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大肠杆菌K.10苯丙氨酰-tRNA合成酶的机制。镁对催化特性的调节。

Mechanism of phenylalanyl-tRNA synthetase of Escherichia coli K. 10. Modulation of catalytic properties by magnesium.

作者信息

Pimmer J, Holler E

出版信息

Biochemistry. 1979 Aug 21;18(17):3714-23. doi: 10.1021/bi00584a012.

Abstract

The association of phenylalanylptRNA and Mg2+ follows a biphasic concentration dependence as indicated by the active site directed fluorescent indicator 2-p-toluidinyl-naphthalene-6-sulfonate. The macroscopic dissociation constants are 0.16 +/- 0.03 and 4.1 +/- mM. The effect of Mg2+ on the association of enzyme and MgATP, on the synergistic binding of MgATP and L-phenylalaninol, and on the pre-steady-state synthesis and pyrophosphorolysis of the enzyme-phenylalanyladenylate complex in the absence and the presence of tRNA Phe has been measured by established equilibrium and stopped-flow techniques using 2-p-toluidinylnaphthalene-6-sulfonate. At 10 mM Mg2+, the association of enzyme and MgATP is biphasic with dissociation constants of 0.25 +/- 0.03 and 9.1 +/- 1.7 mM. At 2 mM Mg2+, a single dissociation constant of 5.0 +/- 0.5 mM is indicated. The coupling constant of the synergistic reaction is 15 at 1 mM Mg2+ and 290 at 10 mM Mg2+. The Hill constant of the sigmoidal dependence is 3.6. The strengthening of the synergism is believed to reflect a Mg2+-dependent coupling of the synergistic reactions at the two active sites of the enzyme, the coupling being negligible at 1 mM and maximal at 10 mM Mg2+. The pre-steady-state rate of adenylate synthesis is accelerated by the presence of Mg2+. The effect is to decrease the value of the Michaelis-Menten constant of MgATP. Another effect is to increase the rate constant when tRNA Phe is present. At subsaturating [MgATP], the [Mg2+] dependence of the observed rate constant is hyperbolical in the absence and sigmoidal (Hill constant, 3.5) in the presence of tRNA Phe. The rate of the pyrophosphorolysis is enhanced by a decrease of the Michaelis-Menten constant of MgPPi. The effects on the thermodynamics and kinetics parallel the occupancy of the low-affinity Mg2+-binding sites of the enzyme.

摘要

如活性位点导向荧光指示剂2-对甲苯胺基萘-6-磺酸盐所示,苯丙氨酰-tRNA与Mg2+的结合呈现双相浓度依赖性。宏观解离常数分别为0.16±0.03和4.1±mM。通过使用2-对甲苯胺基萘-6-磺酸盐的既定平衡和停流技术,测定了Mg2+对酶与MgATP结合、MgATP与L-苯丙氨醇协同结合以及在有无tRNA Phe存在时酶-苯丙氨酰腺苷酸复合物的预稳态合成和焦磷酸解的影响。在10 mM Mg2+时,酶与MgATP的结合呈双相,解离常数分别为0.25±0.03和9.1±1.7 mM。在2 mM Mg2+时,显示单一解离常数为5.0±0.5 mM。协同反应的偶联常数在1 mM Mg2+时为15,在10 mM Mg2+时为290。S形依赖性的希尔常数为3.6。协同作用的增强被认为反映了酶的两个活性位点上协同反应的Mg2+依赖性偶联,这种偶联在1 mM时可忽略不计,在10 mM Mg2+时最大。Mg2+加速了腺苷酸合成的预稳态速率。其作用是降低MgATP的米氏常数的值。另一个作用是当存在tRNA Phe时增加速率常数。在亚饱和[MgATP]时,观察到的速率常数对[Mg2+]的依赖性在无tRNA Phe时为双曲线,在有tRNA Phe时为S形(希尔常数为3.5)。焦磷酸解速率因MgPPi的米氏常数降低而增强。对热力学和动力学的影响与酶的低亲和力Mg2+结合位点的占据情况平行。

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