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Ubiquitin immobilized on mesoporous MCM41 silica surfaces – Analysis by solid-state NMR with biophysical and surface characterization

机译:泛素固定在介孔MCM41二氧化硅表面上–通过具有生物物理和表面表征的固态NMR分析

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摘要

Deriving the conformation of adsorbed proteins is important in the assessment of their functional activity when immobilized. This has particularly important bearings on the design of contemporary and new encapsulated enzyme-based drugs, biosensors, and other bioanalytical devices. Solid-state nuclear magnetic resonance (NMR) measurements can expand our molecular view of proteins in this state and of the molecular interactions governing protein immobilization on popular biocompatible surfaces such as silica. Here, the authors study the immobilization of ubiquitin on the mesoporous silica MCM41 by NMR and other techniques. Protein molecules are shown to bind efficiently at pH 5 through electrostatic interactions to individual MCM41 particles, causing their agglutination. The strong attraction of ubiquitin to MCM41 surface is given molecular context through evidence of proximity of basic, carbonyl and polar groups on the protein to groups on the silica surface using NMR measurements. The immobilized protein exhibits broad peaks in two-dimensional 13C dipolar-assisted rotational resonance spectra, an indication of structural multiplicity. At the same time, cross-peaks related to Tyr and Phe sidechains are missing due to motional averaging. Overall, the favorable adsorption of ubiquitin to MCM41 is accompanied by conformational heterogeneity and by a major loss of motional degrees of freedom as inferred from the marked entropy decrease. Nevertheless, local motions of the aromatic rings are retained in the immobilized state.
机译:固定时,推导被吸附蛋白质的构象对于评估其功能活性很重要。这对当代和新型封装的基于酶的药物,生物传感器和其他生物分析设备的设计具有特别重要的意义。固态核磁共振(NMR)测量可以扩展这种状态下蛋白质的分子视图以及控制蛋白质在流行的生物相容性表面(例如二氧化硅)上的分子相互作用的分子视图。在这里,作者研究了通过NMR和其他技术将泛素固定在介孔二氧化硅MCM41上。已显示蛋白质分子在pH 5下通过静电相互作用与单个MCM41颗粒有效结合,导致其凝集。通过使用NMR测量,蛋白质上的碱性,羰基和极性基团与二氧化硅表面上的基团接近,可以证明分子遍在蛋白对MCM41表面的强烈吸引力。固定化蛋白质在二维 13 C偶极辅助旋转共振谱中表现出宽峰,这表明结构的多样性。同时,由于运动平均,缺少与Tyr和Phe侧链相关的交叉峰。总体而言,泛素对MCM41的有利吸附伴随着构象异质性和运动自由度的重大损失,这是由明显的熵降低所推断的。然而,芳环的局部运动保持在固定状态。

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