首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Stimulation of the Hydrolytic Activity and Decrease of the Transpeptidase Activity of γ-Glutamyl Transpeptidase by Maleate; Identity of a Rat Kidney Maleate-Stimulated Glutaminase and γ-Glutamyl Transpeptidase
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Stimulation of the Hydrolytic Activity and Decrease of the Transpeptidase Activity of γ-Glutamyl Transpeptidase by Maleate; Identity of a Rat Kidney Maleate-Stimulated Glutaminase and γ-Glutamyl Transpeptidase

机译:马来酸盐刺激γ-谷氨酰转肽酶的水解活性和转肽酶活性的降低;大鼠肾脏马来酸盐刺激的谷氨酰胺酶和γ-谷氨酰转肽酶的身份

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摘要

γ-Glutamyl transpeptidase catalyzes transfer of the γ-glutamyl moiety of glutathione (and other γ-glutamyl compounds) to amino acid and peptide acceptors; this reaction probably involves (a) formation of a γ-glutamyl enzyme and (b) reaction of the γ-glutamyl-enzyme with an acceptor. Maleate decreases the latter reaction and markedly increases hydrolysis of the γ-glutamyl donor, apparently by affecting the enzyme so as to facilitate reaction of the γglutamyl enzyme with water. Transpeptidase catalyzes γ-glutamyl hydroxamate formation from many γ-glutamyl compounds and hydroxylamine; this reaction is stimulated 4- to 5-fold by maleate. Glutamine, a poor substrate for transpeptidation as compared to glutathione, is slowly hydrolyzed and converted to γ-glutamyl-glutamine by the transpeptidase; in the presence of maleate, hydrolysis of glutamine is markedly (>10-fold) increased, as is also its conversion to γ-glutamyl hydroxamate in the presence of hydroxylamine. The findings suggest that the previously described “maleate-stimulated phosphate-independent glutaminase” is a catalytic function of γ-glutamyl transpeptidase. Transpeptidase-catalyzed glutaminase activity may play a role in renal ammoniagenesis. The ability of maleate to decrease transpeptidation of γ-glutamyl compounds (and to increase their hydrolysis to glutamate), when considered in the light of earlier findings that treatment of animals with maleate produces aminoaciduria, is consistent with function of transpeptidase and the γ-glutamyl cycle in amino-acid transport.
机译:γ-谷氨酰转肽酶催化谷胱甘肽(和其他γ-谷氨酰基化合物)的γ-谷氨酰基部分向氨基酸和肽受体的转移。该反应可能涉及(a)γ-谷氨酰胺酶的形成和(b)γ-谷氨酰胺酶与受体的反应。马来酸酯明显地通过影响酶而减少了后者的反应,并显着增加了γ-谷氨酰供体的水解,从而促进了γ-谷氨酰酶与水的反应。转肽酶催化许多γ-谷氨酰基化合物和羟胺形成γ-谷氨酰基异羟肟酸酯;该反应被马来酸酯刺激4至5倍。与谷胱甘肽相比,谷氨酰胺是一种较差的转肽底物,它被慢速水解并通过转肽酶转化为γ-谷氨酰-谷氨酰胺。在马来酸酯存在下,谷氨酰胺的水解显着增加(> 10倍),在羟胺存在下其转化为γ-谷氨酰胺基异羟肟酸酯的转化也显着增加。该发现表明,先前描述的“马来酸盐刺激的非磷酸盐依赖性谷氨酰胺酶”是γ-谷氨酰转肽酶的催化功能。转肽酶催化的谷氨酰胺酶活性可能在肾氨生成中起作用。鉴于较早的发现认为,用马来酸酯治疗动物会产生氨基酸尿症时,马来酸酯减少γ-谷氨酰化合物的转肽作用(并增加其水解为谷氨酸的能力)与转肽酶和γ-谷氨酰的功能一致氨基酸运输中的循环。

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