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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >CHANGES IN THE GLUTATHIONE LEVEL INDUCED BY TRANSPLASMA MEMBRANE ELECTRON TRANSPORT IN MAIZE (ZEA MAYS L)
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CHANGES IN THE GLUTATHIONE LEVEL INDUCED BY TRANSPLASMA MEMBRANE ELECTRON TRANSPORT IN MAIZE (ZEA MAYS L)

机译:玉米(小玉米)跨膜膜电子运输引起的谷胱甘肽水平的变化

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We investigated changes of thiols (GSH, GSSG, and cysteine) induced by transplasma membrane electron transport after addition of artificial electron accepters and the influence of the thiol level on redox activity. GSH, GSSG, and cysteine content of maize (Zea mays L, cv. Golden Bantam) roots and coleoptile segments was determined by high performance liquid chromatography with a fluorescence detector. GSSG increased after treatment with 0.8 mM diamide, an SH-group oxidizer. GSH level of roots increased after treatment with diamide, while GSH levels of coleoptiles decreased. Incubation of roots with the GSH biosynthesis inhibitor buthionine-D,L-sulfoximine for 6 days lowered the glutathione level up to 80%. However, the GSH/GSSG ratio of maize roots remained constant after treatment with both effecters. The GSH/GSSG ratio and the glutathione level were changed by addition of artificial electron accepters like hexacyanoferrate (III) or hexabromoiridate (IV), which do not permeate the plasma membrane. Hexacyanoferrate (III) reduction was inhibited up to 25% after the cellular glutathione level was lowered by treatment with diamide or buthionine-D,L-sulfoximine. Proton secretion induced by reduction of the electron accepters was not affected by both modulators. The change in glutathione level is different for roots and coleoptiles. Our data are discussed with regard to the role of GSH in electron donation for a plasma membrane bound electron transport system. [References: 67]
机译:我们研究了在添加人工电子受体后,质膜电子转运引起的硫醇(GSH,GSSG和半胱氨酸)的变化以及硫醇水平对氧化还原活性的影响。玉米(Zea mays L,cv。Golden Bantam)根和胚芽鞘节段的GSH,GSSG和半胱氨酸含量通过高效液相色谱仪和荧光检测器测定。用SH型氧化剂0.8 mM二酰胺处理后,GSSG升高。用二酰胺处理后,根部的谷胱甘肽水平升高,而胚芽鞘的谷胱甘肽水平降低。用GSH生物合成抑制剂buthionine-D,L-磺胺嘧啶孵育6天后,谷胱甘肽水平降低了80%。然而,用两种效应剂处理后,玉米根的GSH / GSSG比保持恒定。 GSH / GSSG比和谷胱甘肽水平通过添加不渗透质膜的人工电子受体(如六氰合铁酸酯(III)或六溴代异氰酸酯(IV))而改变。用二酰胺或丁硫氨酸-D,L-磺胺嘧啶处理可降低细胞内谷胱甘肽水平后,六价铁氰化物(III)的降低最多可抑制25%。由电子受体还原引起的质子分泌不受两种调节剂的影响。根和胚芽鞘中谷胱甘肽水平的变化是不同的。我们讨论了有关GSH在质膜结合电子传输系统的电子捐赠中的作用的数据。 [参考:67]

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