Department of Chemistry, Marie Curie Excellence Team, Technical University Munchen, 4 Lichtenberg Str. 85748 Garching, Germany.
Chemistry. 2010 Feb 15;16(7):2170-80. doi: 10.1002/chem.200902649.
Herein we describe the design and synthesis of the first series of di-functional ligands for the directed construction of inorganic-protein frameworks. The synthesized ligands are composed of a metal-ion binding moiety (terpyridine-based) conjugated to an epoxysuccinyl peptide, known to covalently bind active cysteine proteases through the active-site cysteine. We explore and optimize two different conjugation chemistries between the di-functionalized metal-ion ligand and the epoxysuccinyl-containing peptide moiety: peptide-bond formation (with limited success) and Cu(I)-catalysed click chemistry (with good results). Further, the complexation of the synthesized ligands with Fe(II) and Ni(II) ions is investigated: the di-functional ligands are confirmed to behave similarly to the parent terpyridine. As designed, the peptidic moiety does not interfere with the complexation reaction, in spite of the presence of two triazole rings that result from the click reaction. ES-MS together with NMR and UV/Vis studies establish the structure, the stoichiometry of the complexation reactions, as well as the conditions under which chemically sensitive peptide-containing polypyridine ligands can undergo the self-assembly process. These results establish the versatility of our approach and open the way to the synthesis of di-functional ligands containing more elaborated polypyridine ligands as well as affinity labels for different enzyme families. As such, this paper is the first step towards the construction of robust supramolecular species that cover a size-regime and organization level previously unexplored.
在此,我们描述了一系列用于定向构建无机-蛋白质框架的双功能配体的设计和合成。所合成的配体由金属离子结合部分(基于三联吡啶)与环氧琥珀酰基肽组成,已知通过活性半胱氨酸与活性半胱氨酸蛋白酶共价结合。我们探索并优化了双官能化金属离子配体和含环氧琥珀酰基肽部分之间的两种不同的共轭化学:肽键形成(成功率有限)和 Cu(I)催化点击化学(效果良好)。此外,还研究了合成配体与 Fe(II)和 Ni(II)离子的络合:双功能配体被证实与母体三联吡啶相似。如设计的那样,尽管点击反应产生了两个三唑环,但肽部分不会干扰络合反应。ES-MS 以及 NMR 和 UV/Vis 研究确定了结构、络合反应的化学计量以及化学敏感的含肽多吡啶配体在何种条件下可以进行自组装过程。这些结果证明了我们方法的多功能性,并为合成含有更复杂的多吡啶配体以及用于不同酶家族的亲和标签的双功能配体开辟了道路。因此,本文是构建覆盖以前未探索的大小范围和组织水平的稳健超分子物种的第一步。