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细胞壁中的γ-谷氨酰转移酶参与从根质外体中回收细胞外谷胱甘肽。

Gamma-glutamyl transferase in the cell wall participates in extracellular glutathione salvage from the root apoplast.

作者信息

Ferretti M, Destro T, Tosatto S C E, La Rocca N, Rascio N, Masi A

机构信息

Department of Agricultural Biotechnology, University of Padova, Viale dell'Universita' 16, I-35020 Legnaro (PD), Italy;Department of Biology, University of Padova, Via Trieste 75, I-35100 Padova, Italy;CRIBI Biotech Centre, University of Padova, Via Trieste 75, I-35100 Padova, Italy.

出版信息

New Phytol. 2009;181(1):115-126. doi: 10.1111/j.1469-8137.2008.02653.x.

Abstract

The molecular properties and subcellular location of bound gamma-glutamyl transferase (GGT) were studied, and an experimental setup devised to assess its functions in barley roots. Enzyme histochemistry was used to detect GGT activity at tissue level; immunocytochemistry to localize the protein at subcellular level; and modelling studies to investigate its surface charge properties. GGT activity in vivo was measured for the first time. Functions were explored by applying chemical treatments with inhibitors and the thiol-oxidizing drug diamide, performing time-course chromatographic and spectrophotometric analyses on low-molecular-weight thiols. Gamma-glutamyl transferase activity was found to be high in the root apical region and the protein was anchored to root cell wall components, probably by basic amino acid residues. The results show that GGT is essential to the recovery of apoplastic glutathione provided exogenously or extruded by oxidative treatment. It is demonstrated that GGT activity helps to salvage extracellular glutathione and may contribute to redox control of the extracellular environment, thus providing evidence of a functional role for gamma-glutamyl cycle in roots.

摘要

研究了结合型γ-谷氨酰转移酶(GGT)的分子特性和亚细胞定位,并设计了一个实验装置来评估其在大麦根中的功能。酶组织化学用于在组织水平检测GGT活性;免疫细胞化学用于在亚细胞水平定位该蛋白;模型研究用于探究其表面电荷特性首次在体内测量了GGT活性。通过使用抑制剂和硫醇氧化药物二酰胺进行化学处理,对低分子量硫醇进行时间进程色谱和分光光度分析来探索其功能。发现γ-谷氨酰转移酶活性在根尖区域较高,并且该蛋白可能通过碱性氨基酸残基锚定在根细胞壁成分上。结果表明,GGT对于外源提供或通过氧化处理挤出的质外体谷胱甘肽的恢复至关重要。已证明GGT活性有助于挽救细胞外谷胱甘肽,并可能有助于细胞外环境的氧化还原控制,从而为根中γ-谷氨酰循环的功能作用提供了证据。

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