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Self-Assembled Nanostructures Based on Activatable Red Fluorescent Dye for Site-Specific Protein Probing and Conformational Transition Detection

机译:基于可激活红色荧光染料的自组装纳米结构用于特定部位的蛋白质探测和构象转变检测

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摘要

Smart and versatile nanostructures have demonstrated their effectiveness for biomolecule analysis and show great potential in digging insights into the structural/functional relationships. Herein, a nanoscale molecular self-assembly was constructed for probing the site-specific recognition and conformational changes of human serum albumin (HSA) with tunable size and emission. A tetraphenylethylene derivative TPE-red-COOH was used as the building block for tailoring fluorescence-silent nanoparticles. The highly specific and sensitive response to HSA was witnessed by the fast turn-on of the red fluorescence and simultaneous disassembly of the nanostructures, whereas various endogenous biomolecules cannot induce such response. The mechanism investigation indicates that the combination of multiple noncovalent interactions is the driving force for disassembling and trapping TPE-red-COOH into HSA. The resultant restriction of intramolecular rotation of TPE-red-COOH in the hydrophobic cavity of HSA induces the significant red emission. By using the fluorescence activatable nanosensor as the structural indicator, the stepwise conformational transitions of HSA during denaturing and the partial refolding of subdomain IIA of HSA were facilely visualized. Benefiting from its activatable signaling, sensitivity, and simplicity, such molecular assembly provides a kind of soft nanomaterial for site-specific biomolecule probing and conformational transition detection concerning their structure, function, and biomedical characteristics.
机译:智能和通用的纳米结构已经证明了其对生物分子分析的有效性,并在挖掘洞察结构/功能关系方面显示出巨大潜力。本文中,构建了纳米级分子自组装体,以探测具有可调大小和发射量的人血清白蛋白(HSA)的位点特异性识别和构象变化。使用四苯基乙烯衍生物TPE-red-COOH作为构建荧光沉默纳米粒子的基础。红色荧光的快速开启和纳米结构的同时分解证明了对HSA的高度特异性和敏感反应,而各种内源性生物分子无法诱导这种反应。机理研究表明,多种非共价相互作用的组合是将TPE-红色-COOH分解并捕获到HSA中的驱动力。 TSA-red-COOH分子在HSA疏水腔中的分子内旋转受到限制,从而导致显着的红色发射。通过使用可荧光激活的纳米传感器作为结构指示剂,可以轻松地观察到HSA在变性过程中的逐步构象转变和HSA的IIA亚结构域的部分重折叠。得益于其可激活的信号传导,灵敏性和简单性,此类分子组装为其结构,功能和生物医学特性提供了一种用于特定位置生物分子探测和构象转变检测的软纳米材料。

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