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在胶束介质中通过核磁共振研究表面活性素的结构与动力学。

Structure and dynamics of surfactin studied by NMR in micellar media.

作者信息

Tsan Pascale, Volpon Laurent, Besson Françoise, Lancelin Jean-Marc

机构信息

Université Claude Bernard--Lyon 1, Sciences Analytiques ANABIO, CNRS UMR 5180, Bâtiment CPE-Lyon, Domaine Scientifique de la Doua, F-69622 Villeurbanne, France.

出版信息

J Am Chem Soc. 2007 Feb 21;129(7):1968-77. doi: 10.1021/ja066117q. Epub 2007 Jan 26.

Abstract

The NMR structure of the cyclic lipopeptide surfactin from Bacillus subtilis was determined in sodium dodecyl sulfate (SDS) micellar solution. The two negatively charged side chains of surfactin form a polar head opposite to most hydrophobic side chains, accounting for its amphiphilic nature and its strong surfactant properties. Disorder was observed around the fatty acid chain, and 15N relaxation studies were performed to investigate whether it originates from a dynamic phenomenon. A very large exchange contribution to transverse relaxation rate R(2) was effectively observed in this region, indicating slow conformational exchange. Temperature variation and Carr-Purcell-Meiboom-Gill (CPMG) delay variation relaxation studies provided an estimation of the apparent activation energy around 35-43 kJ x mol(-1) and an exchange rate of about 200 ms(-1) for this conformational exchange. 15N relaxation parameters were also recorded in dodecylphosphocholine (DPC) micelles and DMSO. Similar chemical exchange around the fatty acid was found in DPC but not in DMSO, which demonstrates that this phenomenon only occurs in micellar media. Consequently, it may either reflect the disorder observed in our structures determined in SDS or originate from an interaction of the lipopeptide with the detergent, which would be qualitatively similar with an anionic (SDS) or a zwitterionic (DPC) detergent. These structural and dynamics results on surfactin are the first NMR characterization of a lipopeptide incorporated in micelles. Moreover, they provide a model of surfactin determined in a more biomimetic environment than an organic solvent, which could be useful for understanding the molecular mechanism of its biological activity.

摘要

在十二烷基硫酸钠(SDS)胶束溶液中测定了来自枯草芽孢杆菌的环状脂肽表面活性素的核磁共振结构。表面活性素的两条带负电荷的侧链形成了与大多数疏水侧链相对的极性头部,这解释了其两亲性本质及其强大的表面活性剂特性。在脂肪酸链周围观察到无序现象,并进行了15N弛豫研究以探究其是否源于动态现象。在该区域有效地观察到了对横向弛豫率R(2)的非常大的交换贡献,表明构象交换缓慢。温度变化和Carr-Purcell-Meiboom-Gill(CPMG)延迟变化弛豫研究提供了约35-43 kJ·mol⁻¹的表观活化能估计值以及该构象交换约200 ms⁻¹的交换率。还在十二烷基磷酰胆碱(DPC)胶束和二甲基亚砜(DMSO)中记录了15N弛豫参数。在DPC中发现了脂肪酸周围类似的化学交换,但在DMSO中未发现,这表明这种现象仅发生在胶束介质中。因此,它可能要么反映了我们在SDS中测定的结构中观察到的无序,要么源于脂肽与去污剂的相互作用,这在定性上与阴离子(SDS)或两性离子(DPC)去污剂相似。这些关于表面活性素的结构和动力学结果是对胶束中掺入的脂肽的首次核磁共振表征。此外,它们提供了在比有机溶剂更具仿生环境中测定的表面活性素模型,这可能有助于理解其生物活性的分子机制。

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