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粗糙脉孢菌分生孢子在萌发和老化过程中谷胱甘肽硫醇-二硫键状态的变化。

Changes in the glutathione thiol-disulfide status of Neurospora crassa conidia during germination and aging.

作者信息

Fahey R C, Brody S, Mikolajczyk S D

出版信息

J Bacteriol. 1975 Jan;121(1):144-51. doi: 10.1128/jb.121.1.144-151.1975.

Abstract

Improved methods were developed for the determination of reduced glutathione (GSH), glutathione disulfide (GSSG), and protein-glutathione disulfide (PSSG) and applied to determine the glutathione status at various stages of the asexual life cycle for the band strain of Neurospora crassa. The GSH-GSSG ratio in freshly harvested dry conidia was found to be about 150 but decreased to around 6 when dryconidia were aged (stored) for 10 days after harvest. When conidia were germinated, this ratio increased to about 300 during the first 10 min of the 6-h germination process. In mycelia, during log-phase growth, the ratio was about 10-3. Changes in the ratio occurred primarily through changes in the GSSG content, which ranges from about 0.023 (mycelia) to 2(10-day aged conidia) mumol per g (dry weight) of residue, whereas GSH levels varied by a factor of about two. The PSSG content varied from 0.02 (mycelia) to 0.6 (10-day aged conidia) mumol per g (dry weight) of residue and generally paralleled the GSSG content. The results demonstrate the potential importance of thiol-disulfide reactions as a mechanism for the control of physiological properties associated with dormancy, and the observed changes in GSSG level are found to be compatible with the view that GSSG plays a role in the regulation of protein synthesis through control of polysome formation.

摘要

已开发出改进方法用于测定还原型谷胱甘肽(GSH)、氧化型谷胱甘肽(GSSG)和蛋白质 - 谷胱甘肽二硫化物(PSSG),并将其应用于确定粗糙脉孢菌带型菌株无性生命周期不同阶段的谷胱甘肽状态。发现刚收获的干燥分生孢子中的GSH - GSSG比值约为150,但收获后干燥分生孢子老化(储存)10天后该比值降至约6。当分生孢子萌发时,在6小时萌发过程的最初10分钟内该比值增加到约300。在菌丝体的对数生长期,该比值约为10 - 3。该比值的变化主要通过GSSG含量的变化发生,GSSG含量范围从约0.023(菌丝体)到2(老化10天的分生孢子)μmol每克(干重)残渣,而GSH水平变化约两倍。PSSG含量从0.02(菌丝体)到0.6(老化10天的分生孢子)μmol每克(干重)残渣,并且通常与GSSG含量平行。结果表明硫醇 - 二硫化物反应作为控制与休眠相关生理特性的机制具有潜在重要性,并且观察到的GSSG水平变化与GSSG通过控制多核糖体形成在蛋白质合成调节中起作用的观点一致。

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