Rao A M, Drake M R, Stipanuk M H
Division of Nutritional Sciences, Cornell University, Ithaca, NY 14853.
J Nutr. 1990 Aug;120(8):837-45. doi: 10.1093/jn/120.8.837.
To assess the extent to which low hepatic gamma-cystathionase levels affect methionine flux to cysteine in hepatocytes, the effect of inhibition of gamma-cystathionase activity with propargylglycine on the metabolism of L-[35S]methionine was determined in studies with freshly isolated rat hepatocytes. gamma-Cystathionase activity was inhibited 25%, 42%, 63% and 76% (maximal inhibition) by treatment with 2.5 mumol/L, 0.01 mmol/L, 0.02 mmol/L and 2 mmol/l propargylglycine, respectively. Inhibition of gamma-cystathionase activity with up to 0.02 mmol/L propargylglycine had no statistically significant effect on [35S]glutathione, [35S]sulfate or [35S]cysteine formation from [35S]methionine. However, treatment of cells with 2 mmol/L propargylglycine markedly inhibited the metabolism of [35S]methionine to [35S]glutathione by 93%, to [35S]sulfate by 88% and to [35S]cysteine by 89%; [35S]cystathionine accumulation in these incubation systems was 60 times control. Hepatic gamma-cystathionase activity in premature infants has been reported to be about 23% of mature levels (Zlotkin and Anderson, 1982; Pediatr. Res. 16: 65-68); this level of gamma-cystathionase activity may limit cysteine synthesis by the methionine transsulfuration pathway. No evidence for cysteine synthesis from serine and sulfide, which can be catalyzed by cystathionine beta-synthase, or for methionine metabolism by an S-adenosylmethionine-independent pathway was obtained.
为评估肝脏γ-胱硫醚酶水平降低对肝细胞中蛋氨酸向半胱氨酸通量的影响程度,在新鲜分离的大鼠肝细胞研究中,测定了用炔丙基甘氨酸抑制γ-胱硫醚酶活性对L-[35S]蛋氨酸代谢的影响。分别用2.5 μmol/L、0.01 mmol/L、0.02 mmol/L和2 mmol/L炔丙基甘氨酸处理,γ-胱硫醚酶活性分别被抑制25%、42%、63%和76%(最大抑制)。用高达0.02 mmol/L炔丙基甘氨酸抑制γ-胱硫醚酶活性,对[35S]蛋氨酸生成[35S]谷胱甘肽、[35S]硫酸盐或[35S]半胱氨酸没有统计学上的显著影响。然而,用2 mmol/L炔丙基甘氨酸处理细胞,显著抑制了[35S]蛋氨酸代谢生成[35S]谷胱甘肽达93%、生成[35S]硫酸盐达88%、生成[35S]半胱氨酸达89%;在这些孵育体系中[35S]胱硫醚的积累是对照的60倍。据报道,早产儿肝脏γ-胱硫醚酶活性约为成熟水平的23%(兹洛特金和安德森,1982年;《儿科学研究》16: 65 - 68);这种γ-胱硫醚酶活性水平可能会限制通过蛋氨酸转硫途径合成半胱氨酸。未获得由胱硫醚β合酶催化的丝氨酸和硫化物合成半胱氨酸的证据,也未获得通过不依赖S-腺苷甲硫氨酸途径进行蛋氨酸代谢的证据。