Gunderson H M, Nordlie R C
J Biol Chem. 1975 May 10;250(9):3552-9.
The presence of carbamyl-phosphate:glucose phosphotransferase in liver nuclei of five species of mammals and birds is demonstrated. The activity is confined to nuclear membranes and is due exclusively to multifunctional glucose-6-phosphatase-phosphotransferase (D-glucose-6-phosphate phosphohydrolase; EC 3.1.3.9). The nuclear enzyme constitutes approximately 16 to 19 percent of total hepatic glucose-6-phosphatase-phosphotransferase. Carbamyl-phosphate:glucose phosphotransferase and glucose-6-P phosphohydrolase activities of membrane of chicken liver nuclei are shown to be catalytically identical with the maximally activated microsomal enzyme. A correspondence is seen in two-substrate kinetic double reciprocal plots, K-m or apparent K-m values for the various substrates, K-i values for the competitive inhibitors P-i and ATP, and pH-activity profiles. Comparative studies were carried out with various intact, disrupted, and detergent-dispersed membranous preparations by a combination of enzyme kinetic and electron microscopic techniques. It is concluded that (a) intimate interrelationships exists between catalytic behavior of this enzyme and morphological integrity of membranes of which the enzyme is a part; (b) activities of the enzyme of nuclear membrane appear quite available for physiological phosphorylative functions; and (c) interrelationships between membrane morphology and catalytic behavior of this membrane-bound enzyme may well be involved in the bioregulation of this complex, multifunctional enzyme system.
葡萄糖磷酸转移酶。该活性局限于核膜,且完全归因于多功能葡萄糖-6-磷酸酶-磷酸转移酶(D-葡萄糖-6-磷酸磷酸水解酶;EC 3.1.3.9)。核酶约占肝脏总葡萄糖-6-磷酸酶-磷酸转移酶的16%至19%。鸡肝细胞核膜的氨甲酰磷酸:葡萄糖磷酸转移酶和葡萄糖-6-磷酸磷酸水解酶活性被证明与最大激活的微粒体酶具有催化同一性。在双底物动力学双倒数图、各种底物的K-m或表观K-m值、竞争性抑制剂P-i和ATP的K-i值以及pH-活性曲线中都观察到了对应关系。通过酶动力学和电子显微镜技术相结合的方法,对各种完整、破碎和去污剂分散的膜制剂进行了比较研究。得出以下结论:(a)该酶的催化行为与该酶所属膜的形态完整性之间存在密切的相互关系;(b)核膜酶的活性似乎完全可用于生理磷酸化功能;(c)这种膜结合酶的膜形态与催化行为之间的相互关系很可能参与了这个复杂的多功能酶系统的生物调节。