这一进展。为了更好地理解折叠过程,本文使用模拟来表征微菌素 J25(MccJ25)的折叠倾向,MccJ25 是一种具有抗菌特性的套索肽。开发了新的算法来明确区分线状和非线状前体,并确定手性,这是天然套索肽的一个关键特征。我们发现 MccJ25 确实形成了右手预套索,与过去的预测相反,但与所有天然套索肽一致。此外,天然预套索结构在形成环之前被证明是亚稳定的,但很容易过渡到熵有利的展开和非线状结构,这表明套索折叠很少见。然而,通过改变环形成残基并附加巯基和硫酯官能团,我们能够增加预套索构象的稳定性。此外,导致组氨酸咪唑侧链质子化的条件进一步稳定了修饰后的预套索集合。这项工作强调了使用计算方法来描述套索折叠,并表明通过优化序列、非天然修饰以及 pH 等反应条件,可以促进套索结构的获得。

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