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胶束触发的 14 残基肽中来自肺炎链球菌自溶素 LytA 的胆碱结合重复序列的 β-发夹到 α-螺旋的转变。

Micelle-Triggered β-Hairpin to α-Helix Transition in a 14-Residue Peptide from a Choline-Binding Repeat of the Pneumococcal Autolysin LytA.

机构信息

Instituto de Química Física Rocasolano (IQFR), Consejo Superior de Investigaciones Científicas (CSIC), Serrano 119, 28006-Madrid (Spain).

Instituto de Biología Molecular y Celular, Universidad Miguel Hernández, Elche, 03202-Alicante (Spain).

出版信息

Chemistry. 2015 May 26;21(22):8076-89. doi: 10.1002/chem.201500447. Epub 2015 Apr 27.

Abstract

Choline-binding modules (CBMs) have a ββ-solenoid structure composed of choline-binding repeats (CBR), which consist of a β-hairpin followed by a short linker. To find minimal peptides that are able to maintain the CBR native structure and to evaluate their remaining choline-binding ability, we have analysed the third β-hairpin of the CBM from the pneumococcal LytA autolysin. Circular dichroism and NMR data reveal that this peptide forms a highly stable native-like β-hairpin both in aqueous solution and in the presence of trifluoroethanol, but, strikingly, the peptide structure is a stable amphipathic α-helix in both zwitterionic (dodecylphosphocholine) and anionic (sodium dodecylsulfate) detergent micelles, as well as in small unilamellar vesicles. This β-hairpin to α-helix conversion is reversible. Given that the β-hairpin and α-helix differ greatly in the distribution of hydrophobic and hydrophilic side chains, we propose that the amphipathicity is a requirement for a peptide structure to interact and to be stable in micelles or lipid vesicles. To our knowledge, this "chameleonic" behaviour is the only described case of a micelle-induced structural transition between two ordered peptide structures.

摘要

胆碱结合模块(CBMs)具有由胆碱结合重复序列(CBR)组成的ββ-螺线管结构,该结构由β-发夹后接短接头组成。为了找到能够保持 CBR 天然结构的最小肽,并评估它们剩余的胆碱结合能力,我们分析了肺炎球菌 LytA 自溶素的 CBM 中的第三个β-发夹。圆二色性和 NMR 数据表明,该肽在水溶液中和三氟乙醇存在下均形成高度稳定的类似天然的β-发夹,但令人惊讶的是,该肽结构在两性离子(十二烷基磷酸胆碱)和阴离子(十二烷基硫酸钠)去污剂胶束中以及在小单层囊泡中均为稳定的两亲性α-螺旋。这种β-发夹到α-螺旋的转换是可逆的。鉴于β-发夹和α-螺旋在疏水性和亲水性侧链的分布上有很大差异,我们提出两亲性是肽结构在胶束或脂质体中相互作用和稳定所必需的。据我们所知,这种“变色龙”行为是描述的两种有序肽结构之间胶束诱导结构转变的唯一案例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d946/4471590/162d8d8252af/chem0021-8076-f1.jpg

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