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Tunable Nanoscale Cages from Self-Assembling DNA and Protein Building Blocks

机译:来自自组装DNA和蛋白质构建块的可调纳米级笼

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Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins and DNA have been used as building blocks to create tunable nanoscale cages for a wide range of applications, but each molecular type has its own limitations. Here, we report a cage constructed from both protein and DNA building blocks through the use of covalent protein-DNA conjugates. We modified a homotrimeric protein (KDPG aldolase) with three identical single-stranded DNA handles by functionalizing a reactive cysteine residue introduced via site-directed mutagenesis. This protein-DNA building block was coassembled with a triangular DNA structure bearing three complementary arms to the handles, resulting in tetrahedral cages comprising six DNA sides capped by the protein trimer. The dimensions of the cage could be tuned through the number of turns per DNA arm (3 turns similar to 10 nm, 4 turns similar to 14 nm), and the hybrid structures were purified and characterized to confirm the three-dimensional structure. Cages were also modified with DNA using click chemistry and using aldolase trimers bearing the noncanonical amino acid 4-azidophenylalanine, demonstrating the generality of the method. Our approach will allow for the construction of nanomaterials that possess the advantages of both protein and DNA nanotechnology and find applications in fields such as targeted delivery, structural biology, biomedicine, and catalytic materials.
机译:三维(3D)笼是纳米技术最重要的目标之一。蛋白质和DNA都被用作建筑物块,以为各种应用创造可调纳米级笼,但每个分子类型都有自己的限制。在这里,我们通过使用共价蛋白-DNA缀合物来报告由蛋白质和DNA构建块构建的笼子。通过通过定点诱变引入的反应性半胱氨酸残基来修饰具有三个相同的单链DNA手柄的同种型蛋白质(KDPG醛醇酶)。将该蛋白质-DNA构建块与携带三个互补臂的三角形DNA结构进行交叉,导致包含六个DNA侧面覆盖的四面体笼。笼的尺寸可以通过每个DNA臂的匝数调节(3匝类似于10nm,4匝,类似于14nm),纯化混合结构并表征以确认三维结构。使用点击化学和使用携带非碳氨基酸4-氮杂苯基丙氨酸的醛糖酶三聚氰基氨基的DNA进行修饰,展示该方法的一般性。我们的方法将允许构建具有蛋白质和DNA纳米技术的优点的纳米材料,并在靶向递送,结构生物医学,生物医学和催化材料等领域中找到应用。

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