Sakamoto Takashi, Ojida Akio, Hamachi Itaru
Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura Campus, Nishikyo-ku, 615-8510, Kyoto, Japan.
Chem Commun (Camb). 2009 Jan 8(2):141-52. doi: 10.1039/b812374h. Epub 2008 Oct 29.
In this Feature Article, we focus on recent advances in our research on molecular recognition and fluorescence sensing of phosphate anion derivatives of biological importance. Because of their significant roles in biological systems, considerable efforts have been devoted to developing detection or determination systems. However, the recognition and sensing of these anion species under aqueous biological conditions using small-molecular chemosensors still remain as a challenging research topic. We have been developing a variety of artificial receptors and fluorescent chemosensors for phosphoproteins and nucleoside polyphosphates in recent years. They consist of a binuclear Zn(II)-dipicolylamine (Dpa) complex as a common binding motif for phosphate anion derivatives. Taking advantage of their strong binding affinities or high sensing abilities, a variety of biological assay systems have also been successfully developed, which includes the enzyme assays such as the kinase, phosphatase and glycosyltransferase reaction, as well as an inhibitor assay for the phosphoprotein-protein surface interaction.
在这篇专题文章中,我们重点关注了我们在对具有生物学重要性的磷酸根阴离子衍生物的分子识别和荧光传感研究方面的最新进展。由于它们在生物系统中的重要作用,人们已投入大量精力来开发检测或测定系统。然而,使用小分子化学传感器在水性生物条件下对这些阴离子物种进行识别和传感仍然是一个具有挑战性的研究课题。近年来,我们一直在开发用于磷蛋白和核苷多磷酸盐的各种人工受体和荧光化学传感器。它们由双核Zn(II)-二吡啶甲胺(Dpa)配合物组成,作为磷酸根阴离子衍生物的常见结合基序。利用它们强大的结合亲和力或高传感能力,还成功开发了各种生物分析系统,包括激酶、磷酸酶和糖基转移酶反应等酶分析,以及磷蛋白-蛋白质表面相互作用的抑制剂分析。