Wong Brian A, Friedle Simone, Lippard Stephen J
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Inorg Chem. 2009 Aug 3;48(15):7009-11. doi: 10.1021/ic900990w.
The spectroscopic and proton- and Zn(II)-binding properties of two new members of the Zinpyr family of fluorescent sensors are reported. In ZP1B and ZP3B, a (2-picolyl)(4-picolyl)amine (2,4-DPA) moiety is installed in place of the di(2-picolyl)amine (2,2-DPA) ligand used in the parent sensors ZP1 and ZP3. This modification has the benefit of both lowering the proton-induced turn-on at physiological pH levels and altering the Zn(II) affinity so as to detect only the most concentrated stores of this ion in biological samples. Comparison of the proton affinities of all four probes, as determined by potentiometric titrations, contributes to our understanding of the solution properties of this family of sensors.
报道了荧光传感器锌吡啶家族两个新成员的光谱特性以及质子和锌(II)结合特性。在ZP1B和ZP3B中,(2-甲基吡啶基)(4-甲基吡啶基)胺(2,4-DPA)部分取代了母体传感器ZP1和ZP3中使用的二(2-甲基吡啶基)胺(2,2-DPA)配体。这种修饰的好处是,在生理pH值水平下降低了质子诱导的开启,并改变了锌(II)亲和力,从而仅检测生物样品中该离子的最高浓度储存。通过电位滴定法测定的所有四种探针的质子亲和力比较,有助于我们了解该传感器家族的溶液性质。