首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Regulation of zinc homeostasis by inducible NO synthase-derived NO: Nuclear metallothionein translocation and intranuclear Zn~(2+) release
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Regulation of zinc homeostasis by inducible NO synthase-derived NO: Nuclear metallothionein translocation and intranuclear Zn~(2+) release

机译:诱导型NO合酶衍生的NO对锌稳态的调节:核金属硫蛋白移位和核内Zn〜(2+)释放

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Zn~(2+) is critical for the functional and structural integrity of cells and contributes to a number of important processes including gene expression. It has been shown that NO exogenously applied via NO donors resulting in nitrosative stress leads to cytoplasmic Zn~(2+) release from the zinc storing protein metallothionein (MT) and probably other proteins that complex Zn~(2+) via cysteine thiols. We show here that, in cytokine-activated murine aortic endothelial cells, NO derived from the inducible NO synthase (iNOS) induces a transient nuclear release of Zn~(2+). This nuclear Zn~(2+) release depends on the presence of MT as shown by the lack of this effect in activated endothelial cells from MT-deficient mice and temporally correlates with nuclear MT translocation. Data also show that NO is an essential but not sufficient signal for MT-mediated Zn~(2+) trafficking from the cytoplasm into the nucleus. In addition, we found that, endogenously via iNOS, synthesized NO increases the constitutive mRNA expression of both MT-1 and MT-2 genes and that nitrosative stress exogenously applied via an NO donor increases constitutive MT mRNA expression via intracellular Zn~(2+) release. In conclusion, we here provide evidence for a signaling mechanism based on iNOS-derived NO through the regulation of intracellular Zn~(2+) trafficking and homeostasis.
机译:Zn〜(2+)对于细胞的功能和结构完整性至关重要,并有助于许多重要的过程,包括基因表达。已经表明,通过NO供体外源施加的NO导致亚硝化胁迫导致细胞质的Zn〜(2+)从贮锌蛋白金属硫蛋白(MT)以及可能通过半胱氨酸硫醇络合Zn〜(2+)的其他蛋白中释放出来。我们在这里显示,在细胞因子激活的鼠主动脉内皮细胞中,源自诱导型一氧化氮合酶(iNOS)的一氧化氮诱导Zn〜(2+)的瞬时核释放。 Zn〜(2+)的这种核释放取决于MT的存在,如MT缺陷小鼠的活化内皮细胞缺乏这种作用所显示的,并且在时间上与核MT的转运有关。数据还表明,对于从细胞质到细胞核的MT介导的Zn〜(2+)转运,NO是必需的但不是足够的信号。此外,我们发现,通过iNOS内源性合成的NO增加了MT-1和MT-2基因的组成型mRNA表达,而通过NO供体外源施加的亚硝化应激通过细胞内Zn〜(2+ ) 释放。总而言之,我们在此提供了基于iNOS衍生的NO通过调节细胞内Zn〜(2+)转运和稳态的信号传导机制的证据。

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