首页> 美国卫生研究院文献>Biochemical Journal >Glutathione S-transferases act as isomerases in isomerization of 13-cis-retinoic acid to all-trans-retinoic acid in vitro.
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Glutathione S-transferases act as isomerases in isomerization of 13-cis-retinoic acid to all-trans-retinoic acid in vitro.

机译:谷胱甘肽S-转移酶在体外将13-顺式-视黄酸异构化为全反式-视黄酸中充当异构酶。

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摘要

A discovery that rapid enzymic isomerization of 13-cis-retinoic acid (13-cRA) to all-trans-retinoic acid (t-RA) can be catalysed by purified hepatic glutathione S-transferases (GSTs; EC 2.5.1.18) from rat is now reported. Rates of cis-trans isomerization were determined quantitatively by HPLC. GST-catalysed reactions reached equilibrium rapidly, in marked contrast with uncatalysed or GSH-catalysed isomerizations. The GST-catalysed reaction exhibited substrate saturation kinetics with a Km of approx. 8 microM. The maximal velocity of the reaction and the catalytic efficiency of GSTs were determined. The initial rate of the reaction increased linearly as a function of enzyme concentration. Catalysis by GSTs was independent of the presence of GSH, indicating that GSTs act as GSH-independent isomerases as well as transferases. Incubation with guanidine (7-8 M) or heat-inactivation of GSTs (100 degrees C for 3 min) decreased isomerase activities by approx. 50% and 75% respectively. The same heat treatment did not significantly inhibit isomerization catalysed by GSH and apoferritin, indicating that the observed decrease in isomerase activity by heat inactivation was not primarily due to oxidation of protein thiol groups in the GSTs. The specific activity of GSTs was approx. 23- and 340-fold those of GSH and apoferritin respectively when comparisons were made on the basis of free thiol concentrations, indicating that free thiol in GSTs cannot account for the majority of observed isomerase activities and suggesting that specific conformations of GSTs are important for such activities. Complete inhibition of the reaction by low concentrations of N-ethylmaleimide (10 microM) demonstrated that intact protein thiols are required for the isomerase activities of GSTs.
机译:一个发现,可通过大鼠肝纯净的谷胱甘肽S-转移酶(GSTs; EC 2.5.1.18)催化13-顺式-视黄酸(13-cRA)快速酶异构化为全反式-视黄酸(t-RA)。现在被报道。通过HPLC定量测定顺式-反式异构化的速率。 GST催化的反应迅速达到平衡,与未催化或GSH催化的异构化形成鲜明对比。 GST催化的反应显示出底物饱和动力学,Km约为2。 8微米确定了最大反应速度和GST的催化效率。反应的初始速率随酶浓度的增加而线性增加。 GST的催化作用与GSH的存在无关,这表明GST不仅可以作为GSH的异构酶,而且可以作为转移酶。与胍(7-8 M)一起温育或GST的热灭活(100摄氏度,3分钟)使异构酶活性降低了约5%。分别为50%和75%。相同的热处理并未显着抑制GSH和载铁蛋白催化的异构化,这表明通过热失活观察到的异构酶活性降低并非主要是由于GST中蛋白质硫醇基的氧化。 GST的比活为约。当根据游离硫醇浓度进行比较时,分别是GSH和载铁蛋白的23倍和340倍,这表明GST中的游离硫醇不能解释大部分观察到的异构酶活性,这表明GST的特定构象对于此类重要活动。低浓度的N-乙基马来酰亚胺(10 microM)完全抑制了反应,这表明GST的异构酶活性需要完整的蛋白质硫醇。

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