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RNA-controlled assembly of tobacco mosaic virus-derived complex structures: from nanoboomerangs to tetrapods

机译:烟草病毒衍生的复合结构的RNA控制的组装:从纳米室到四足动物

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摘要

The in vitro assembly of artificial nanotubular nucleoprotein shapes based on tobacco mosaic virus( TMV-)-derived building blocks yielded different spatial organizations of viral coat protein subunits on genetically engineered RNA molecules, containing two or multiple TMV origins of assembly (OAs). The growth of kinked nanoboomerangs as well as of branched multipods was determined by the encapsidated RNAs. A largely simultaneous initiation at two origins and subsequent bidirectional tube elongation could be visualized by transmission electron microscopy of intermediates and final products. Collision of the nascent tubes' ends produced angular particles with well-defined arm lengths. RNAs with three to five OAs generated branched multipods with a maximum of four arms. The potential of such an RNA-directed self-assembly of uncommon nanotubular architectures for the fabrication of complex multivalent nano-templates used in functional hybrid materials is discussed.
机译:基于烟草镶嵌病毒(TMV-) - 衍生的构件的人造纳米管核蛋白形状的体外组装产生了基因工程RNA分子的不同空间组织,其中包含两个或多个TMV起源(OAS)。 固定的RNA确定了扭结的纳米室的生长以及分支多代的生长。 可以通过中间体和最终产物的透射电子显微镜观察到两个起源和随后的双向管的同时启动。 新生试管末端的碰撞产生的角颗粒具有明确的臂长。 具有三到五个OAS的RNA产生了最多四个臂的分支多代码。 讨论了这种不常见的纳米管体系结构的RNA指导自组装的潜力,用于制造功能性杂交材料中使用的复杂多价纳米 - 模型。

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