期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Speciation and structural transformation of a V^(V)–malate complex in the absence and in the presence of a protein:from a dinuclear species to decavanadate
1
作者 Maddalena Paolillo Giarita Ferraro +4 位作者 Nadiia I.Gumerova Federico Pisanu Eugenio Garribba annette rompel Antonello Merlino 《Inorganic Chemistry Frontiers》 2025年第21期6503-6518,共16页
A strategy for the development of new vanadium-based drugs is the preparation of complexes that target proteins and bear molecules involved in the cellular metabolism as ligands,likeα-hydroxycarboxylic acids.Based on... A strategy for the development of new vanadium-based drugs is the preparation of complexes that target proteins and bear molecules involved in the cellular metabolism as ligands,likeα-hydroxycarboxylic acids.Based on these premises,this study explores the solution behaviour of the dioxidovanadium(V)complex of malic acid,Cs_(2)[V^(V)_(2)O_(4)(mal)_(2)]·2H_(2)O,and its interaction with the model protein lysozyme(HEWL)at room and at physiological temperature using 51V nuclear magnetic resonance(NMR),electrospray ionisation-mass spectrometry(ESI-MS)and X-ray crystallography.The results show the coexistence in aqueous solution of various molecular species containing two or ten V^(V)centres.In solution these species are formed regardless of the presence of HEWL,while at 37℃the formation of[V^(V)_(10)O_(28)]^(6−)(V_(10))is precluded when the protein is present.Crystallographic data reveal that,when protein crystals are incubated with the V compound at room temperature(25℃)and at pH 4.0,[VIVO]^(2+),[V^(V)_(2)O_(5)(mal)]^(2−),[V^(V)_(10)O_(26)]^(2−)and[V^(V)_(10)O_(28)]^(6−)are bound to the protein,while at 37℃,under the same conditions,only[VIVO]^(2+)interacts with HEWL.[V^(V)_(10)O_(28)]^(6−)can bind the protein both covalently(as[V^(V)_(10)O_(26)]^(2−)ion)and non-covalently.Whereas the transformation of[V^(V)_(2)O_(4)(mal)_(2)]^(2−)to[V^(V)_(2)O_(5)(mal)]^(2−)is expected on the basis of thermodynamic considerations,the formation of V10 and of the V_(10)-HEWL adduct is not easily predictable.Docking calculations confirm the experimental results and highlight the role of protein-protein interaction in the stabilization of the revealed adduct.This study demonstrates that vanadium compounds can undergo transformation in solution,giving rise to species that interact with proteins through several binding modes and stabilization mechanisms. 展开更多
关键词 v nuclear magnetic resonance nmr electrospray vanadium complexes target proteins model protein lysozyme hewl cellular metabolism solution behaviour structural transformation malic acidcs v v o mal h oand
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部