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Preventing Disulfide Bond Formation Weakens Non-Covalent Forces among Lysozyme Aggregates

机译:防止二硫键形成削弱了溶菌酶聚集体之间的非共价力。

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摘要

Nonnative disulfide bonds have been observed among protein aggregates in several diseases like amyotrophic lateral sclerosis, cataract and so on. The molecular mechanism by which formation of such bonds promotes protein aggregation is poorly understood. Here in this work we employ previously well characterized aggregation of hen eggwhite lysozyme (HEWL) at alkaline pH to dissect the molecular role of nonnative disulfide bonds on growth of HEWL aggregates. We employed time-resolved fluorescence anisotropy, atomic force microscopy and single-molecule force spectroscopy to quantify the size, morphology and non-covalent interaction forces among the aggregates, respectively. These measurements were performed under conditions when disulfide bond formation was allowed (control) and alternatively when it was prevented by alkylation of free thiols using iodoacetamide. Blocking disulfide bond formation affected growth but not growth kinetics of aggregates which were ∼50% reduced in volume, flatter in vertical dimension and non-fibrillar in comparison to control. Interestingly, single-molecule force spectroscopy data revealed that preventing disulfide bond formation weakened the non-covalent interaction forces among monomers in the aggregate by at least ten fold, thereby stalling their growth and yielding smaller aggregates in comparison to control. We conclude that while constrained protein chain dynamics in correctly disulfide bonded amyloidogenic proteins may protect them from venturing into partial folded conformations that can trigger entry into aggregation pathways, aberrant disulfide bonds in non-amyloidogenic proteins (like HEWL) on the other hand, may strengthen non-covalent intermolecular forces among monomers and promote their aggregation.
机译:在肌萎缩性侧索硬化症,白内障等几种疾病的蛋白质聚集体中已观察到非天然二硫键。这种键的形成促进蛋白质聚集的分子机理了解甚少。在这项工作中,我们采用先前特征明确的在碱性pH下的鸡蛋清溶菌酶(HEWL)聚集体,以剖析非天然二硫键对HEWL聚集体生长的分子作用。我们采用时间分辨荧光各向异性,原子力显微镜和单分子力光谱法分别对聚集体之间的大小,形态和非共价相互作用力进行定量。这些测量是在允许二硫键形成的条件下进行的(对照),或者是通过使用碘乙酰胺使游离硫醇烷基化来防止的。阻断二硫键的形成会影响骨料的生长,但不会影响骨料的生长动力学,与对照组相比,骨料的体积减少了约50%,垂直尺寸更平坦,无纤维状。有趣的是,单分子力光谱数据显示,防止形成二硫键会削弱聚集体中单体之间的非共价相互作用力至少十倍,从而使它们的生长停滞并与对照相比产生较小的聚集体。我们得出的结论是,虽然正确地被二硫键结合的淀粉样蛋白产生的蛋白质链动力学受约束,可以防止它们冒险进入可引发进入聚集途径的部分折叠构象,但另一方面,非淀粉样蛋白(如HEWL)中异常的二硫键可能会增强单体之间的非共价分子间力并促进其聚集。

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