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Revisiting the Interaction between the Chaperone Skp and Lipopolysaccharide

机译:重新审视伴侣SKP和脂多糖之间的相互作用

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摘要

The bacterial outer membrane comprises two main classes of components, lipids and membrane proteins. These nonsoluble compounds are conveyed across the aqueous periplasm along specific molecular transport routes: the lipid lipopolysaccharide (LPS) is shuttled by the Lpt system, whereas outer membrane proteins (Omps) are transported by chaperones, including the periplasmic Skp. In this study, we revisit the specificity of the chaperone-lipid interaction of Skp and LPS. High-resolution NMR spectroscopy measurements indicate that LPS interacts with Skp nonspecifically, accompanied by destabilization of the Skp trimer and similar to denaturation by the nonnatural detergent lauryldimethylamine-N-oxide (LDAO). Bioinformatic analysis of amino acid conservation, structural analysis of LPS-binding proteins, and MD simulations further confirm the absence of a specific LPS binding site on Skp, making a biological relevance of the interaction unlikely. Instead, our analysis reveals a highly conserved salt-bridge network, which likely has a role for Skp function.
机译:细菌外膜包括两种主要类别的组分,脂质和膜蛋白。这些非溶解化合物沿着特定的分子运输途径在含水周质上传送:脂质多糖(LPS)由LPT系统捕获,而外膜蛋白(OMP)通过伴侣酮运输,包括周质SKP。在这项研究中,我们重新审视SKP和LPS的伴侣脂质相互作用的特异性。高分辨率NMR光谱测量表明,LPS非特异性地与SKP相互作用,伴随着SKP三聚体的稳定化并类似于非自然洗涤剂LausalDimethylamine-N-氧化物(LDAO)的变性。氨基酸保守的生物信息分析,LPS结合蛋白的结构分析,以及MD模拟进一步证实了SKP上的特定LPS结合位点,不太可能与相互作用的生物学相关性。相反,我们的分析揭示了一个高度保守的盐桥网络,这可能对SKP功能具有作用。

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