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Probing the nanoscale organisation and multivalency of cell surface receptors: DNA origami nanoarrays for cellular studies with single-molecule control

机译:纳米级组织和细胞表面受体的多价:单分子对照组细胞研究的DNA折纸纳米阵列

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Nanoscale organisation of receptor ligands has become an important approach to study the clustering behaviour of cell-surface receptors. Biomimetic substrates fabricated via different nanopatterning strategies have so far been applied to investigate specific integrins and cell types, but without multivalent control. Here we use DNA origami to surpass the limits of current approaches and fabricate nanoarrays to study different cell adhesion processes, with nanoscale spatial resolution and single-molecule control. Notably, DNA nanostructures enable the display of receptor ligands in a highly customisable manner, with modifiable parameters including ligand number, ligand spacing and most importantly, multivalency. To test the adaptability and robustness of the system we combined it with focused ion beam and electron-beam lithography nanopatterning to additionally control the distance between the origami structures (i.e. receptor clusters). Moreover, we demonstrate how the platform can be used to interrogate two different biological questions: (1) the cooperative effect of integrin and growth factor receptor in cancer cell spreading, and (2) the role of integrin clustering in cardiomyocyte adhesion and maturation. Thereby we find previously unknown clustering behaviour of different integrins, further outlining the importance for such customisable platforms for future investigations of specific receptor organisation at the nanoscale.
机译:纳米级受体配体组织已成为研究细胞表面受体聚类行为的重要方法。到目前为止,通过不同的纳米透射策略制造的仿真素底物用于研究特定的整联蛋白和细胞类型,但没有多价控制。在这里,我们使用DNA折纸来超越电流方法的极限和制造纳米阵列,以研究不同的细胞粘附过程,具有纳米级空间分辨率和单分子对照。值得注意的是,DNA纳米结构能够以高度可定制的方式显示受体配体,可改变的参数,包括配体数,配体间隔,最重要的是多价。为了测试系统的适应性和稳健性,我们将其与聚焦离子束和电子束光刻纳米透明机相结合,另外控制折纸结构(即受体簇)之间的距离。此外,我们证明了平台如何用于询问两种不同的生物学问题:(1)整联素和生长因子受体在癌细胞扩散中的合作效应,(2)整合素聚类在心肌细胞粘附和成熟中的作用。因此,我们找到了不同整数的未知聚类行为,进一步概述了在纳米级纳米级的未来对特异性受体组织调查的这种可定制平台的重要性。

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