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通过共价修饰控制基于肽的软结构的形态。

Controlling morphology of peptide-based soft structures by covalent modifications.

机构信息

Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur-208 016 UP, India.

出版信息

J Pept Sci. 2012 Jun;18(6):405-12. doi: 10.1002/psc.2411. Epub 2012 Apr 25.

Abstract

Control of gross morphology of soft matter remains an area of continued interest. Towards this goal, this paper describes conjugation of mannose residues and introduction of thiol functionalities to diphenylalanine (FF) dipeptide, a fibrillating motif from amyloid-β peptide, as covalent modifiers of its solution-phase self-assembly process. It was found that covalent attachment of a single mannose residue to FF leads to the retention of tubular structures, whereas the conjugation of two mannose units, linked through a Lys residue, resulted in a dramatic change from tubular morphology to spherical structures. However, a similar switch to spherical objects could be achieved by introducing a thiol residue in the mono-mannosylated FF dipeptide. Interestingly, these glycopeptides also exhibited interaction with concanavalin A, thereby providing an indirect evidence for the availability of mannose units for the process of lectin-carbohydrate interaction in the self-organized state.

摘要

控制软物质的宏观形态仍然是一个持续关注的领域。为此,本文描述了甘露糖残基的共轭和巯基功能的引入到二苯丙氨酸(FF)二肽,一种来自淀粉样β肽的纤丝状基序,作为其溶液相自组装过程的共价修饰物。结果发现,FF 上的单甘露糖残基的共价连接导致管结构的保留,而通过赖氨酸残基连接的两个甘露糖单元的共轭导致从管状形态到球形结构的显著变化。然而,通过在单甘露糖化的 FF 二肽中引入巯基残基,也可以实现类似的向球形物体的转变。有趣的是,这些糖肽还与伴刀豆球蛋白 A 相互作用,从而为糖蛋白在自组织状态下与凝集素-碳水化合物相互作用过程中甘露糖单元的可用性提供了间接证据。

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