Department of Chemistry, University of California, Berkeley, California 94720-1460, USA.
J Am Chem Soc. 2011 Dec 14;133(49):19900-10. doi: 10.1021/ja2079898. Epub 2011 Nov 14.
The synthesis, structure, and photophysical properties of several Tb(III) complexes with octadentate, macrotricyclic ligands that feature a bicapped topology and 2-hydroxyisophthalamide (IAM) chelating units are reported. These Tb(III) complexes exhibit highly efficient emission (Φ(total) ≥ 50%), large extinction coefficients (ε(max) ≥ 20,000 M(-1) cm(-1)), and long luminescence lifetimes (τ(H(2)O) ≥ 2.45 ms) at dilute concentrations in standard biological buffers. The structure of the methyl-protected ligand was determined by single-crystal X-ray diffraction and confirms the macrotricyclic structure of the parent ligand; the amide groups of the methyl-protected cage compound generate an anion binding cavity that complexes a chloride anion. Once the ligand is deprotected, a conformational change generates a similar cavity, formed by the phenolate and ortho amide oxygen groups that strongly bind lanthanide ions. The Tb(III) complexes thus formed display long-term stability, with little if any change in their spectral properties (including lifetime, quantum yield, and emission spectrum) over time or in different chemical environments. Procedures to prepare functionalized derivatives with terminal amine, carboxylate, and N-hydroxysuccinimide groups suitable for derivatization and protein bioconjugation have also been developed. These bifunctional ligands have been covalently attached to a number of different proteins, and the terbium complexes' exceptional photophysical properties are retained. These compounds establish a new aqueous stability and quantum yield standard for long-lifetime lanthanide reporters.
报道了几种具有双帽拓扑和 2-羟基异邻苯二甲酰胺(IAM)螯合单元的八齿大环配体的 Tb(III) 配合物的合成、结构和光物理性质。这些 Tb(III) 配合物在标准生物缓冲液中在稀浓度下表现出高效发射(Φ(total) ≥ 50%)、大消光系数(ε(max) ≥ 20,000 M(-1) cm(-1))和长荧光寿命(τ(H(2)O) ≥ 2.45 ms)。甲基保护配体的结构通过单晶 X 射线衍射确定,并证实了母体配体的大环结构;甲基保护笼状化合物的酰胺基生成一个阴离子结合腔,可络合一个氯离子。一旦配体被脱保护,构象发生变化,生成一个类似的空腔,由酚盐和邻酰胺氧基团组成,可与镧系离子强烈结合。因此形成的 Tb(III) 配合物具有长期稳定性,其光谱性质(包括寿命、量子产率和发射光谱)在时间或不同化学环境中几乎没有变化。还开发了制备带有末端胺、羧酸盐和 N-羟基琥珀酰亚胺基团的功能化衍生物的程序,这些衍生物适合衍生化和蛋白质生物偶联。这些双功能配体已共价连接到许多不同的蛋白质上,并且保留了铽配合物的优异光物理性质。这些化合物为长寿命镧系元素报告器建立了新的水稳定性和量子产率标准。