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蛋白质磷酸化对γ-谷氨酰半胱氨酸合成酶的调控

Regulation of gamma-glutamylcysteine synthetase by protein phosphorylation.

作者信息

Sun W M, Huang Z Z, Lu S C

机构信息

Department of Medicine, University of Southern California School of Medicine, Los Angeles 90033, USA.

出版信息

Biochem J. 1996 Nov 15;320 ( Pt 1)(Pt 1):321-8. doi: 10.1042/bj3200321.

Abstract

We previously reported that the activity of gamma-glutamylcysteine synthetase (GCS; EC 6.3.2.2), the rate-limiting enzyme in GSH synthesis, can be acutely inhibited approximately 20-40% by agonists of various signal transduction pathways in rat hepatocytes [Lu, Kuhlenkamp, Garcia-Ruiz and Kaplowitz (1991) J. Clin. Invest. 88, 260-269]. We have now examined the possibility that GCS is phosphorylated directly by activation of protein kinase A (PKA), protein kinase C (PKC) and Ca2+/calmodulin-dependent kinase II (CMK). Phosphorylation of GCS was studied using both purified rat kidney GCS and cultured rat hepatocytes by immunoprecipitating the reaction product with specific rabbit anti-(rat GCS heavy subunit) (anti-GCS-HS) antibodies. All three kinases, PKA, PKC and CMK, phosphorylated rat kidney GCS-HS in a Mg(2+)-concentration-dependent manner, with the highest degree of phosphorylation occurring at 20 mM Mg2+. The maximum incorporation of phosphate in mol/mol of GCS was 1.17 for PKA, 0.70 for PKC and 0.62 for CMK. The degree of phosphorylation was correlated with the degree of loss of GCS activity, and no additional inhibition occurred when GCS was phosphorylated by all three kinases, suggesting that the kinases phosphorylated the same site(s). Phosphoamino analysis showed that all three kinases phosphorylated serine and threonine residues. Two-dimensional phosphopeptide mapping demonstrated that all three kinases phosphorylated the same five peptides, both PKA and PKC phosphorylated two other peptides, and only PKA phosphorylated one additional peptide. Phosphorylation of GCS decreased its Vmax for cysteine and glutamate without changing its K(m). Finally, treatment of cultured rat hepatocytes with dibutyryl cAMP and phenylephrine significantly increased the phosphorylation of GCS, suggesting a potentially important physiological role. In summary, we have demonstrated that GCS is phosphorylated and suggest that phosphorylation/dephosphorylation may regulate GCS activity.

摘要

我们先前报道,γ-谷氨酰半胱氨酸合成酶(GCS;EC 6.3.2.2)作为谷胱甘肽(GSH)合成的限速酶,其活性可被大鼠肝细胞中各种信号转导途径的激动剂急性抑制约20%-40%[Lu、Kuhlenkamp、Garcia-Ruiz和Kaplowitz(1991年)《临床研究杂志》88,260-269]。我们现在研究了GCS是否通过蛋白激酶A(PKA)、蛋白激酶C(PKC)和Ca2+/钙调蛋白依赖性激酶II(CMK)的激活而直接磷酸化的可能性。使用纯化的大鼠肾脏GCS和培养的大鼠肝细胞,通过用特异性兔抗(大鼠GCS重亚基)(抗GCS-HS)抗体免疫沉淀反应产物来研究GCS的磷酸化。PKA、PKC和CMK这三种激酶均以Mg(2+)浓度依赖性方式使大鼠肾脏GCS-HS磷酸化,在20 mM Mg2+时磷酸化程度最高。对于PKA,每摩尔GCS中磷酸盐的最大掺入量为1.17,PKC为0.70,CMK为0.62。磷酸化程度与GCS活性丧失程度相关,当GCS被所有三种激酶磷酸化时未发生额外抑制,这表明这些激酶磷酸化的是相同位点。磷酸氨基酸分析表明,所有三种激酶均使丝氨酸和苏氨酸残基磷酸化。二维磷酸肽图谱显示,所有三种激酶均使相同的五个肽磷酸化,PKA和PKC还使另外两个肽磷酸化,且只有PKA使另外一个肽磷酸化。GCS的磷酸化降低了其对半胱氨酸和谷氨酸的Vmax,而未改变其K(m)。最后,用二丁酰cAMP和去氧肾上腺素处理培养的大鼠肝细胞可显著增加GCS的磷酸化,提示其具有潜在重要的生理作用。总之,我们已证明GCS可被磷酸化,并提示磷酸化/去磷酸化可能调节GCS活性。

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