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首页> 外文期刊>Bioconjugate Chemistry >Oriented Attachment of Recombinant Proteins to Agarose-Coated Magnetic Nanoparticles by Means of a beta-Trefoil Lectin Domain
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Oriented Attachment of Recombinant Proteins to Agarose-Coated Magnetic Nanoparticles by Means of a beta-Trefoil Lectin Domain

机译:通过三叶形凝集素凝集素域定向重组蛋白对琼脂糖涂层的磁性纳米粒子的附着。

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Design of generic methods aimed at the oriented attachment of proteins at the interfacial environment of magnetic nanoparticles currently represents an active field of research. With this in mind, we have prepared and characterized agarose-coated maghemite nanoparticles to set up a platform for the attachment of recombinant proteins fused to the beta-trefoil lectin domain LSL150, a small protein that combines fusion tag properties with agarose-binding capacity. Analysis of the agarose-coated nanoparticles by dynamic light scattering, Fourier transform infrared spectroscopy, and thermogravimetric studies shows that decoupling particle formation from agarose coating provides better results in terms of coating efficiency and particle size distribution. LSL150 interacts with these agarose-coated nanoparticles exclusively through the recognition of the sugars of the polymer, forming highly stable complexes, which in turn can be dissociated ad hoc with the competing sugar lactose. Characterization of the complexes formed with the fusion proteins LSL-EGFP (LSL-tagged enhanced green fluorescent protein from Aquorea victoria) and LSL-BTL2 (LSL-tagged lipase from Geobacillus thermocatenolatus) provided evidence supporting a topologically oriented binding of these molecules to the interface of the agarose-coated nanoparticles. This is consistent with the marked polarity of the beta-trefoil structure where the sugar-binding sites and the N- and C-terminus ends are at opposed sides. In summary, LSL150 displays topological and functional features expected from a generic molecular adaptor for the oriented attachment of proteins at the interface of agarose-coated nanoparticles.
机译:旨在将蛋白质定向附着在磁性纳米粒子的界面环境上的通用方法的设计目前代表了一个活跃的研究领域。考虑到这一点,我们已经制备并表征了琼脂糖包被的磁赤铁矿纳米粒子,从而为融合到β-三叶凝集素结构域LSL150的重组蛋白的附着建立了平台,后者是一种融合融合标签特性和琼脂糖结合能力的小蛋白。通过动态光散射,傅里叶变换红外光谱和热重分析对琼脂糖涂层的纳米颗粒进行分析,结果表明,从琼脂糖涂层中分离出的颗粒形成在涂层效率和粒径分布方面提供了更好的结果。 LSL150仅通过识别聚合物的糖与这些琼脂糖涂层的纳米颗粒相互作用,形成高度稳定的复合物,进而可以将其与竞争的糖乳糖临时解离。用融合蛋白LSL-EGFP(来自Aquorea victoria的LSL标记的增强型绿色荧光蛋白)和LSL-BTL2(来自Geocateillus thermocatenolatus的LSL标记的脂肪酶)形成的复合物的表征提供了支持这些分子与界面的拓扑定向结合的证据。琼脂糖涂层的纳米颗粒的数量。这与β-三叶结构的显着极性一致,其中糖结合位点以及N和C末端位于相对侧。总而言之,LSL150显示出一般分子适配器期望的拓扑和功能特征,该蛋白可用于蛋白质在琼脂糖涂层纳米颗粒界面上的定向附着。

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