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Reductively PEGylated carbon nanomaterials and their use to nucleate 3D protein crystals: a comparison of dimensionality

机译:还原聚乙二醇化碳纳米材料及其在3D蛋白晶体成核中的应用:尺寸比较

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摘要

A range of carbon nanomaterials, with varying dimensionality, were dispersed by a non-damaging and versatile chemical reduction route, and subsequently grafted by reaction with methoxy polyethylene glycol (mPEG) monobromides. The use of carbon nanomaterials with different geometries provides both a systematic comparison of surface modification chemistry and the opportunity to study factors affecting specific applications. Multi-walled carbon nanotubes, single-walled carbon nanotubes, graphite nanoplatelets, exfoliated few layer graphite and carbon black were functionalized with mPEG-Br, yielding grafting ratios relative to the nanocarbon framework between ca. 7 and 135 wt%; the products were characterised by Raman spectroscopy, TGA-MS, and electron microscopy. The functionalized materials were tested as nucleants by subjecting them to rigorous protein crystallization studies. Sparsely functionalized flat sheet geometries proved exceptionally effective at inducing crystallization of six proteins. This new class of nucleant, based on PEG grafted graphene-related materials, can be widely applied to promote the growth of 3D crystals suitable for X-ray crystallography. The association of the protein ferritin with functionalized exfoliated few layer graphite was directly visualized by transmission electron microscopy, illustrating the formation of ordered clusters of protein molecules critical to successful nucleation.
机译:通过无损且通用的化学还原途径分散了各种尺寸各异的碳纳米材料,然后通过与甲氧基聚乙二醇(mPEG)一溴化物反应接枝。使用具有不同几何形状的碳纳米材料既可以对表面改性化学进行系统比较,也可以研究影响特定应用的因素。用mPEG-Br对多壁碳纳米管,单壁碳纳米管,石墨纳米片,脱落的少层石墨和炭黑进行了功能化,相对于纳米碳骨架之间的接枝率约为5%。 7和135wt%;通过拉曼光谱,TGA-MS和电子显微镜对产品进行了表征。通过对功能化材料进行严格的蛋白质结晶研究,测试它们是否作为成核剂。稀疏功能化的平板几何形状被证明在诱导六种蛋白质结晶方面异常有效。这种基于PEG接枝石墨烯相关材料的新型Nucleant可以广泛应用于促进适用于X射线晶体学的3D晶体的生长。蛋白质铁蛋白与功能化剥落的很少层石墨的缔合可以通过透射电子显微镜直接观察到,说明了成功成核的关键蛋白质分子簇的形成。

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