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Supramolecular polymer formation by a de novo hemoprotein with a synthetic diheme compound

机译:从头血红蛋白与合成的双血红素化合物形成超分子聚合物

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Proteins are attractive materials for supramolecular chemistry due to their multifunctionality and self‐organization ability. In this work, we synthesized a diheme compound, in which two iron‐protoporphyrin IX molecules are associated via a linker chain, and introduced it into a de novo designed four‐helix bundle protein with two heme‐binding sites. The protein gradually bound the diheme compound by bis‐histidyl ligation and formed supramolecular polymers. Polymer formation was observed by atomic force microscopy (AFM), which revealed the highly branched, dendritic forms of the fibrous architecture. The present results may open a pathway toward nanowire construction with de novo heme‐proteins.
机译:蛋白质具有多功能性和自组织能力,是超分子化学的诱人材料。在这项工作中,我们合成了一种双血红素化合物,其中两个铁-原卟啉IX分子通过连接链相连,然后将其引入从头设计的具有两个血红素结合位点的四螺旋束蛋白。该蛋白质通过双组氨酸连接逐渐结合了二血红素化合物,并形成了超分子聚合物。通过原子力显微镜(AFM)观察到聚合物的形成,其揭示了纤维结构的高度分支的树突形式。目前的结果可能为使用新生血红素蛋白构建纳米线开辟道路。

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