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酵母黄素血红蛋白,一种一氧化氮氧化还原酶,存在于细胞质和线粒体基质中:呼吸作用、缺氧及线粒体基因组对其细胞内水平和分布的影响。

Yeast flavohemoglobin, a nitric oxide oxidoreductase, is located in both the cytosol and the mitochondrial matrix: effects of respiration, anoxia, and the mitochondrial genome on its intracellular level and distribution.

作者信息

Cassanova Nina, O'Brien Kristin M, Stahl Brett T, McClure Travis, Poyton Robert O

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado 80309-0347, USA.

出版信息

J Biol Chem. 2005 Mar 4;280(9):7645-53. doi: 10.1074/jbc.M411478200. Epub 2004 Dec 20.

Abstract

Yeast flavohemoglobin, YHb, encoded by the nuclear gene YHB1, has been implicated in both the oxidative and nitrosative stress responses in Saccharomyces cerevisiae. Previous studies have shown that the expression of YHB1 is optimal under normoxic or hyperoxic conditions, yet respiring yeast cells have low levels of reduced YHb pigment as detected by carbon monoxide (CO) photolysis difference spectroscopy of glucose-reduced cells. Here, we have addressed this apparent discrepancy by determining the intracellular location of the YHb protein and analyzing the relationships between respiration, YHb level, and intracellular location. We have found that although intact respiration-proficient cells lack a YHb CO spectral signature, cell extracts from these cells have both a YHb CO spectral signature and nitric oxide (NO) consuming activity. This suggests either that YHb cannot be reduced in vivo or that YHb heme is maintained in an oxidized state in respiring cells. By using an anti-YHb antibody and CO difference spectroscopy and by measuring NO consumption, we have found that YHb localizes to two distinct intracellular compartments in respiring cells, the mitochondrial matrix and the cytosol. Moreover, we have found that the distribution of YHb between these two compartments is affected by the presence or absence of oxygen and by the mitochondrial genome. The findings suggest that YHb functions in oxidative stress indirectly by consuming NO, which inhibits mitochondrial respiration and leads to enhanced production of reactive oxygen species, and that cells can regulate intracellular distribution of YHb in accordance with this function.

摘要

由核基因YHB1编码的酵母黄素血红蛋白YHb,参与了酿酒酵母的氧化应激和亚硝化应激反应。先前的研究表明,YHB1的表达在常氧或高氧条件下最为适宜,然而,通过对葡萄糖还原细胞进行一氧化碳(CO)光解差光谱检测发现,进行呼吸作用的酵母细胞中还原型YHb色素的水平较低。在此,我们通过确定YHb蛋白的细胞内定位,并分析呼吸作用、YHb水平和细胞内定位之间的关系,解决了这一明显的差异。我们发现,虽然完整的呼吸功能正常细胞缺乏YHb CO光谱特征,但这些细胞的提取物既有YHb CO光谱特征,又有一氧化氮(NO)消耗活性。这表明要么YHb在体内无法被还原,要么YHb血红素在进行呼吸作用的细胞中保持氧化状态。通过使用抗YHb抗体和CO差光谱,并测量NO消耗,我们发现YHb定位于进行呼吸作用的细胞中的两个不同细胞内区室,即线粒体基质和细胞质溶胶。此外,我们发现这两个区室之间YHb的分布受氧气的存在与否以及线粒体基因组的影响。这些发现表明,YHb通过消耗NO间接发挥氧化应激作用,NO会抑制线粒体呼吸并导致活性氧生成增加,并且细胞可以根据这一功能调节YHb在细胞内的分布。

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