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从S-己基谷胱甘肽-琼脂糖亲和基质中选择性洗脱啮齿动物谷胱甘肽S-转移酶和乙二醛酶I 。

Selective elution of rodent glutathione S-transferases and glyoxalase I from the S-hexyglutathione-Sepharose affinity matrix.

作者信息

Hayes J D

机构信息

University of Edinburgh, Department of Clinical Chemistry, Scotland, U.K.

出版信息

Biochem J. 1988 Nov 1;255(3):913-22. doi: 10.1042/bj2550913.

Abstract
  1. The major hepatic glutathione S-transferases (GSTs) from gerbil, guinea-pig, hamster, mouse and rat comprise Ya- (Mr 25,500-25,800), Yb- (Mr 26,100-26,400), Yc- (Mr 27,000-27,500) and Yf- (Mr 24,800) type subunits. 2. In all rodent species the GST subunits possess characteristic affinities for S-hexyglutathione-Sepharose and are eluted at distinct positions when a gradient of counter-ligand is employed to develop this affinity gel. The enzymes that bind to this matrix can be eluted, according to their subunit composition, in the order Ya-, Yc-, Yf- and Yb-containing GST; glyoxalase I, also retained by S-hexylglutathione-Sepharose, is eluted after the major GST YbYb peak. 3. Conditions are also described for the isocratic affinity elution of S-hexylglutathione-Sepharose that allow rat GST to be divided into four separate fractions (pools 1-4). A further fraction (pool 5) can be prepared from material that does not bind S-hexylglutathione-Sepharose and is obtained by chromatography on glutathione-Sepharose. 4. The sequential use of S-hexylglutathione-Sepharose and glutathione-Sepharose has facilitated the isolation of novel GSTs by enriching the various affinity-purified fractions with different subunits. This strategy allowed the Yk (Mr 25,000) and Yo (Mr 26,500) subunits from rat testis as well as Y1 (Mr 25,700) from rat kidney to be rapidly purified. 5. The binding properties of GST subunits for S-hexylglutathione-Sepharose have been compared with their Km values for GSH. The elution order from this matrix is inversely related to the Km value. The GSTs that do not bind to S-hexylglutathione-Sepharose have considerably higher Km values for GSH (i.e. greater than 2.0 mM) than do those enzymes that readily bind to the affinity gel (i.e. 0.13-0.77 mM). GST YkYk and YoYo, which have weak affinities for S-hexylglutathione-Sepharose, possess intermediate Km values for GSH of 1.0 and 1.2 mM respectively.
摘要
  1. 沙鼠、豚鼠、仓鼠、小鼠和大鼠的主要肝脏谷胱甘肽S-转移酶(GSTs)由Ya-(分子量25,500 - 25,800)、Yb-(分子量26,100 - 26,400)、Yc-(分子量27,000 - 27,500)和Yf-(分子量24,800)型亚基组成。2. 在所有啮齿动物物种中,GST亚基对S-己基谷胱甘肽-琼脂糖具有特征性亲和力,当采用反配体梯度来展开这种亲和凝胶时,它们会在不同位置被洗脱。结合到该基质上的酶可以根据其亚基组成按含Ya-、Yc-、Yf-和Yb-的GST的顺序被洗脱;乙二醛酶I也被S-己基谷胱甘肽-琼脂糖保留,在主要的GST YbYb峰之后被洗脱。3. 还描述了S-己基谷胱甘肽-琼脂糖等度亲和洗脱的条件,这些条件可使大鼠GST分为四个单独的部分(组分1 - 4)。另一个部分(组分5)可以从不结合S-己基谷胱甘肽-琼脂糖的物质中制备,该物质通过在谷胱甘肽-琼脂糖上进行色谱分离获得。4. 依次使用S-己基谷胱甘肽-琼脂糖和谷胱甘肽-琼脂糖,通过用不同亚基富集各种亲和纯化的部分,促进了新型GSTs的分离。这种策略使得能够快速纯化大鼠睾丸中的Yk(分子量25,000)和Yo(分子量26,500)亚基以及大鼠肾脏中的Y1(分子量25,�00)。5. 已将GST亚基对S-己基谷胱甘肽-琼脂糖的结合特性与其对谷胱甘肽(GSH)的Km值进行了比较。从该基质上的洗脱顺序与Km值呈负相关。不结合S-己基谷胱甘肽-琼脂糖的GSTs对GSH的Km值(即大于2.0 mM)比那些容易结合到亲和凝胶上的酶(即0.13 - 0.77 mM)高得多。GST YkYk和YoYo对S-己基谷胱甘肽-琼脂糖具有弱亲和力,它们对GSH的Km值分别为1.0和1.2 mM,处于中间水平。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9208/1135328/946d2a8cbaae/biochemj00220-0167-a.jpg

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