Chen R H, Abuchowski A, Van Es T, Palczuk N C, Davis F F
Biochim Biophys Acta. 1981 Aug 13;660(2):293-8. doi: 10.1016/0005-2744(81)90173-x.
Poly(ethylene glycol) of 5 000 daltons has been attached covalently to preparations of urate oxidase (urate: oxygen oxidoreductase, EC 1.7.3.3) from hog liver and Candida utilis. Attachment of sufficient poly(ethylene glycol) to either urate oxidase renders the enzyme incapable of eliciting antibody production in mice, or of reacting with antibodies to the unmodified enzyme. The poly(ethylene glycol) : urate oxidase conjugates exhibit higher Km and lower V values than the unmodified urate oxidases. Optimal pH values are increased for the poly(ethylene glycol) : urate oxidases, and optimal temperatures are decreased. The blood circulating lives of the modified urate oxidases following intravenous injection are much longer than those of the unmodified urate oxidases: repetitive injections over a period of 90 days dd not alter the blood circulating lives of the poly(ethylene glycol) : urate oxidases. The unmodified enzymes, on the other hand, were cleared from the blood with extreme rapidity after a few intravenous injections.
已将5000道尔顿的聚乙二醇共价连接到猪肝和产朊假丝酵母的尿酸氧化酶(尿酸:氧氧化还原酶,EC 1.7.3.3)制剂上。将足够的聚乙二醇连接到任一尿酸氧化酶上都会使该酶无法在小鼠体内引发抗体产生,也无法与针对未修饰酶的抗体发生反应。聚乙二醇:尿酸氧化酶缀合物比未修饰的尿酸氧化酶表现出更高的Km值和更低的V值。聚乙二醇:尿酸氧化酶的最佳pH值升高,最佳温度降低。静脉注射后,修饰的尿酸氧化酶在血液中的循环寿命比未修饰的尿酸氧化酶长得多:在90天的时间内重复注射不会改变聚乙二醇:尿酸氧化酶在血液中的循环寿命。另一方面,未修饰的酶在几次静脉注射后会极快地从血液中清除。