Gregus Z, Stein A F, Klaassen C D
Am J Physiol. 1987 Jul;253(1 Pt 1):G86-92. doi: 10.1152/ajpgi.1987.253.1.G86.
The role of gamma-glutamyltransferase (GGT) in the biliary excretion of glutathione (GS) was studied in rats during postnatal development. Between 2 and 10 wk of age the biliary excretion of GS-related sulfur increased ninefold. During this period, alterations were observed in both hepatic GGT and the composition of GS-related thiols and disulfides in bile. For instance, between 3 and 4 wk of age, GGT activity and the biliary excretion of GS hydrolysis products (Cys-Gly and Cys) increased markedly, and the latter became the predominant sulfhydryls in bile. However, by 10 wk of age, the excretion rate of GS increased and exceeded the rate of excretion of Cys-Gly and Cys. The parallelism between hepatic GGT activity and the biliary excretion of GS-hydrolysis products during development suggests a role for GGT in the formation of biliary Cys-Gly and Cys. Furthermore, in 4-wk-old rats, inhibition of hepatic GGT by acivicin markedly decreased the biliary excretion of Cys-Gly and Cys and increased that of GS without influencing the excretion of total GS-related sulfur in bile. The biliary excretion of GS-related thiols was less responsive to acivicin in 2- and 7- to 10-wk-old rats, suggesting that GGT plays a smaller role in influencing biliary thiol composition at those ages. In summary, GS transported into bile is hydrolyzed in an age-dependent manner, however, the GGT-initiated hydrolysis of GS does not affect the biliary excretion of total thiols in rats.
在出生后发育过程中,研究了γ-谷氨酰转移酶(GGT)在大鼠胆汁中谷胱甘肽(GS)排泄中的作用。在2至10周龄期间,与GS相关的硫的胆汁排泄增加了九倍。在此期间,观察到肝脏GGT以及胆汁中与GS相关的硫醇和二硫键的组成均发生了变化。例如,在3至4周龄时,GGT活性以及GS水解产物(半胱氨酰甘氨酸和半胱氨酸)的胆汁排泄显著增加,并且后者成为胆汁中主要的巯基。然而,到10周龄时,GS的排泄率增加并超过了半胱氨酰甘氨酸和半胱氨酸的排泄率。发育过程中肝脏GGT活性与GS水解产物胆汁排泄之间的平行关系表明GGT在胆汁中半胱氨酰甘氨酸和半胱氨酸的形成中起作用。此外,在4周龄大鼠中,阿西维辛对肝脏GGT的抑制作用显著降低了半胱氨酰甘氨酸和半胱氨酸的胆汁排泄,并增加了GS的胆汁排泄,而不影响胆汁中与GS相关的总硫的排泄。在2周龄以及7至10周龄大鼠中,与GS相关的硫醇的胆汁排泄对阿西维辛的反应较小,这表明在这些年龄段GGT在影响胆汁硫醇组成方面起的作用较小。总之,转运到胆汁中的GS以年龄依赖性方式被水解,然而,GGT启动的GS水解并不影响大鼠胆汁中总硫醇的排泄。