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Heat-Shock and Redox-Dependent Functional Switching of an h-Type Arabidopsis Thioredoxin from a Disulfide Reductase to a Molecular Chaperone

机译:h型拟南芥硫氧还蛋白从二硫键还原酶到分子伴侣的热休克和氧化还原依赖性功能转换。

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摘要

A large number of thioredoxins (Trxs), small redox proteins, have been identified from all living organisms. However, many of the physiological roles played by these proteins remain to be elucidated. We isolated a high Mr (HMW) form of h-type Trx from the heat-treated cytosolic extracts of Arabidopsis (Arabidopsis thaliana) suspension cells and designated it as AtTrx-h3. Using bacterially expressed recombinant AtTrx-h3, we find that it forms various protein structures ranging from low and oligomeric protein species to HMW complexes. And the AtTrx-h3 performs dual functions, acting as a disulfide reductase and as a molecular chaperone, which are closely associated with its molecular structures. The disulfide reductase function is observed predominantly in the low Mr forms, whereas the chaperone function predominates in the HMW complexes. The multimeric structures of AtTrx-h3 are regulated not only by heat shock but also by redox status. Two active cysteine residues in AtTrx-h3 are required for disulfide reductase activity, but not for chaperone function. AtTrx-h3 confers enhanced heat-shock tolerance in Arabidopsis, primarily through its chaperone function.
机译:从所有活生物体中都鉴定出大量的硫氧还蛋白(Trxs),即小的氧化还原蛋白。然而,这些蛋白质发挥的许多生理作用仍有待阐明。我们从经过热处理的拟南芥(Arabidopsis thaliana)悬浮细胞的胞质提取物中分离出了高Mr(HMW)形式的h型Trx,并将其命名为AtTrx-h3。使用细菌表达的重组AtTrx-h3,我们发现它形成了各种蛋白质结构,范围从低和低聚蛋白质种类到HMW复合物。 AtTrx-h3具有双重功能,即充当二硫键还原酶和充当分子伴侣,这与其分子结构密切相关。二硫化物还原酶功能主要以低Mr形式观察到,而伴侣功能在HMW配合物中占主导地位。 AtTrx-h3的多聚体结构不仅受到热冲击的调节,还受到氧化还原状态的调节。 AtTrx-h3中的两个活性半胱氨酸残基对于二硫键还原酶活性是必需的,但对于伴侣功能则不是。 AtTrx-h3主要通过其伴侣功能赋予拟南芥增强的抗热震性。

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