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Surfactants modify the torsion properties of proteins: a single molecule study

机译:表面活性剂改变蛋白质的抗扭特性:单分子研究

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Surfactants are widely used in diagnostic assays to prevent protein aggregation and non-specific adsorption at surfaces. Here, a single molecule magnetic torque tweezers study is reported, aiming to quantify surfactant-induced changes in the torsional flexibility of a protein model system: protein-G-immunoglobulin G (IgG) attached to a glass surface. The influences of Sodium Dodecyl Sulphate (SDS) and Polysorbate 20 (Tween 20) on the protein pair have been investigated. The proteins were exposed to the surfactants at concentrations relative to the Critical Micelle Concentration (CMC), namely 0.1 x CMC, 1 x CMC and 10 x CMC. Both surfactants increase the torsional flexibility of the protein-G-IgG complex. Tween 20 is most effective at increasing the torsional flexibility of the complex at the surface while SDS is more effective at dissociating the protein bonds. Tweezer data on the IgG-IgG protein pair show no influence of Tween 20 on the torsional flexibility. Furthermore, temperature dependent near UV and far-UV Circular Dichroism (CD) data at 10 x CMC show that Tween 20 does not significantly alter the secondary and tertiary structure of both protein-G and IgG while SDS does. These results provide evidence that both the mechanical properties of the protein structure and the interaction between proteins can alter the torsional rigidity measured with magnetic torque tweezers. This study shows for the first time the ability to use magnetic torque tweezers as a probe for surfactant-induced changes in proteins at a single molecule level.
机译:表面活性剂广泛用于诊断测定中,以防止蛋白质聚集和表面非特异性吸附。在这里,报道了单分子磁性扭矩镊子研究,旨在量化表面活性剂诱导的蛋白质模型系统的扭转柔韧性的变化:蛋白质-G-免疫球蛋白G(IgG)附着在玻璃表面上。研究了十二烷基硫酸钠(SDS)和聚山梨酯20(吐温20)对蛋白质对的影响。将蛋白质以相对于临界胶束浓度(CMC)的浓度即0.1×CMC,1×CMC和10×CMC暴露于表面活性剂。两种表面活性剂均增加了蛋白质-G-IgG复合物的扭转柔韧性。吐温20最有效地提高了复合物在表面的扭转柔韧性,而SDS更有效地使蛋白质键解离。 IgG-IgG蛋白对上的镊子数据显示Tween 20对扭转柔韧性没有影响。此外,温度为10 x CMC时,与温度相关的近紫外和远紫外圆二色谱(CD)数据显示,吐温20不会显着改变蛋白G和IgG的二级和三级结构,而SDS却可以。这些结果提供了证据,即蛋白质结构的机械性能和蛋白质之间的相互作用都可以改变用磁扭矩镊子测得的扭转刚度。这项研究首次显示了使用磁扭矩镊子作为探针来探测表面活性剂诱导的单分子蛋白质变化的能力。

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