Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520-8107, USA.
J Am Chem Soc. 2013 Aug 21;135(33):12414-21. doi: 10.1021/ja406067v. Epub 2013 Aug 7.
We report three distinct, peptide-based catalysts that enable site-selective phosphorylation of three distinct hydroxyl groups within the complex glycopeptide antibiotic teicoplanin A2-2. Two of the catalysts are based on a design that capitalizes on a catalyst-substrate interaction that mimics the biological mechanism of action for teicoplanin. These catalysts are based on a DXaa-DXaa peptide motif that is known to target the teicoplanin structure in a specific manner. The third was identified through evaluation of a set of catalysts that had been developed for historically distinct projects. Each catalyst contains additional functionality designed to dispose a catalytic moiety (a nucleophilic alkylimidazole) at a different region of the glycopeptide structure. A combination of mass spectrometry and 2D-NMR spectroscopy allowed structural assignment of the distinct phosphorylated teicoplanin derivatives. Mechanistic studies are also reported that support the hypotheses that led to the discovery of the catalysts. In this manner, small molecule catalysts have been achieved that allow rational, catalytic control over reactions at sites that are separated by 11.6, 16.5, and nearly 17.7 Å, based on the X-ray crystal structure of teicoplanin A2-2. Finally, we report the biological activity of the new phosphorylated teicoplanin analogs and compare the results to the natural product itself.
我们报道了三种不同的、基于肽的催化剂,它们能够在复杂糖肽抗生素替考拉宁 A2-2 内选择性地磷酸化三个不同的羟基。其中两种催化剂基于一种设计,利用一种模仿替考拉宁作用机制的催化剂-底物相互作用。这些催化剂基于已知以特定方式靶向替考拉宁结构的 DXaa-DXaa 肽基序。第三种是通过评估一组曾用于历史上不同项目的催化剂而发现的。每个催化剂都包含额外的功能,旨在将催化部分(亲核烷基咪唑)置于糖肽结构的不同区域。质谱和 2D-NMR 光谱的组合允许对不同的磷酸化替考拉宁衍生物进行结构分配。还报告了支持导致发现催化剂的假设的机理研究。通过这种方式,已经实现了小分子催化剂,允许根据替考拉宁 A2-2 的 X 射线晶体结构,在相隔 11.6、16.5 和近 17.7 Å 的位点上进行合理的、催化控制的反应。最后,我们报告了新的磷酸化替考拉宁类似物的生物学活性,并将结果与天然产物本身进行了比较。