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Pick-up, transport and release of a molecular cargo using a small-molecule robotic arm

机译:使用小分子机器人手臂拾取,运输和释放分子货物

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摘要

Modern-day factory assembly lines often feature robots that pick up, reposition and connect components in a programmed manner. The idea of manipulating molecular fragments in a similar way has to date only been explored using biological building blocks (specifically DNA). Here, we report on a wholly artificial small-molecule robotic arm capable of selectively transporting a molecular cargo in either direction between two spatially distinct, chemically similar, sites on a molecular platform. The arm picks up/releases a 3-mercaptopropanehydrazide cargo by formation/breakage of a disulfide bond, while dynamic hydrazone chemistry controls the cargo binding to the platform. Transport is controlled by selectively inducing conformational and configurational changes within an embedded hydrazone rotary switch that steers the robotic arm. In a three-stage operation, 79–85% of 3-mercaptopropanehydrazide molecules are transported in either (chosen) direction between the two platform sites, without the cargo at any time fully dissociating from the machine nor exchanging with other molecules in the bulk.
机译:现代化的工厂装配线通常配备以编程方式拾取,重新定位和连接组件的机器人。迄今为止,仅以生物构件(特别是DNA)来探索以类似方式操纵分子片段的想法。在这里,我们报道了一种能够在分子平台上两个空间不同,化学相似的位点之间任意方向选择性运输分子货物的全人工小分子机械臂。该臂通过二硫键的形成/断裂来拾取/释放3-巯基丙酰肼货物,而动态化学作用控制货物与平台的结合。通过选择性地在操纵机器人手臂的嵌入式conform旋转开关内诱导构象和构型变化来控制运输。在三阶段操作中,79-85%的3-巯基丙烷酰肼分子在两个平台位置之间沿(选定的)方向运输,而货物在任何时候都不会从机器中完全解离,也不会与散装中的其他分子交换。

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