Bartzatt R, Beckmann J D
Department of Internal Medicine, University of Nebraska Medical Center, Omaha 68198-5300.
Biochem Pharmacol. 1994 Jun 1;47(11):2087-95. doi: 10.1016/0006-2952(94)90085-x.
The biologically abundant cofactor, pyridoxal-5-phosphate (PLP), is a potent inhibitor of bovine phenol (aryl) sulfotransferase (PST). Preincubation of purified enzyme with as little as 1 microM PLP decreased PST activity by 50%. Excess 2-naphthol protected PST from inactivation by PLP, whereas 2-naphthyl sulfate and PAPS were not protective. Although PLP inhibition was apparently competitive with 2-naphthol, a steady-state kinetic Ki value could not be measured due to non-linear Lineweaver-Burk plots in the presence of the inhibitor. Kinetic progress curves revealed that this was due to progressive loss of activity during catalysis. The kinetics of inactivation of PST by PLP were pseudo-first-order and exhibited saturation. The derived KI value for the binding of PLP to PST in the initial reversible step was 23 microM, with a maximal rate of inactivation of 0.077 min(-1). Absorbance spectra of the PST/PLP complex indicated the formation of a Schiff base conjugate, and this is consistent with decreased electrophoretic mobility of the protein-PLP adduct in the presence of dodecyl sulfate only after reduction with borohydride. These results point to the possible regulation of an important detoxification enzyme by a ubiquitous cofactor.
生物体内丰富的辅因子磷酸吡哆醛(PLP)是牛苯酚(芳基)磺基转移酶(PST)的强效抑制剂。将纯化的酶与低至1微摩尔的PLP预孵育可使PST活性降低50%。过量的2-萘酚可保护PST不被PLP灭活,而硫酸2-萘酯和PAPS则没有保护作用。虽然PLP抑制作用显然与2-萘酚存在竞争性,但由于在抑制剂存在下Lineweaver-Burk图呈非线性,无法测量稳态动力学Ki值。动力学进程曲线表明,这是由于催化过程中活性的逐渐丧失。PLP使PST失活的动力学为假一级反应,并表现出饱和现象。在初始可逆步骤中,PLP与PST结合的推导KI值为23微摩尔,最大失活速率为0.077分钟-1。PST/PLP复合物的吸收光谱表明形成了席夫碱共轭物,这与仅在硼氢化钠还原后,在十二烷基硫酸盐存在下蛋白质-PLP加合物的电泳迁移率降低相一致。这些结果表明一种普遍存在的辅因子可能对一种重要的解毒酶具有调节作用。