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谷胱甘肽S-转移酶 Ya和Yb亚基类结合位点的比较:谷胱甘肽对胆汁酸结合的影响。

Comparison of the binding sites of GSH S-transferases of the Ya- and Yb-subunit classes: effect of glutathione on the binding of bile acids.

作者信息

Takikawa H, Kaplowitz N

机构信息

Liver Research Laboratory, Wadsworth Veterans Administration Hospital Center, Los Angeles, CA 90073.

出版信息

J Lipid Res. 1988 Mar;29(3):279-86.

PMID:3379340
Abstract

We have previously observed that the Ya subunit-containing glutathione (GSH) S-transferases from rat liver exhibit a common high affinity binding site for lithocholic acid, bilirubin, and sulfobromophthalein (BSP) (1984. J. Lipid Res. 25: 1177-1183). Subsequently we found that cholic acid and its amidates bound to a site on the Ya subunit separate for the lithocholic acid/bilirubin site (1986. J. Lipid Res. 27: 955-966). We now have extended this work by showing that amidates of lithocholic acid as well as chenodeoxycholic acid and its amidates competitively displace [14C]lithocholic acid from the Ya subunit. GSH did not inhibit binding of any of the ligands to the high affinity Ya site, but did inhibit binding to the cholic acid site on the Ya subunit. We have also defined the binding sites and effects of GSH on the Yb class of subunits. Lithocholic, chenodeoxycholic, and cholic acids (and amidates) shared a common site on the Yb or Y'b subunit, whereas BSP and bilirubin were bound at a different site. Both the bile acid and organic anion sites on the Yb subunit were inhibited by GSH. The inhibition by GSH in all cases (Ya cholic acid site or Yb bile acid or bilirubin sites) was saturable, of the competitive type, and incomplete at maximal GSH concentrations, suggesting that when GSH binds to its distinct substrate site, it induces a conformational change in the proteins affecting the other binding sites.

摘要

我们之前观察到,大鼠肝脏中含γ亚基的谷胱甘肽(GSH)S-转移酶对石胆酸、胆红素和磺溴酞钠(BSP)表现出共同的高亲和力结合位点(1984年。《脂质研究杂志》25: 1177 - 1183)。随后我们发现,胆酸及其酰胺类与γ亚基上的一个位点结合,该位点与石胆酸/胆红素位点不同(1986年。《脂质研究杂志》27: 955 - 966)。我们现在扩展了这项工作,表明石胆酸的酰胺类以及鹅去氧胆酸及其酰胺类能从γ亚基上竞争性取代[14C]石胆酸。谷胱甘肽不抑制任何一种配体与高亲和力γ位点的结合,但确实抑制其与γ亚基上胆酸位点的结合。我们还确定了谷胱甘肽对β类亚基的结合位点及影响。石胆酸、鹅去氧胆酸和胆酸(及其酰胺类)在β或β'亚基上共享一个共同位点,而BSP和胆红素则结合在不同位点。β亚基上的胆汁酸和有机阴离子位点均受谷胱甘肽抑制。在所有情况下(γ亚基胆酸位点或β亚基胆汁酸或胆红素位点),谷胱甘肽的抑制作用是可饱和的,属于竞争性类型,且在最大谷胱甘肽浓度时不完全,这表明当谷胱甘肽与其独特的底物位点结合时,会诱导蛋白质构象变化,从而影响其他结合位点。

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