Meyer D J, Crease D J, Ketterer B
Department of Biochemistry and Molecular Biology, University College London, U.K.
Biochem J. 1995 Mar 1;306 ( Pt 2)(Pt 2):565-9. doi: 10.1042/bj3060565.
The reversible reaction of GSH with two dietary anticarcinogens, benzyl isothiocyanate (BITC) and phenethyl isothiocyanate (PEITC), has been studied in the absence and presence of human glutathione S-transferases (GSTs). The spontaneous reaction at pH 7.4 and 37 degrees C yielded values for k2 of 17.9 and 6.0 M-1.s-1 for GSH conjugation of BITC and PEITC respectively (forward reaction), and k1 values of 6.9 x 10(-4) and 2.4 x 10(-4) s-1 for dissociation of the respective GSH conjugates, BITC-SG and PEITC-SG (reverse reaction). GSTs A1-1, A2-2, M1a-1a and P1-1 catalysed both the forward and reverse reactions with specific activities (mumol/min per mg at 30 microM isothiocyanate or GSH conjugate) ranging from 23.1 for the GSH conjugation of BITC by GST P1-1 to 0.03 for the dissociation of BITC-SG by GST A1-1. When present at similar concentration to substrates (12 microM), GSTs A1-1 and A2-2 but not GST M1a-1a shifted the equilibrium in favour of BITC-SG or PEITC-SG. Kinetic studies confirmed that GST A1-1 interacted selectively with the GSH conjugates in the micromolar range (Km 6.9 microM, Ki 4.3 microM), whereas GST M1a-1a interacted with BITC-SG and PEITC-SG with approx. 5-fold lower affinity. In conclusion, GSTs are true catalysts; at high intracellular concentration they also sequester GSH conjugates, promoting GSH conjugation, whereas trace extracellular GSTs promote dissociation of effluxed organic isothiocyanate-GSH conjugates.
在不存在和存在人谷胱甘肽S-转移酶(GSTs)的情况下,研究了谷胱甘肽(GSH)与两种膳食抗癌剂异硫氰酸苄酯(BITC)和异硫氰酸苯乙酯(PEITC)的可逆反应。在pH 7.4和37℃下的自发反应中,BITC和PEITC与GSH结合的正向反应的二级反应速率常数k2分别为17.9和6.0 M-1·s-1,相应的GSH共轭物BITC-SG和PEITC-SG解离的反向反应的k1值分别为6.9×10-4和2.4×10-4 s-1。GSTs A1-1、A2-2、M1a-1a和P1-1催化正向和反向反应,其比活性(在30μM异硫氰酸酯或GSH共轭物时每毫克的μmol/分钟)范围从GST P1-1催化BITC与GSH结合的23.1到GST A1-1催化BITC-SG解离的0.03。当以与底物相似的浓度(12μM)存在时,GSTs A1-1和A2-2而不是GST M1a-1a使平衡向有利于BITC-SG或PEITC-SG的方向移动。动力学研究证实,GST A1-1在微摩尔范围内与GSH共轭物选择性相互作用(Km 6.9μM,Ki 4.3μM),而GST M1a-1a与BITC-SG和PEITC-SG相互作用的亲和力约低5倍。总之,GSTs是真正的催化剂;在高细胞内浓度下,它们还螯合GSH共轭物,促进GSH结合,而微量细胞外GSTs促进流出的有机异硫氰酸酯-GSH共轭物的解离。