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在自组装的三维 DNA 晶体中,小沟结合分子的特定位置排列和结构测定。

Site-Specific Arrangement and Structure Determination of Minor Groove Binding Molecules in Self-Assembled Three-Dimensional DNA Crystals.

机构信息

Biodesign Center for Molecular Design and Biomimetics, Arizona State University 1001 S. McAllister Ave., Tempe, Arizona 85287, United States.

School of Molecular Sciences, Arizona State University, Tempe, Arizona 85287,United States.

出版信息

J Am Chem Soc. 2023 Dec 6;145(48):26075-26085. doi: 10.1021/jacs.3c07802. Epub 2023 Nov 21.

Abstract

The structural analysis of guest molecules in rationally designed and self-assembling DNA crystals has proven an elusive goal since its conception. Oligonucleotide frameworks provide an especially attractive route toward studying DNA-binding molecules by using three-dimensional lattices with defined sequence and structure. In this work, we site-specifically position a suite of minor groove binding molecules, and solve their structures via X-ray crystallography as a proof-of-principle toward scaffolding larger guest species. Two crystal motifs were used to precisely immobilize the molecules DAPI, Hoechst, and netropsin at defined positions in the lattice, allowing us to control occupancy within the crystal. We also solved the structure of a three-ring imidazole-pyrrole-pyrrole polyamide molecule, which sequence-specifically packs in an antiparallel dimeric arrangement within the minor groove. Finally, we engineered a crystal designed to position both netropsin and the polyamide at two distinct locations within the same lattice. Our work elucidates the design principles for the spatial arrangement of functional guests within lattices and opens new potential opportunities for the use of DNA crystals to display and structurally characterize small molecules, peptides, and ultimately proteins of unknown structure.

摘要

自概念提出以来,在合理设计和自组装 DNA 晶体中对客体分子的结构分析一直是一个难以实现的目标。寡核苷酸框架为研究 DNA 结合分子提供了一条特别有吸引力的途径,因为它们使用具有定义序列和结构的三维晶格。在这项工作中,我们通过 X 射线晶体学特异性定位了一系列的小沟结合分子,并解决了它们的结构,这是一种在支架上固定更大客体物种的原理证明。使用两种晶体基序将 DAPI、Hoechst 和 netropsin 等分子精确地固定在晶格中的特定位置,从而可以控制晶体中的占有率。我们还解决了一种三环咪唑-吡咯-吡咯聚酰胺分子的结构,该分子在小沟中以反平行二聚体的方式特异性包装。最后,我们设计了一个晶体,旨在将 netropsin 和聚酰胺固定在同一晶格中的两个不同位置。我们的工作阐明了在晶格中功能性客体空间排列的设计原则,并为 DNA 晶体在展示和结构表征未知结构的小分子、肽,甚至蛋白质方面开辟了新的潜在机会。

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