胞质谷胱甘肽二硫氧化物还原酶(硫转移酶)的鉴定和部分纯化

Mary Y. Lorenson, Laurence S. Jacobs
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引用次数: 4

摘要

谷胱甘肽依赖的硫转移酶(硫醇:二硫氧化物还原酶)已从垂体前细胞质中部分纯化(70倍),并进行了表征。采用差速离心、30 - 60% (NH4)2SO4沉淀、Sepharose 6B、DEAE-cellulose和CM-cellulose序层析进行纯化。通过凝胶过滤和SDS中聚丙烯酰胺凝胶电泳检测,NADPH消失的酶活性与分子量为17000的蛋白相关。凝胶过滤后存在明显的电荷不均一性,cm -纤维素上仅进一步纯化了deae -纤维素的主峰。当sds -聚丙烯酰胺凝胶电泳在巯基乙醇的存在下进行时,在没有巯基乙醇的情况下看到的两个主要条带被转化为五个主要条带,所有的表观分子量都与原始的不同。等电聚焦产生了两个主要的酶活性峰,在pI 7.0和pI 4.5-5.0。这些峰在再电聚焦时是可互换的。低分子量和高分子量的二硫化物都可以被还原。最适pH值为8.2。谷胱甘肽和胱氨酸(标准测定二硫)的Km值分别为0.57和0.062 mM,均存在其他底物的饱和浓度。0.1 mM和1.0 mM的n-乙基马来酰亚胺非竞争性地抑制酶活性,表明酶硫醇(s)对维持最佳活性起非催化作用。
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Characterization and partial purification of a cytoplasmic glutathione : disulfide oxidoreductase (thioltransferase) from adenohypophysis

A glutathione-dependent thioltransferase (thiol : disulfide oxidoreductase) has been partially purified (70-fold) from anterior pituitary cytosol, and characterized. Purification was effected by differential centrifugation, precipitation between 30 and 60% (NH4)2SO4, and sequential chromatography on Sepharose 6B, DEAE-cellulose, and CM-cellulose. Enzyme activity, monitored by the disappearance of NADPH, was associated with a protein of molecular weight 170 000 both by gel filtration and by polyacrylamide gel electrophoresis in SDS. There was apparent charge heterogeneity after the gel filtration step, and only the major DEAE-cellulose peak was further purified on CM-cellulose. When SDS-polyacrylamide gel electrophoresis was carried out in the presence of mercaptoethanol, the two predominant bands seen in its absence were converted to five major bands, all of different apparent molecular weights from the originals. Isoelectric focusing yielded two major peaks of enzyme activity, at pI 7.0 and pI 4.5–5.0. These peaks were shown to be interconvertible upon reelectrofocusing. Both low- and high-molecular weight disulfides could be reduced. The pH optimum was sharp, at pH 8.2. The Km values for glutathione and cystine (the standard assay disulfide) were 0.57 and 0.062 mM, respectively, each in the presence of saturating concentrations of the other substrate. N-Ethylmaleimide at 0.1 and 1.0 mM inhibited enzyme activity non-competitively, suggesting a non-catalytic role of enzyme thiol(s) for maintenance of optimal activity.

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