SRICT-Institute of Science and Research, Department of Chemistry, UPL University of Sustainable Technology, Vataria, India.
Department of Community Health Sciences, College of Applied Medical Sciences, King Saud University, Riyadh, Saudi Arabia.
J Biomol Struct Dyn. 2024 May;42(8):3949-3957. doi: 10.1080/07391102.2023.2216783. Epub 2023 May 30.
The intercalative yeast t-RNA binding behavior of some metallo-surfactant complexes, Co(ip)(TA)](ClO) () and Co(dpq)(TA) () where TA = Tetradecylamine (Myristylamine), ip = imidazo[4,5-f][1,10]phenanthroline and dpq = dipyrido[3,2-d:2'-3'-f]quinoxaline containing π-conjugated systems (both below and above critical micelle concentration) have been investigated by means of absorption spectral titration, competitive binding, circular dichroism, cyclic voltammetry, and viscometry measurements. Absorption spectral titration results implicate yeast tRNA has significant effects on the binding behaviors of two surfactant complexes intercalative mode showed a significant absorption band of hypochromicity with red shift. The intrinsic binding constant values below and above CMC were determined as = 6.12 × 10 M, 2.31 × 10 M, for complex (1) and 7.23 × 10 M, 3.57 × 10 M, for complex (2). In both sets of complexes (1) and (2), the complexes bind more strongly to yeast tRNA in the above critical micelle concentration can be hydrophobic and confirm intercalation. Competitive displacement studies confirmed that complexes bind to yeast tRNA intercalative mode. Cyclic voltammetry studies suggest the increasing amounts of yeast tRNA, the cathodic potential for the two complexes shows a positive shift in peak potential indicated the process of binding intercalation. These observations were further validated by CD, and hydrodynamic measurements. All these studies suggesting that a surfactant complex binds to yeast tRNA appear to be mainly intercalative because of hydrophobicity due to extending aromaticity of the π system of the ligand and planarity of the complex has a significant effect on tRNA binding affinity increasing in the order of complexes containing ligands ip < dpq.Communicated by Ramaswamy H. Sarma.
一些金属表面活性剂配合物,Co(ip)(TA)](ClO) () 和 Co(dpq)(TA) () 与酵母 tRNA 的插层结合行为,其中 TA = 十四烷基胺(肉豆蔻胺),ip = 咪唑并[4,5-f][1,10]菲咯啉和 dpq = 二吡啶并[3,2-d:2'-3'-f]喹喔啉(都包含π共轭体系)在临界胶束浓度(CMC)上下的酵母 tRNA 结合行为已通过吸收光谱滴定、竞争结合、圆二色性、循环伏安法和粘度测量进行了研究。吸收光谱滴定结果表明,酵母 tRNA 对两个表面活性剂配合物的结合行为有显著影响。配合物以插层模式结合,表现出显著的减色性和红移吸收带。CMC 上下的固有结合常数值分别为 6.12×10 M 和 2.31×10 M(配合物 1),7.23×10 M 和 3.57×10 M(配合物 2)。在这两套配合物(1)和(2)中,在 CMC 以上时,配合物与酵母 tRNA 的结合更牢固,可以通过疏水性证实其为插层。竞争置换研究证实,配合物以插层模式与酵母 tRNA 结合。循环伏安法研究表明,随着酵母 tRNA 浓度的增加,两个配合物的阴极电势向正方向移动,表明结合过程是插层。这些观察结果进一步通过 CD 和流体力学测量得到验证。所有这些研究表明,由于配体π体系的芳香性扩展和配合物的平面性,表面活性剂配合物与酵母 tRNA 的结合主要是插层的,并且对 tRNA 结合亲和力的影响顺序为含有配体 ip 的配合物<dpq 的配合物。由 Ramaswamy H. Sarma 交流。