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高效组装用于序列特异性合成的螺纹分子机器。

Efficient assembly of threaded molecular machines for sequence-specific synthesis.

机构信息

School of Chemistry, University of Manchester , Oxford Road, Manchester, M13 9PL United Kingdom.

出版信息

J Am Chem Soc. 2014 Apr 16;136(15):5811-4. doi: 10.1021/ja5022415. Epub 2014 Apr 7.

Abstract

We report on an improved strategy for the preparation of artificial molecular machines that can pick up and assemble reactive groups in sequence by traveling along a track. In the new approach a preformed rotaxane synthon is attached to the end of an otherwise fully formed strand of building blocks. This "rotaxane-capping" protocol is significantly more efficient than the "final-step-threading" method employed previously and enables the synthesis of threaded molecular machines that operate on extended oligomer, and potentially polymer, tracks. The methodology is exemplified through the preparation of a machine that adds four amino acid building blocks from a strand in sequence, featuring up to 20-membered ring native chemical ligation transition states.

摘要

我们报告了一种改进的策略,用于制备人工分子机器,这些机器可以通过沿着轨道移动来顺序拾取和组装反应基团。在新方法中,预先形成的轮烷合成子被连接到构建块的完整链的末端。这种“轮烷封端”方案比以前使用的“最后一步穿线”方法效率更高,并且能够合成在扩展的低聚物,甚至聚合物轨道上运行的穿线分子机器。该方法通过制备一种机器为例,该机器从链上顺序添加四个氨基酸构建块,具有多达 20 个成员环的天然化学连接过渡态。

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