Szmacinski H, Terpetschnig E, Lakowicz J R
University of Maryland at Baltimore, Department of Biochemistry and Molecular Biology 21201, USA.
Biophys Chem. 1996 Nov 29;62(1-3):109-20. doi: 10.1016/s0301-4622(96)02199-0.
We investigated three unsymmetrical Ru-complexes, namely [Ru(bpy)2 (phen-ITC)]2+, [Ru(bpy)2(dcbpy)] and [Ru(bpy)2(mcbpy)]+ for use as probes for rotational diffusion and in immunoassays of high-molecular-weight antigens. For this purpose we synthesized reactive forms of these metal-ligand complexes and conjugated them to human serum albumin (HSA). The maximal anisotropies (r0) for the HSA-bound forms in frozen solution are 0.23, 0.17 and 0.14 for the (dcbpy), (mcbpy) and (phen-ITC) derivatives, respectively. The activated Ru metal-ligand complexes have either one or two NHS-esters or an isothiocyanate group as the reactive moiety. The usefulness of these complexes in immunoassays was determined by titration of the labeled HSA with polyclonal anti-HSA. The highest steady state anisotropy (r) values (0.190) were observed for the [Ru(bpy)2(dcbpy)]-labeled HSA on titration with polyclonal antibody. However, a relative increase in the steady state anisotropy (r/r0) on titration with polyclonal antibody was found for the phen-ITC probe (96%), as compared to the dcbpy (83%) or mcbpy (79%) derivatives. These findings were confirmed by time-resolved frequency-domain measurements. In particular the higher mean correlation times calculated for the phen-ITC derivative suggests reduced local probe motion for this probe when bound to HSA as compared to the (mcbpy) and (dcbpy) conjugates.
我们研究了三种不对称钌配合物,即[Ru(bpy)2 (phen-ITC)]2+、[Ru(bpy)2(dcbpy)]和[Ru(bpy)2(mcbpy)]+,用作旋转扩散探针以及用于高分子量抗原的免疫分析。为此,我们合成了这些金属-配体配合物的活性形式,并将它们与人类血清白蛋白(HSA)偶联。对于冷冻溶液中与HSA结合的形式,(dcbpy)、(mcbpy)和(phen-ITC)衍生物的最大各向异性(r0)分别为0.23、0.17和0.14。活化的钌金属-配体配合物具有一个或两个NHS-酯或一个异硫氰酸酯基团作为反应性部分。通过用多克隆抗HSA滴定标记的HSA来确定这些配合物在免疫分析中的实用性。在用多克隆抗体滴定[Ru(bpy)2(dcbpy)]标记的HSA时,观察到最高的稳态各向异性(r)值(0.190)。然而,与dcbpy(83%)或mcbpy(79%)衍生物相比,发现phen-ITC探针在用多克隆抗体滴定时稳态各向异性(r/r0)有相对增加(96%)。这些发现通过时间分辨频域测量得到证实。特别是,与(mcbpy)和(dcbpy)偶联物相比,phen-ITC衍生物计算出的较高平均相关时间表明该探针与HSA结合时局部探针运动减少。