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[鱿鱼视神经节中一元胺氧化酶的底物和抑制特异性的比较研究]

[Comparative study of substrate and inhibitory specificity of monoamine oxidase in the optic ganglia of squids].

作者信息

Iagodina O V

出版信息

Zh Evol Biokhim Fiziol. 2010 May-Jun;46(3):191-7.

Abstract

Comparative study of substrate specificity of monoamine oxidase (MAO) of optic ganglia of the Pacific squid Todarodes pacificus and the Commander squid Berryteuthis magister has been carried out. The enzyme of the Pacific squid, unlike that of the Commander squid, has been established to be able to deaminate not only tyramine, tryptamine, serotonin, benzylamine, and beta-phenylethylamine, but also histamine--substrate of diamine oxidase (DAO). In relation to all studied substrates, the MAO activity of optic ganglia of T. pacificus is several times higher as compared with B. magister. In the case of deamination of serotonin this difference was the greatest and amounted to 5 times. Semicarbazide, the classic DAO inhibitor, at a concentration of 10 mM did not inhibit catalytic activity of both studied enzymes. The substrate-inhibitory analysis with use of deprenyl and chlorogiline, specific inhibitors of different MAO forms, indicates homogeneity of the enzyme of the Pacific squid and heterogeneity of the Commander squid enzyme whose composition seems probably to contain at least two MAO forms. There are obtained quantitative differences in substrate specificity and reaction capability with respect to the inhibitors chlorgiline and deprenyl for MAO of optic ganglia of the studied squid species. These differences probably can be explained by significant differences in the evolutionary level of these biological species.

摘要

对太平洋褶柔鱼(Todarodes pacificus)和大王乌贼(Berryteuthis magister)视神经节单胺氧化酶(MAO)的底物特异性进行了比较研究。已确定太平洋褶柔鱼的这种酶与大王乌贼的不同,它不仅能够使酪胺、色胺、5-羟色胺、苄胺和β-苯乙胺脱氨基,还能使组胺(二胺氧化酶(DAO)的底物)脱氨基。相对于所有研究的底物,太平洋褶柔鱼视神经节的MAO活性比大王乌贼高几倍。在5-羟色胺脱氨基的情况下,这种差异最大,达到5倍。经典的DAO抑制剂氨基脲在10 mM浓度下不抑制所研究的两种酶的催化活性。使用不同MAO形式的特异性抑制剂司来吉兰和氯吉兰进行底物抑制分析,表明太平洋褶柔鱼的酶具有同质性,而大王乌贼的酶具有异质性,其组成似乎可能至少包含两种MAO形式。在所研究的鱿鱼种类的视神经节MAO中,对于氯吉兰和司来吉兰抑制剂,在底物特异性和反应能力方面存在定量差异。这些差异可能可以用这些生物物种进化水平的显著差异来解释。

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