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酿酒酵母中血红素加氧酶同源物HMX1对细胞内血红素水平的调控

Regulation of intracellular heme levels by HMX1, a homologue of heme oxygenase, in Saccharomyces cerevisiae.

作者信息

Protchenko Olga, Philpott Caroline C

机构信息

Liver Diseases Section, NIDDK, National Institutes of Health, Bethesda, Maryland 20892-1800, USA.

出版信息

J Biol Chem. 2003 Sep 19;278(38):36582-7. doi: 10.1074/jbc.M306584200. Epub 2003 Jul 2.

Abstract

Saccharomyces cerevisiae responds to iron deprivation by increasing the transcription of genes involved in the uptake of environmental iron and in the mobilization of vacuolar iron stores. HMX1 is also transcribed under conditions of iron deprivation and is under the control of the major iron-dependent transcription factor, Aft1p. Although Hmx1p exhibits limited homology to heme oxygenases, it has not been shown to be enzymatically active. We find that Hmx1p is a resident protein of the endoplasmic reticulum and that isolated yeast membranes contain a heme degradation activity that is dependent on HMX1. Hmx1p facilitates the capacity of cells to use heme as a nutritional iron source. Deletion of HMX1 leads to defects in iron accumulation and to expansion of intracellular heme pools. These alterations in the regulatory pools of iron lead to activation of Aft1p and inappropriate activation of heme-dependent transcription factors. Expression of HmuO, the heme oxygenase from Corynebacterium diphtheriae, restores iron and heme levels, as well as Aft1p- and heme-dependent transcriptional activities, to those of wild type cells, indicating that the heme degradation activity associated with Hmx1p is important in mediating iron and heme homeostasis. Hmx1p promotes both the reutilization of heme iron and the regulation of heme-dependent transcription during periods of iron scarcity.

摘要

酿酒酵母通过增加参与环境铁摄取和液泡铁储存动员的基因转录来应对铁缺乏。HMX1在铁缺乏条件下也会转录,并且受主要的铁依赖性转录因子Aft1p的控制。尽管Hmx1p与血红素加氧酶的同源性有限,但尚未证明其具有酶活性。我们发现Hmx1p是内质网的驻留蛋白,并且分离的酵母膜含有依赖于HMX1的血红素降解活性。Hmx1p促进细胞利用血红素作为营养铁源的能力。HMX1的缺失导致铁积累缺陷和细胞内血红素池扩大。这些铁调节池的改变导致Aft1p的激活和血红素依赖性转录因子的不适当激活。来自白喉棒状杆菌的血红素加氧酶HmuO的表达将铁和血红素水平以及Aft1p和血红素依赖性转录活性恢复到野生型细胞的水平,表明与Hmx1p相关的血红素降解活性在介导铁和血红素稳态中很重要。在铁缺乏期间,Hmx1p既促进血红素铁的再利用,又促进血红素依赖性转录的调节。

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