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Improved metal cluster deposition on a genetically engineered tobacco mosaic virus template

机译:改良的基因簇烟草花叶病毒模板上的金属簇沉积

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摘要

Improved depositions of various metal clusters onto a biomolecular template were achieved using a genetically engineered tobacco mosaic virus (TMV). Wild-type TMV was genetically altered to display multiple solid metal binding sites through the insertion of two cysteine residues within the ammo-terminus of the virus coat protein. Gold, silver, and palladium clusters synthesized through in situ chemical reductions could be readily deposited onto the genetically modified template via the exposed cysteine-derived thiol groups. Metal cluster coatings on the cysteine-modified template were more densely deposited and stable than similar coatings on the unmodified wild-type template. Combined, these results confirm that the introduction of cysteine residues onto the outer surface of the TMV coat protein enhances the usefulness of this virus as a biotemplate for the deposition of metal clusters.
机译:使用基因工程烟草花叶病毒(TMV),可以改善各种金属簇在生物分子模板上的沉积。通过在病毒外壳蛋白的氨基末端插入两个半胱氨酸残基,对野生型TMV进行了遗传修饰,以显示多个固体金属结合位点。通过原位化学还原合成的金,银和钯簇可以很容易地通过暴露的半胱氨酸衍生的硫醇基团沉积到基因修饰的模板上。与未修饰的野生型模板上的类似涂层相比,半胱氨酸修饰的模板上的金属簇涂层更密集地沉积且更稳定。综合起来,这些结果证实了将半胱氨酸残基引入TMV外壳蛋白的外表面增强了这种病毒作为金属簇沉积生物模板的有用性。

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