Kang Jung Sook, Abugo Omoefe O, Lakowicz Joseph R
Department of Oral Biochemistry and Molecular Biology, College of Dentistry, Pusan National University, Korea.
Biopolymers. 2002;67(2):121-8. doi: 10.1002/bip.10057.
The metal-ligand complex, [Ru(bpy)2(dppz)]2+ (bpy = 2,2'-bipyridine, dppz = dipyrido[3,2-a:2',3'-c]phenazine) (Ru-BD), was used as a spectroscopic probe for studying nucleic acid dynamics. The Ru-BD complex displays a long lifetime of over 100 ns and a molecular light switch property upon DNA binding due to shielding of its dppz ligand from water. To further show the usefulness of this luminophore (Ru-BD) for probing DNA dynamics, we examined its intensity and anisotropy decays when intercalated into supercoiled and linear pTZ18U plasmids using frequency-domain fluorometry with a light-emitting diode (LED) as the modulated light source. Compared to the supercoiled plasmids with an average intensity decay time of 120.8 ns at 25 degrees C, we obtained somewhat longer lifetimes for the linear plasmids ((tau) = 141.4 ns at 25 degrees C), suggesting a more efficient shielding from water by the linear plasmids. The anisotropy decay data also showed longer rotational correlation times for the linear plasmids (495 and 35 ns at 25 degrees C) as compared to the supercoiled plasmids (412 and 27 ns at 25 degrees C). The slow and fast rotational correlation times appear to be consistent with the bending and torsional motions of the plasmids, respectively. The anisotropy values were quite similar, although the values of the supercoiled plasmids were slightly higher in both the steady-state and anisotropy decay measurements. These results indicate that Ru-BD can be applied in the study of both bending and torsional dynamics of nucleic acids.
金属-配体配合物[Ru(bpy)₂(dppz)]²⁺(bpy = 2,2'-联吡啶,dppz = 二吡啶并[3,2-a:2',3'-c]吩嗪)(Ru-BD)被用作研究核酸动力学的光谱探针。Ru-BD配合物具有超过100 ns的长寿命,并且由于其dppz配体与水隔离,在与DNA结合时具有分子光开关特性。为了进一步证明这种发光体(Ru-BD)在探测DNA动力学方面的实用性,我们使用发光二极管(LED)作为调制光源,通过频域荧光法研究了其插入超螺旋和线性pTZ18U质粒时的强度和各向异性衰减。与在25℃下平均强度衰减时间为120.8 ns的超螺旋质粒相比,我们得到线性质粒的寿命稍长一些(25℃下τ = 141.4 ns),这表明线性质粒对水的屏蔽更有效。各向异性衰减数据还显示,与超螺旋质粒(25℃下412和27 ns)相比,线性质粒的旋转相关时间更长(25℃下495和35 ns)。慢和快的旋转相关时间似乎分别与质粒的弯曲和扭转运动一致。各向异性值相当相似,尽管在稳态和各向异性衰减测量中,超螺旋质粒的值略高。这些结果表明Ru-BD可应用于核酸弯曲和扭转动力学的研究。