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硒化合物对蛋白质中锌/硫配位位点的催化氧化作用。

Catalytic oxidation of zinc/sulfur coordination sites in proteins by selenium compounds.

作者信息

Chen Y, Maret W

机构信息

Center for Biochemical and Biophysical Sciences and Medicine, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Antioxid Redox Signal. 2001 Aug;3(4):651-6. doi: 10.1089/15230860152542998.

DOI:10.1089/15230860152542998
PMID:11554451
Abstract

Zinc/thiolate (cysteine) coordination occurs in a very large number of proteins. These coordination sites are thermodynamically quite stable. Yet the redox chemistry of thiolate ligands confers extraordinary reactivities on these sites. The significance of such ligand-centered reactions is that they affect the binding and release of zinc, thus helping to distribute zinc, and perhaps controlling zinc-dependent cellular events. One new aspect focuses on the thiolate ligands of zinc as targets for the redox action of selenium compounds. A distinctive feature of this chemistry is the capacity of selenols to catalyze the oxidation of zinc/thiolate sites. We here use a chromophoric compound, 2-nitrophenylselenocyanate, to investigate its reaction mechanism with the zinc/thiolate clusters of metallothionein, a protein that is a cellular reservoir for zinc and together with its apoprotein, thionein, is involved in zinc distribution as a zinc donor/acceptor pair. The reaction is particularly revealing as it occurs in two steps. A selenenylsulfide intermediate is formed in the fast oxidative step, followed by the generation of 2-nitrophenylselenol that initiates the second, catalytic step. The findings demonstrate the high reactivity of selenium compounds with zinc/thiolate coordination sites and the potent catalytic roles that selenoproteins and selenium redox drugs may have in affecting gene expression via modulation of the zinc content of zinc finger proteins.

摘要

锌/硫醇盐(半胱氨酸)配位存在于大量蛋白质中。这些配位位点在热力学上相当稳定。然而,硫醇盐配体的氧化还原化学赋予了这些位点非凡的反应活性。这种以配体为中心的反应的意义在于它们影响锌的结合和释放,从而有助于锌的分布,并可能控制锌依赖性细胞事件。一个新的方面聚焦于锌的硫醇盐配体作为硒化合物氧化还原作用的靶点。这种化学的一个显著特征是硒醇能够催化锌/硫醇盐位点的氧化。我们在此使用一种发色化合物2-硝基苯硒氰酸酯来研究其与金属硫蛋白的锌/硫醇盐簇的反应机制,金属硫蛋白是一种细胞内锌的储存库,并且与其脱辅基蛋白硫蛋白一起作为锌供体/受体对参与锌的分布。该反应特别具有启发性,因为它分两步进行。在快速氧化步骤中形成硒代硫醚中间体,随后生成2-硝基苯硒醇,从而引发第二步催化反应。这些发现证明了硒化合物与锌/硫醇盐配位位点具有高反应活性,以及硒蛋白和硒氧化还原药物可能通过调节锌指蛋白的锌含量在影响基因表达方面具有强大的催化作用。

相似文献

1
Catalytic oxidation of zinc/sulfur coordination sites in proteins by selenium compounds.硒化合物对蛋白质中锌/硫配位位点的催化氧化作用。
Antioxid Redox Signal. 2001 Aug;3(4):651-6. doi: 10.1089/15230860152542998.
2
Catalytic selenols couple the redox cycles of metallothionein and glutathione.催化性硒醇连接金属硫蛋白和谷胱甘肽的氧化还原循环。
Eur J Biochem. 2001 Jun;268(11):3346-53. doi: 10.1046/j.1432-1327.2001.02250.x.
3
Selenium redox biochemistry of zinc-sulfur coordination sites in proteins and enzymes.蛋白质和酶中锌-硫配位位点的硒氧化还原生物化学
Proc Natl Acad Sci U S A. 1999 Mar 2;96(5):1910-4. doi: 10.1073/pnas.96.5.1910.
4
Thiolate ligands in metallothionein confer redox activity on zinc clusters.金属硫蛋白中的硫醇盐配体赋予锌簇氧化还原活性。
Proc Natl Acad Sci U S A. 1998 Mar 31;95(7):3478-82. doi: 10.1073/pnas.95.7.3478.
5
Ebselen, a selenium-containing redox drug, releases zinc from metallothionein.依布硒啉,一种含硒的氧化还原药物,可从金属硫蛋白中释放锌。
Biochem Biophys Res Commun. 1998 Jul 30;248(3):569-73. doi: 10.1006/bbrc.1998.9026.
6
The zinc/thiolate redox biochemistry of metallothionein and the control of zinc ion fluctuations in cell signaling.金属硫蛋白的锌/硫醇盐氧化还原生物化学与细胞信号传导中锌离子波动的控制。
Arch Biochem Biophys. 2007 Jul 15;463(2):188-200. doi: 10.1016/j.abb.2007.02.017. Epub 2007 Mar 7.
7
A differential assay for the reduced and oxidized states of metallothionein and thionein.一种针对金属硫蛋白和硫蛋白还原态与氧化态的差异分析方法。
Anal Biochem. 2004 Oct 1;333(1):19-26. doi: 10.1016/j.ab.2004.04.039.
8
The function of zinc metallothionein: a link between cellular zinc and redox state.锌金属硫蛋白的功能:细胞锌与氧化还原状态之间的联系。
J Nutr. 2000 May;130(5S Suppl):1455S-8S. doi: 10.1093/jn/130.5.1455S.
9
Dual nanomolar and picomolar Zn(II) binding properties of metallothionein.金属硫蛋白的双纳摩尔和皮摩尔锌(II)结合特性
J Am Chem Soc. 2007 Sep 5;129(35):10911-21. doi: 10.1021/ja071979s. Epub 2007 Aug 14.
10
Cellular zinc and redox states converge in the metallothionein/thionein pair.细胞锌和氧化还原状态在金属硫蛋白/硫蛋白对中趋同。
J Nutr. 2003 May;133(5 Suppl 1):1460S-2S. doi: 10.1093/jn/133.5.1460S.

引用本文的文献

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Differentiated Zn(II) binding affinities in animal, plant, and bacterial metallothioneins define their zinc buffering capacity at physiological pZn.动物、植物和细菌金属硫蛋白中不同的锌(II)结合亲和力在生理 pZn 下定义了它们的锌缓冲能力。
Metallomics. 2023 Oct 4;15(10). doi: 10.1093/mtomcs/mfad061.
2
Redox biochemistry of mammalian metallothioneins.哺乳动物金属硫蛋白的氧化还原生物化学。
J Biol Inorg Chem. 2011 Oct;16(7):1079-86. doi: 10.1007/s00775-011-0800-0. Epub 2011 Jun 7.