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SPERMINE OXIDASE: AN AMINE OXIDASE WITH SPECIFICITY FOR SPERMINE AND SPERMIDINE

机译:精胺氧化酶:对精胺和精子有特异性的胺氧化酶

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摘要

Sheep serum and bovine serum contain an enzyme which brings about a rapid oxidative deamination of certain biological amines. This enzyme differs from previously described amine oxidases in several regards and especially in its substrate specificity. Studies thus far indicate that only spermine and the closely related compound spermidine serve as substrates for the enzyme in sheep serum. For this reason, the enzyme has been named spermine oxidase. Spermine oxidase is active in a variety of fluids of various ionic strength and buffer composition. The reaction takes place between pH 6.0 and pH 8.0 with an optimal rate in the vicinity of neutrality. Under certain conditions, the rate of oxygen consumption during the initial phase of the reaction is independent of the concentration of substrate. The diminution in rate observed during the latter phase of the enzymatic attack appears to be due to an alteration in the kinetics at low concentrations of substrate, or to competitive inhibition by a product of the reaction. Carbonyl reagents almost completely block the action of spermine oxidase, while certain amines and the cyanide ion bring about partial inhibition. Thiol reagents and sequestering compounds do not alter the course of the oxidative process. In the presence of low concentrations of mercuric chloride, the sheep serum-spermine system consumes approximately twice as much oxygen as controls containing no mercuric ion. The mechanism by which the mercuric ion stimulates additional oxygen uptake is obscure.
机译:绵羊血清和牛血清中含有一种酶,可引起某些生物胺的快速氧化脱氨作用。该酶在某些方面与先前描述的胺氧化酶不同,尤其是在其底物特异性方面。迄今为止的研究表明,只有精胺和与之密切相关的化合物亚精胺可作为绵羊血清中酶的底物。因此,该酶被称为精胺氧化酶。精胺氧化酶在具有各种离子强度和缓冲液组成的多种流体中具有活性。反应在中性附近以最佳速率在pH 6.0和pH 8.0之间进行。在某些条件下,反应初始阶段的耗氧速率与底物浓度无关。在酶促攻击的后期观察到的速率降低似乎是由于在低浓度的底物上动力学的改变,或者是由于反应产物的竞争性抑制。羰基试剂几乎完全阻断了精胺氧化酶的作用,而某些胺和氰化物离子则带来了部分抑制作用。硫醇试剂和螯合化合物不会改变氧化过程。在低浓度的氯化汞存在下,绵羊血清-精胺系统消耗的氧气大约是不含汞离子的对照组的两倍。汞离子刺激额外的氧气吸收的机制尚不清楚。

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  • 作者

    Hirsch, James G.;

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  • 年度 1953
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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