BIS-CATECHOL-SUBSTITUTED REDOX-REACTIVE ANALOGS OF HEXAMETHONIUM AND DECAMETHONIUM - STIMULATED AFFINITY-DEPENDENT REACTIVITY THROUGH IRON PEROXIDE CATALYSIS

被引:11
作者
GU, YQ
LEE, H
HUDSON, RA
机构
[1] UNIV TOLEDO,COLL PHARM,DEPT MED & BIOL CHEM,TOLEDO,OH 43606
[2] UNIV TOLEDO,COLL ARTS & SCI,DEPT CHEM,TOLEDO,OH 43606
关键词
D O I
10.1021/jm00051a021
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Symmetrically bis-catechol-substituted analogues (1 and 2, respectively) of hexamethonium and decamethonium were synthesized and investigated as redox-activated affinity reagents toward the neurotoxin-binding sites of the nicotinic acetylcholine receptor (nAcChR), purified from Torpedo californica electroplax. These reagents bound to nAcChR with K-d = 1.8 X 10(-8) and 2.3 x 10(-7) M for 1 and 2, respectively. In the presence of a metal, Fe(II)/Fe(III), and peroxide, both reagents produced a rapid and efficient half-of-sites inactivation of neurotoxin-binding sites in the nAcChR in a concentration-dependent manner, which paralleled the extent of receptor binding of the reagents. In the absence of Fe(II)/Fe(III) peroxide, redox-dependent inactivation occurred for both 1 and 2 more slowly and only at concentrations much higher (10(3)-10(4) times) than those necessary to produce significant binding to nAcChR. However, receptor inactivation in the absence of added metal peroxide was still more efficient for 1 and 2 than observed previously for [(trimethylammonio)methyl] catechol (3), the prototypic redox-dependent affinity reagent after which 1 and 2 were patterned. Thus, the new reagents reported are expected to provide more efficient and selective conditions for redox-dependent inactivation at nAcChR and other macromolecular sites to which such reagents may be directed.
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页码:4417 / 4420
页数:4
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