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布洛芬通过与三个位点结合,变构调节一氧化氮从亚铁亚硝基化人血清血红素白蛋白上的解离。

Ibuprofen modulates allosterically NO dissociation from ferrous nitrosylated human serum heme-albumin by binding to three sites.

作者信息

Ascenzi Paolo, di Masi Alessandra, De Sanctis Giampiero, Coletta Massimo, Fasano Mauro

机构信息

Department of Biology and Interdepartmental Laboratory for Electron Microscopy, University Roma Tre, Via della Vasca Navale 79, Rome, Italy.

出版信息

Biochem Biophys Res Commun. 2009 Sep 11;387(1):83-6. doi: 10.1016/j.bbrc.2009.06.117. Epub 2009 Jun 25.

Abstract

Human serum albumin (HSA) is a monomeric allosteric protein. Here, the effect of ibuprofen on denitrosylation kinetics (k(off)) and spectroscopic properties of HSA-heme-Fe(II)-NO is reported. The k(off) value increases from (1.4+/-0.2)x10(-4)s(-1), in the absence of the drug, to (9.5+/-1.2)x10(-3)s(-1), in the presence of 1.0x10(-2)M ibuprofen, at pH 7.0 and 10.0 degrees C. From the dependence of k(off) on the drug concentration, values of the dissociation equilibrium constants for ibuprofen binding to HSA-heme-Fe(II)-NO (K(1)=(3.1+/-0.4)x10(-7)M, K(2)=(1.7+/-0.2)x10(-4)M, and K(3)=(2.2+/-0.2)x10(-3)M) were determined. The K(3) value corresponds to the value of the dissociation equilibrium constant for ibuprofen binding to HSA-heme-Fe(II)-NO determined by monitoring drug-dependent absorbance spectroscopic changes (H=(2.6+/-0.3)x10(-3)M). Present data indicate that ibuprofen binds to the FA3-FA4 cleft (Sudlow's site II), to the FA6 site, and possibly to the FA2 pocket, inducing the hexa-coordination of HSA-heme-Fe(II)-NO and triggering the heme-ligand dissociation kinetics.

摘要

人血清白蛋白(HSA)是一种单体变构蛋白。本文报道了布洛芬对HSA-血红素-Fe(II)-NO的去亚硝基化动力学(k(off))和光谱性质的影响。在pH 7.0和10.0℃条件下,无药物时k(off)值为(1.4±0.2)×10⁻⁴ s⁻¹,在存在1.0×10⁻² M布洛芬时,k(off)值增加到(9.5±1.2)×10⁻³ s⁻¹。根据k(off)对药物浓度的依赖性,确定了布洛芬与HSA-血红素-Fe(II)-NO结合的解离平衡常数(K₁=(3.1±0.4)×10⁻⁷ M,K₂=(1.7±0.2)×10⁻⁴ M,K₃=(2.2±0.2)×10⁻³ M)。K₃值与通过监测药物依赖性吸光光谱变化确定的布洛芬与HSA-血红素-Fe(II)-NO结合的解离平衡常数(H=(2.6±0.3)×10⁻³ M)相对应。目前的数据表明,布洛芬结合到FA3-FA4裂隙(Sudlow位点II)、FA6位点以及可能的FA2口袋,诱导HSA-血红素-Fe(II)-NO的六配位,并触发血红素-配体解离动力学。

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