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Crystallization of a self-assembled three-dimensional DNA nanostructure

机译:自组装三维DNA纳米结构的结晶

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The powerful and specific molecular-recognition system present in the base-pairing of DNA allows for the design of a plethora of nanostructures. In this work, the crystallization of a self-assembling three-dimensional B-DNA nanostructure is described. The DNA nanostructure consists of six single-stranded oligonucleotides that hybridize to form a three-dimensional tetrahedron of 80 kDa in molecular mass and 20 bp on each edge. Crystals of the tetrahedron have been successfully produced and characterized. These crystals may form the basis for an X-ray structure of the tetrahedron in the future. Nucleotide crystallography poses many challenges, leading to the fact that only 1352 X-ray structures of nucleic acids have been solved compared with more than 80 000 protein structures. In this work, the crystallization optimization for three-dimensional tetrahedra is also described, with the eventual goal of producing nanocrystals to overcome the radiation-damage obstacle by the use of free-electron laser technology in the future.
机译:DNA碱基配对中存在的强大而特定的分子识别系统可用于设计大量的纳米结构。在这项工作中,描述了自组装三维B-DNA纳米结构的结晶。 DNA纳米结构由六个单链寡核苷酸组成,它们杂交形成分子质量为80 kDa,每个边缘为20 bp的三维四面体。四面体的晶体已成功制备和表征。这些晶体将来可能成为四面体的X射线结构的基础。核苷酸结晶学提出了许多挑战,导致这样的事实,与超过80 000种蛋白质结构相比,仅解决了1352种核酸的X射线结构。在这项工作中,还描述了三维四面体的结晶优化,最终目标是生产纳米晶体,以克服将来通过使用自由电子激光技术来克服辐射损伤的障碍。

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