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在动态自组装系统内的级联转换。

Cascading transformations within a dynamic self-assembled system.

机构信息

Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.

出版信息

Nat Chem. 2010 Aug;2(8):684-7. doi: 10.1038/nchem.693. Epub 2010 Jun 13.

Abstract

Molecular subcomponents such as phosphate groups are often passed between biomolecules during complex signalling cascades, the flow of which define the motion of the machinery of life. Here, we show how an abiological system consisting of organic subcomponents knitted together by metal-ion coordination can respond to simple signals in complex ways. A Cu(I)(3) helicate transformed into its Zn(II)(2)Cu(I) analogue following the addition of zinc(II), and the ejected copper(I) went on to induce the self-assembly of a Cu(I)(2) helicate from other free subcomponents present in solution. The addition of an additional subcomponent, 8-aminoquinoline, resulted in the formation of a third, more stable Cu(I)(3) helicate, requiring the destruction of both the Zn(II)(2)Cu(I) and Cu(I)(2) helicates to scavenge sufficient Cu(I) for the new structure. This system thus demonstrates two examples in which the application of one signal provokes two distinct responses involving the creation or destruction of complex assemblies as the system seeks thermodynamic equilibrium following perturbation.

摘要

分子亚基,如磷酸基团,在复杂的信号级联中经常在生物分子之间传递,这些级联的流动定义了生命机器的运动。在这里,我们展示了由通过金属离子配位编织在一起的有机亚基组成的非生物系统如何以复杂的方式对简单信号做出响应。Cu(I)(3) 螺旋体在添加锌(II)后转化为其 Zn(II)(2)Cu(I)类似物,而被逐出的铜(I)继续诱导溶液中存在的其他游离亚基自组装成 Cu(I)(2)螺旋体。添加另一个亚基 8-氨基喹啉导致形成第三个更稳定的 Cu(I)(3)螺旋体,这需要破坏 Zn(II)(2)Cu(I)和 Cu(I)(2)螺旋体,以从新结构中收集足够的 Cu(I)。因此,该系统展示了两个示例,其中一个信号的应用引发了两个不同的响应,涉及复杂组装的创建或破坏,因为系统在受到干扰后寻求热力学平衡。

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