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首页> 外文期刊>The Journal of biological chemistry >Single-molecule Force Spectroscopy Reveals the Individual Mechanical Unfolding Pathways of a Surface Layer Protein
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Single-molecule Force Spectroscopy Reveals the Individual Mechanical Unfolding Pathways of a Surface Layer Protein

机译:单分子力光谱揭示了表面层蛋白的个体机械展开途径

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摘要

Surface layers (S-layers) represent an almost universal feature of archaeal cell envelopes and are probably the most abundant bacterial cell proteins. S-layers are monomolecular crystalline structures of single protein or glycoprotein monomers that completely cover the cell surface during all stages of the cell growth cycle, thereby performing their intrinsic function under a constant intra- and intermolecular mechanical stress. In Gram-positive bacteria, the individual S-layer proteins are anchored by a specific binding mechanism to polysaccharides (secondary cell wall polymers) that are linked to the underlying peptidoglycan layer. In this work, atomic force microscopy-based single-molecule force spectroscopy and a polyprotein approach are used to study the individual mechanical unfolding pathways of an S-layer protein. We uncover complex unfolding pathways involving the consecutive unfolding of structural intermediates, where a mechanical stability of 87 pN is revealed. Different initial extensibilities allow the hypothesis that S-layer proteins adapt highly stable, mechanically resilient conformations that are not extensible under the presence of a pulling force. Interestingly, a change of the unfolding pathway is observed when individual S-layer proteins interact with secondary cell wall polymers, which is a direct signature of a conformational change induced by the ligand. Moreover, the mechanical stability increases up to 110 pN. This work demonstrates that single-molecule force spectroscopy offers a powerful tool to detect subtle changes in the structure of an individual protein upon binding of a ligand and constitutes the first conformational study of surface layer proteins at the single-molecule level.
机译:表面层(S层)代表古群细胞包络的几乎普遍的特征,可能是最丰富的细菌细胞蛋白。 S层是单蛋白或糖蛋白单体的单分子结晶结构,其在细胞生长循环的所有阶段中完全覆盖细胞表面,从而在恒定的内分子和分子间机械应力下进行其本质功能。在革兰氏阳性细菌中,各个S层蛋白通过与底层肽聚糖层连接的多糖(次级电池壁聚合物)锚固。在这项工作中,基于原子力显微镜的单分子力谱和聚蛋白方法用于研究S层蛋白的单个机械展开途径。我们发现涉及结构中间体连续展开的复杂展开途径,其中揭示了87pn的机械稳定性。不同的初始扩展允许假设S层蛋白质适应高度稳定的机械弹性构象,该构象在拉力的存在下不可伸长。有趣的是,当各个S层蛋白与二级细胞壁聚合物相互作用时,观察到展开途径的变化,这是由配体诱导的构象变化的直接签名。此外,机械稳定性增加到110 pn。这项工作表明,单分子力光谱提供了一种强大的工具,可以在配体结合后检测单个蛋白质结构的细微变化,并构成单分子水平的表面层蛋白的第一构象研究。

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