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锰和锌对酶诱导的阻断作用:微粒体血红素加氧酶的研究

Manganese and zinc blockade of enzyme induction: studies with microsomal heme oxygenase.

作者信息

Drummond G S, Kappas A

出版信息

Proc Natl Acad Sci U S A. 1979 Oct;76(10):5331-5. doi: 10.1073/pnas.76.10.5331.

Abstract

Heme oxygenase (decyclizing) [heme,hydrogen-donor:oxygen oxidoreductase (alpha-methene-oxidizing, hydroxylating), EC 1.14.99.3] is greatly induced in the kidney by the administration of nickel or tin. Manganese, when administered simultaneously with nickel or tin in an equimolar amount, substantially inhibited the induction of heme oxygenase. The extent of inhibition was 80% and 98%, respectively. In rats pretreated up to 8 hr with manganese, the level of induction of heme oxygenase by nickel or tin was markedly reduced in a time-dependent fashion. Manganese treatment after the inducing metal was relatively ineffective in preventing the induction of heme oxygenase. Manganese in vitro did not inhibit heme oxygenase in the microsomes isolated from either control or tin-induced rats and in vivo did not increase the rate of catabolism of the induced enzyme. Magnesium was unable to block nickel or tin induction of heme oxygenase. Zinc in equimolar amounts could also substantially reduce the extent of induction of renal heme oxygenase when administered simultaneously with nickel or tin. In addition, simultaneous zinc administration blocked to a considerable extent the induction of hepatic heme oxygenase by nickel, cobalt, or cadmium. These findings indicate the existence of metal-metal interactions that can greatly influence the regulatory mechanism for the induced synthesis of heme oxygenase, the rate-limiting enzyme in heme degradation.

摘要

血红素加氧酶(环化)[血红素,氢供体:氧氧化还原酶(α-次甲基氧化,羟化),EC 1.14.99.3]在给予镍或锡后在肾脏中被大量诱导。当与镍或锡以等摩尔量同时给予时,锰可显著抑制血红素加氧酶的诱导。抑制程度分别为80%和98%。在预先用锰处理长达8小时的大鼠中,镍或锡诱导的血红素加氧酶水平以时间依赖性方式显著降低。在诱导金属处理后进行锰处理在预防血红素加氧酶诱导方面相对无效。体外锰不抑制从对照或锡诱导的大鼠分离的微粒体中的血红素加氧酶,体内也不增加诱导酶的分解代谢速率。镁不能阻断镍或锡对血红素加氧酶的诱导。当与镍或锡同时给予时,等摩尔量的锌也可显著降低肾脏血红素加氧酶的诱导程度。此外,同时给予锌在很大程度上阻断了镍、钴或镉对肝脏血红素加氧酶的诱导。这些发现表明存在金属-金属相互作用,其可极大地影响血红素降解限速酶血红素加氧酶诱导合成的调节机制。

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Metal induction of heme oxygenase.血红素加氧酶的金属诱导作用。
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