Effect of La3+ on structure and electrochemical reaction of microperoxidase-11 in imitated physiological solution


Autoria(s): Huang XH; Guo SF; Zhou Q; Lu TH; Ding XL
Data(s)

2007

Resumo

In this paper, the interaction mechanism between La3+ and microperoxidase-11 (MP-11) in the imitated physiological solution was investigated with the electrochemical and spectroscopic methods. It was found that when the molar ratio of La3+, and MP-11 is low, such as 2, La3+ can coordinate with oxygen in the propionic acid group of the heme group in the MP-11 molecule, forming the La-MP-11 complexes and leading to the increase in the non-planarity of the porphyrin cycle in the heme group and then the increase in the extent of exposure of the electrochemically active center, Fe(I I I) in the porphyrin cycle of the heme group. The increase in the extent of exposure of the electrochemically active center, Fe(III) in the porphyrin cycle of the heme group would increase the reversibility of the electrochemical reaction of the La-MP-11 complexes and its electrocatalytic activity for the reduction of H2O2. The results of the chromatographic analysis demonstrated that the average molar ratio of La3+ and MP-11 in the La-MP-11 complexes is 1.62.When the molar ratio of La3+ and MP-11 is high, such as 3, La3+ would shear some amino acid residues of the peptide of MP-11. Therefore, many La3+ ions can bind to the oxygen- and/or nitrogen-containing groups in the sheared amino acid residues except coordinating with the sheared and non-sheared MP-11 molecules.

Identificador

http://ir.ciac.jl.cn/handle/322003/14567

http://www.irgrid.ac.cn/handle/1471x/150326

Idioma(s)

英语

Fonte

Huang XH;Guo SF;Zhou Q;Lu TH;Ding XL.Effect of La3+ on structure and electrochemical reaction of microperoxidase-11 in imitated physiological solution,JOURNAL OF ELECTROANALYTICAL CHEMISTRY,2007 ,600(2):227-235

Palavras-Chave #DIMETHYL-SULFOXIDE SOLUTION #SELF-ASSEMBLED MONOLAYERS #HEART CYTOCHROME-C #HORSERADISH-PEROXIDASE #ELECTRON-TRANSFER #ELECTROCATALYTIC REDUCTION #GOLD ELECTRODE #GLASSY-CARBON #CONFORMATIONAL-CHANGES #NICKEL(II) PORPHYRINS
Tipo

期刊论文