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使用基于N-甲基吡啶鎓聚合物的柱子,通过混合二硫键对N-乙酰-L-半胱氨酸与人血清白蛋白之间的共价结合进行动力学研究。

Kinetic studies of covalent binding between N-acetyl-L-cysteine and human serum albumin through a mixed-disulfide using an N-methylpyridinium polymer-based column.

作者信息

Harada Daisuke, Anraku Makoto, Fukuda Hikaru, Naito Shinsaku, Harada Kumiko, Suenaga Ayaka, Otagiri Masaki

机构信息

Division of Pharmacology, Drug Safety and Metabolism, Otsuka Pharmaceutical Factory, Inc., Tokushima, Japan.

出版信息

Drug Metab Pharmacokinet. 2004 Aug;19(4):297-302. doi: 10.2133/dmpk.19.297.

DOI:10.2133/dmpk.19.297
PMID:15499198
Abstract

The binding properties of the disulfide covalent bond between N-acetyl-L-cysteine (NAC) and human serum albumin (HSA) were investigated. HSA, purified from either healthy subjects or renal failure patients, was incubated with NAC in buffer and analyzed by 4VP-EG-Me column chromatography, which can distinguish between the redox states of the only free thiol of HSA. Although intact HSA was found to consist of mainly three sub-types, marcaptoalbumin (HMA), cysteine-bound nonmercaptoalbumin (HNA(Cys)) and a further oxidized form (HNA(oxy)), the formation of a new type of nonmercaptoalbumin (HNA(NAC)) was confirmed after incubation with NAC. Interestingly, NAC rapidly dissociated Cys from HNA(Cys) and NAC itself bound very slowly to HSA. These findings suggest that the interaction between NAC and HSA proceeds in a 2-step processes. The first-order binding and dissociation rate constants of NAC to healthy HSA (k(on,NAC)) and Cys from healthy HNA(Cys) (k(off,Cys)) were approximately 0.0032 and 1.3 (h(-1)), respectively. On the other hand, HSA from renal failure patients showed decreased HMA and increased HNA(Cys). The k(on,NAC) and k(off,Cys) were 0.0094 and 0.45 (h(-1)), respectively, suggesting that the pathological state may affect the binding properties of HSA and NAC.

摘要

研究了N-乙酰-L-半胱氨酸(NAC)与人血清白蛋白(HSA)之间二硫键共价键的结合特性。从健康受试者或肾衰竭患者中纯化得到的HSA,在缓冲液中与NAC孵育,并通过4VP-EG-Me柱色谱进行分析,该色谱可区分HSA唯一游离巯基的氧化还原状态。尽管完整的HSA主要由三种亚型组成,即巯基白蛋白(HMA)、半胱氨酸结合的非巯基白蛋白(HNA(Cys))和另一种氧化形式(HNA(oxy)),但与NAC孵育后证实形成了一种新型的非巯基白蛋白(HNA(NAC))。有趣的是,NAC能迅速将半胱氨酸从HNA(Cys)中解离出来,而NAC自身与HSA的结合非常缓慢。这些发现表明NAC与HSA之间的相互作用分两步进行。NAC与健康HSA(k(on,NAC))以及健康HNA(Cys)中的半胱氨酸(k(off,Cys))的一级结合和解离速率常数分别约为0.0032和1.3(h-1)。另一方面,肾衰竭患者的HSA显示HMA减少而HNA(Cys)增加。k(on,NAC)和k(off,Cys)分别为0.0094和0.45(h-1),这表明病理状态可能会影响HSA与NAC的结合特性。

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