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聚合物酶模拟物:含核糖聚合物对磷酸底物的催化活性。

Polymeric enzyme mimics: catalytic activity of ribose-containing polymers for a phosphate substrate.

作者信息

Han Man Jung, Yoo Kyung Soo, Kim Young Heui, Chang Ji Young

机构信息

Department of Molecular Science and Technology, Ajou University, Suwon 442-749, Korea.

出版信息

Org Biomol Chem. 2003 Jul 7;1(13):2276-82. doi: 10.1039/b301166f.

Abstract

The polymers containing ribose rings: poly(5'-acrylamido-5'-deoxy-1',2'-O-isopropylidene-alpha-D-ribose) (11), poly(5'-acrylamido-5'-deoxy-alpha-D-ribose) (12) and poly(5'-acrylamido-5'-deoxy-1'-O-methyl-D-ribose) (13) were prepared as enzyme mimics. Polymers 12 and 13 with free vic-cis-diol groups catalyzed the hydrolysis of phosphodiester (ethyl p-nitrophenyl phosphate and N-methylpyridinium 4-tert-butylcatechol cyclic phosphate) and phosphomonoester substrates with a rate acceleration of 10 approximately equal to 10(3) compared with the uncatalyzed reaction. They also catalyzed the reverse reactions, i.e., the esterification of phosphomonoester to phosphodiester and the phosphorylation of alcohols with phosphate ions. The catalytic activity was attributable to the vic-cis-diols of riboses on polymer chains, which formed hydrogen bonds with two phosphoryl oxygen atoms of phosphates so as to activate the phosphorus atoms to be attacked by nucleophiles. The catalytic activity was negligible for polymer 11 where vic-cis-diol groups were blocked with isopropylidene groups. The catalytic activity was attributable to the vic-cis-diols of riboses on polymer chains, which formed hydrogen bonds with two phosphoryl oxygen atoms of phosphates so as to activate the phosphorus atoms to be attacked by nucleophiles.

摘要

含有核糖环的聚合物

聚(5'-丙烯酰胺基-5'-脱氧-1',2'-O-异亚丙基-α-D-核糖)(11)、聚(5'-丙烯酰胺基-5'-脱氧-α-D-核糖)(12)和聚(5'-丙烯酰胺基-5'-脱氧-1'-O-甲基-D-核糖)(13)被制备成酶模拟物。具有游离邻位顺式二醇基团的聚合物12和13催化磷酸二酯(对硝基苯磷酸乙酯和N-甲基吡啶鎓4-叔丁基儿茶酚环磷酸酯)和磷酸单酯底物的水解,与未催化反应相比,速率加速了10至10³倍。它们还催化逆反应,即磷酸单酯向磷酸二酯的酯化反应以及醇与磷酸根离子的磷酸化反应。催化活性归因于聚合物链上核糖的邻位顺式二醇,其与磷酸盐的两个磷酰氧原子形成氢键,从而激活磷原子以被亲核试剂攻击。对于聚合物11,其邻位顺式二醇基团被异亚丙基封闭,催化活性可忽略不计。催化活性归因于聚合物链上核糖的邻位顺式二醇,其与磷酸盐的两个磷酰氧原子形成氢键,从而激活磷原子以被亲核试剂攻击。

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