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Designer Amphiphilic Short Peptides Enhance Thermal Stability of Isolated Photosystem-I

机译:设计师两亲短肽增强了孤立Photosystem-I的热稳定性

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摘要

Stability of membrane protein is crucial during protein purification and crystallization as well as in the fabrication of protein-based devices. Several recent studies have examined how various surfactants can stabilize membrane proteins out of their native membrane environment. However, there is still no single surfactant that can be universally employed for all membrane proteins. Because of the lack of knowledge on the interaction between surfactants and membrane proteins, the choice of a surfactant for a specific membrane protein remains purely empirical. Here we report that a group of short amphiphilic peptides improve the thermal stability of the multi-domain protein complex photosystem-I (PS-I) in aqueous solution and that the peptide surfactants have obvious advantages over other commonly used alkyl chain based surfactants. Of all the short peptides studied, Ac-I5K2-CONH2 (I5K2) showed the best stabilizing effect by enhancing the melting temperature of PS-I from 48.0°C to 53.0°C at concentration of 0.65 mM and extending the half life of isolated PS-I significantly. AFM experiments showed that PS-I/I5K2/Triton X-100 formed large and stable vesicles and thus provide interfacial environment mimicking that of native membranes, which may partly explain why I5K2 enhanced the thermal stability of PS-I. Hydrophobic and hydrophilic group length of IxKy had an important influence on the stabilization of PS-I. Our results showed that longer hydrophobic group was more effective in stabilizing PS-I. These simple short peptides therefore exhibit significant potential for applications in membrane protein studies.
机译:膜蛋白的稳定性在蛋白纯化和结晶以及基于蛋白的装置的制造中至关重要。最近的几项研究研究了各种表面活性剂如何使膜蛋白稳定在其天然膜环境之外。但是,仍然没有一种可以普遍用于所有膜蛋白的表面活性剂。由于缺乏有关表面活性剂与膜蛋白之间相互作用的知识,纯粹是凭经验选择特定膜蛋白的表面活性剂。在这里,我们报道一组短的两亲性肽改善了多结构域蛋白复合物光系统I(PS-I)在水溶液中的热稳定性,并且该肽表面活性剂比其他常用的基于烷基链的表面活性剂具有明显的优势。在所有研究的短肽中,Ac-I5K2-CONH2(I5K2)通过将PS-1的解链温度从48.0°C提高到53.0°C(浓度为0.65 mM)并延长分离的PS的半衰期而表现出最佳的稳定化作用我明显。 AFM实验表明PS-1 / I5K2 / Triton X-100形成了大而稳定的囊泡,因此提供了与天然膜相似的界面环境,这可能部分解释了为什么I5K2增强了PS-1的热稳定性。 IxKy的疏水基团和亲水基团长度对PS-1的稳定性有重要影响。我们的结果表明,更长的疏水基团在稳定PS-1方面更有效。因此,这些简单的短肽在膜蛋白研究中显示出巨大的潜力。

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