Literature DB >> 11171119

Nitric oxide-dependent pro-oxidant and pro-apoptotic effect of metallothioneins in HL-60 cells challenged with cupric nitrilotriacetate.

S Liu1, K Kawai, V A Tyurin, Y Y Tyurina, G G Borisenko, J P Fabisiak, P J Quinn, B R Pitt, V E Kagan.   

Abstract

Intracellular safeguarding functions of metallothioneins (MTs) include sequestering transition and heavy metals, scavenging free radicals and protecting against electrophiles. We report that MT protection against Cu-induced cytotoxicity can be reversed and pro-oxidant and pro-apoptotic effects can be induced in HL-60 cells exposed to NO. We demonstrate that in ZnCl(2)-pretreated HL-60 cells loaded with copper nitrilotriacetate (Cu-NTA), exposure to an NO donor, S-nitroso-N-acetyl penicillamine, resulted in S-nitrosylation and oxidation of MT cysteines. This disruption of MT Cu-binding thiolate clusters caused loosening and release of redox-active Cu, enhanced redox-cycling activity of Cu and increased peroxidation of major classes of membrane phospholipids. We also found that Cu-induced oxidative stress in ZnCl(2)-pretreated/Cu-NTA-loaded HL-60 cells was accompanied by apoptosis documented by characteristic changes of nuclear morphology, internucleosomal DNA cleavage, externalization of phosphatidylserine, release of cytochrome c from mitochondria into cytosol and activation of caspase-3. We conclude that in Cu-challenged cells, NO can reverse the protective role of MTs and convert them into pro-oxidant, pro-apoptotic implements.

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Year:  2001        PMID: 11171119      PMCID: PMC1221668          DOI: 10.1042/0264-6021:3540397

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  48 in total

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3.  Evidence that nitric oxide enhances cadmium toxicity by displacing the metal from metallothionein.

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4.  A combinatorial approach defines specificities of members of the caspase family and granzyme B. Functional relationships established for key mediators of apoptosis.

Authors:  N A Thornberry; T A Rano; E P Peterson; D M Rasper; T Timkey; M Garcia-Calvo; V M Houtzager; P A Nordstrom; S Roy; J P Vaillancourt; K T Chapman; D W Nicholson
Journal:  J Biol Chem       Date:  1997-07-18       Impact factor: 5.157

5.  Induction of renal cell carcinoma in male Wistar rats treated with cupric nitrilotriacetate.

Authors:  S Toyokuni; T Tanaka; Y Nishiyama; K Okamoto; Y Nakashima; S Hamazaki; S Okada; H Hiai
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6.  Stoichiometry and cluster specificity of copper binding to metallothionein: homogeneous metal clusters.

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7.  Bcl-2 inhibits selective oxidation and externalization of phosphatidylserine during paraquat-induced apoptosis.

Authors:  J P Fabisiak; V E Kagan; V B Ritov; D E Johnson; J S Lazo
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8.  Convenient colorimetric and fluorometric assays for S-nitrosothiols.

Authors:  J A Cook; S Y Kim; D Teague; M C Krishna; R Pacelli; J B Mitchell; Y Vodovotz; R W Nims; D Christodoulou; A M Miles; M B Grisham; D A Wink
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9.  Suppression of apoptosis by nitric oxide via inhibition of interleukin-1beta-converting enzyme (ICE)-like and cysteine protease protein (CPP)-32-like proteases.

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10.  Copper chelation-induced reduction of the biological activity of S-nitrosothiols.

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  8 in total

1.  Unraveling the response of plant cells to cytotoxic saponins: role of metallothionein and nitric oxide.

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2.  Maternal and fetal oxidative stress and intrapartum term fever.

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Review 4.  Nitric oxide and zinc homeostasis in acute lung injury.

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6.  Regulation of zinc homeostasis by inducible NO synthase-derived NO: nuclear metallothionein translocation and intranuclear Zn2+ release.

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7.  A simultaneous release of SOD1 with cytochrome c regulates mitochondria-dependent apoptosis.

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Review 8.  All Roads Lead to Auxin: Post-translational Regulation of Auxin Transport by Multiple Hormonal Pathways.

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  8 in total

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