Wijnands Sjors P W, Engelen Wouter, Lafleur René P M, Meijer E W, Merkx Maarten
Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, Eindhoven, 5600 MB, The Netherlands.
Laboratory of Chemical Biology, Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, Eindhoven, 5600 MB, The Netherlands.
Nat Commun. 2018 Jan 4;9(1):65. doi: 10.1038/s41467-017-02559-0.
Nature uses dynamic molecular platforms for the recruitment of weakly associating proteins into higher-order assemblies to achieve spatiotemporal control of signal transduction. Nanostructures that emulate this dynamic behavior require features such as plasticity, specificity and reversibility. Here we introduce a synthetic protein recruitment platform that combines the dynamics of supramolecular polymers with the programmability offered by DNA-mediated protein recruitment. Assembly of benzene-1,3,5-tricarboxamide (BTA) derivatives functionalized with a 10-nucleotide receptor strand into µm-long supramolecular BTA polymers is remarkably robust, even with high contents of DNA-functionalized BTA monomers and associated proteins. Specific recruitment of DNA-conjugated proteins on the supramolecular polymer results in a 1000-fold increase in protein complex formation, while at the same time enabling their rapid exchange along the BTA polymer. Our results establish supramolecular BTA polymers as a generic protein recruitment platform and demonstrate how assembly of protein complexes along the supramolecular polymer allows efficient and dynamic control of protein activity.
自然界利用动态分子平台将弱结合蛋白招募到高阶组装体中,以实现信号转导的时空控制。模拟这种动态行为的纳米结构需要具备可塑性、特异性和可逆性等特性。在此,我们引入了一种合成蛋白招募平台,该平台将超分子聚合物的动态特性与DNA介导的蛋白招募所提供的可编程性相结合。用10个核苷酸受体链功能化的苯-1,3,5-三甲酰胺(BTA)衍生物组装成微米长的超分子BTA聚合物非常稳定,即使含有高含量的DNA功能化BTA单体和相关蛋白时也是如此。超分子聚合物上DNA偶联蛋白的特异性招募导致蛋白复合物形成增加1000倍,同时还能使其沿BTA聚合物快速交换。我们的结果确立了超分子BTA聚合物作为一种通用的蛋白招募平台,并展示了沿超分子聚合物组装蛋白复合物如何实现对蛋白活性的高效动态控制。