Le Hir M, Dubach U C
Medizinische-Universitaetspoliklinik, Kantonspital, Basel, Switzerland.
Am J Physiol. 1988 Feb;254(2 Pt 2):F191-5. doi: 10.1152/ajprenal.1988.254.2.F191.
Hydrolysis of 5'-AMP by 5'-nucleotidase is a possible source of adenosine in the kidney. A renal membrane-bound ecto-5'-nucleotidase has been previously described. The present study deals with the catalytic properties of a 5'-AMP phosphohydrolase partially purified from high-speed supernatants of rat kidney homogenates. It exhibits phosphatase activity toward 5'-AMP, 5'-IMP, and 5'-GMP, but not toward 2'- and 3'-AMP and corresponds therefore to a 5'-nucleotidase. The hydrolysis of 5'-AMP by the soluble 5'-nucleotidase requires divalent cations. Maximal activity is reached with 10 microM of either Mn2+ or Co2+, whereas half-maximal activity is obtained with approximately 400 microM Mg2+. The soluble 5'-nucleotidase exhibits Michaelis-Menten kinetics with a Km of 9.5 microM for 5'-AMP. In the presence of 1 mM of free Mg2+, physiological concentrations of ATP provoke an increase of the Km for 5'-AMP and a decrease of Vmax. An increase of the pH of 0.4 units in the pH range 6.4-7.4 roughly doubles the rate of hydrolysis of 5'-AMP. The effects of ATP and of the pH are compatible with a role of the renal soluble 5'-nucleotidase in the hydrolysis of 5'-AMP and in the production of adenosine during hypoxia.
5'-核苷酸酶催化5'-AMP水解是肾脏中腺苷的一个可能来源。此前已有关于肾膜结合型胞外5'-核苷酸酶的描述。本研究探讨了从大鼠肾脏匀浆高速上清液中部分纯化得到的一种5'-AMP磷酸水解酶的催化特性。它对5'-AMP、5'-IMP和5'-GMP表现出磷酸酶活性,但对2'-和3'-AMP无活性,因此属于5'-核苷酸酶。可溶性5'-核苷酸酶催化5'-AMP水解需要二价阳离子。10 microM的Mn2+或Co2+可达到最大活性,而约400 microM的Mg2+可达到半数最大活性。可溶性5'-核苷酸酶表现出米氏动力学,对5'-AMP的Km值为9.5 microM。在存在1 mM游离Mg2+的情况下,生理浓度的ATP会导致5'-AMP的Km值增加,Vmax降低。在pH值6.4 - 7.4范围内,pH值增加0.4个单位会使5'-AMP的水解速率大致加倍。ATP和pH值的影响与肾可溶性5'-核苷酸酶在5'-AMP水解以及缺氧时腺苷生成中的作用相符。