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Epoxidation of polybutadiene by a topologically linked catalyst

机译:拓扑连接的催化剂对聚丁二烯的环氧化

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Nature has evolved complex enzyme architectures that facilitate the synthesis and manipulation of the biopolymers DNA and RNA, including enzymes capable of attaching to the biopolymer substrate and performing several rounds of catalysis before dissociating(1-5). Many of these 'processive' enzymes have a toroidal shape and completely enclose the biopolymer while moving along its chain, as exemplified by the DNA enzymes T4 DNA polymerase holoenzyme(6) and lambda-exonucleoase(7). The overall architecture of these systems resembles that of rotaxanes, in which a long molecule or polymer is threaded through a macrocycle. Here we describe a rotaxane that mimics the ability of processive enzymes to catalyse multiple rounds of reaction while the polymer substrate stays bound. The catalyst consists of a substrate binding cavity incorporating a manganese( III) porphyrin complex that oxidizes alkenes within the toroid cavity, provided a ligand has been attached to the outer face of the toroid to both activate the porphyrin complex and shield it from being able to oxidize alkenes outside the cavity. We find that when threaded onto a polybutadiene polymer strand, this catalyst epoxidizes the double bonds of the polymer, thereby acting as a simple analogue of the enzyme systems. [References: 28]
机译:自然界已经进化出复杂的酶结构,可促进生物聚合物DNA和RNA的合成和操作,包括能够附着于生物聚合物底物并在离解前进行数轮催化作用的酶(1-5)。这些“过程性”酶中的许多具有环形形状,并在沿着其链移动时完全包围生物聚合物,例如DNA酶T4 DNA聚合酶全酶(6)和拉姆达核酸外切酶(7)。这些系统的整体结构类似于轮烷,其中长分子或聚合物穿过大环。在这里,我们描述了轮状烷,它模拟了过程性酶催化多轮反应的能力,而聚合物底物则保持结合状态。该催化剂由结合有锰(III)卟啉配合物的底物结合腔组成,该锰(III)卟啉配合物氧化环型腔内的烯烃,但前提是配体已连接到环型外表面上,既可以激活卟啉配位体,又可以使其屏蔽在腔体外部氧化烯烃。我们发现,当穿线到聚丁二烯聚合物链上时,该催化剂会环氧化聚合物的双键,从而充当酶系统的简单类似物。 [参考:28]

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