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常氧和低氧条件下褐鳟体内亚硝酸盐的代谢命运及影响:血液和组织中亚硝酸盐的代谢以及与鳃部一氧化氮合酶、钠钾ATP酶和热休克蛋白70表达的相互作用

Metabolic fates and effects of nitrite in brown trout under normoxic and hypoxic conditions: blood and tissue nitrite metabolism and interactions with branchial NOS, Na+/K+-ATPase and hsp70 expression.

作者信息

Jensen Frank B, Gerber Lucie, Hansen Marie N, Madsen Steffen S

机构信息

Department of Biology, University of Southern Denmark, Campusvej 55, Odense M DK-5230, Denmark

Department of Biology, University of Southern Denmark, Campusvej 55, Odense M DK-5230, Denmark.

出版信息

J Exp Biol. 2015 Jul;218(Pt 13):2015-22. doi: 10.1242/jeb.120394. Epub 2015 Apr 23.

Abstract

Nitrite secures essential nitric oxide (NO) bioavailability in hypoxia at low endogenous concentrations, whereas it becomes toxic at high concentrations. We exposed brown trout to normoxic and hypoxic water in the absence and presence of added ambient nitrite to decipher the cellular metabolism and effects of nitrite at basal and elevated concentrations under different oxygen regimes. We also tested hypotheses concerning the influence of nitrite on branchial nitric oxide synthase (NOS), Na(+)/K(+)-ATPase (nka) and heat shock protein (hsp70) mRNA expression. Basal plasma and erythrocyte nitrite levels were higher in hypoxia than normoxia, suggesting increased NOS activity. Nitrite exposure strongly elevated nitrite concentrations in plasma, erythrocytes, heart tissue and white muscle, which was associated with an extensive metabolism of nitrite to nitrate and to iron-nitrosylated and S-nitrosated compounds. Nitrite uptake was slightly higher in hypoxia than normoxia, and high internal nitrite levels extensively converted blood hemoglobin to methemoglobin and nitrosylhemoglobin. Hypoxia increased inducible NOS (iNOS) mRNA levels in the gills, which was overruled by a strong inhibition of iNOS expression by nitrite in both normoxia and hypoxia, suggesting negative-feedback regulation of iNOS gene expression by nitrite. A similar inhibition was absent for neuronal NOS. Branchial NKA activity stayed unchanged, but mRNA levels of the nkaα1a subunit increased with hypoxia and nitrite, which may have countered an initial NKA inhibition. Nitrite also increased hsp70 gene expression, probably contributing to the cytoprotective effects of nitrite at low concentrations. Nitrite displays a concentration-dependent switch between positive and negative effects similar to other signaling molecules.

摘要

在低内源性浓度下,亚硝酸盐可确保缺氧时一氧化氮(NO)的基本生物利用度,而在高浓度时则具有毒性。我们将褐鳟暴露于常氧和缺氧水中,分别在不存在和存在添加的环境亚硝酸盐的情况下,以解读不同氧状态下基础浓度和升高浓度的亚硝酸盐对细胞代谢的影响。我们还测试了有关亚硝酸盐对鳃一氧化氮合酶(NOS)、钠钾ATP酶(nka)和热休克蛋白(hsp70)mRNA表达影响的假设。缺氧时基础血浆和红细胞亚硝酸盐水平高于常氧,表明NOS活性增加。亚硝酸盐暴露使血浆、红细胞、心脏组织和白色肌肉中的亚硝酸盐浓度大幅升高,这与亚硝酸盐广泛代谢为硝酸盐以及铁亚硝基化和S亚硝基化化合物有关。缺氧时亚硝酸盐的摄取略高于常氧,高内部亚硝酸盐水平使血液中的血红蛋白广泛转化为高铁血红蛋白和亚硝基血红蛋白。缺氧增加了鳃中诱导型NOS(iNOS)的mRNA水平,但在常氧和缺氧条件下,亚硝酸盐均强烈抑制iNOS表达,这表明亚硝酸盐对iNOS基因表达具有负反馈调节作用。神经元NOS则不存在类似的抑制作用。鳃NKA活性保持不变,但nkaα1a亚基的mRNA水平随缺氧和亚硝酸盐而增加,这可能抵消了最初的NKA抑制作用。亚硝酸盐还增加了hsp70基因表达,这可能有助于低浓度亚硝酸盐的细胞保护作用。与其他信号分子类似,亚硝酸盐呈现出浓度依赖性的正负效应转换。

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