首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Investigating the effects of posttranslational adenylylation on the metal binding sites of Escherichia coli glutamine synthetase using lanthanide luminescence spectroscopy.
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Investigating the effects of posttranslational adenylylation on the metal binding sites of Escherichia coli glutamine synthetase using lanthanide luminescence spectroscopy.

机译:使用镧系元素发光光谱法研究翻译后腺苷酸化对大肠杆菌谷氨酰胺合成酶金属结合位点的影响。

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摘要

Lanthanide luminescence was used to examine the effects of posttranslational adenylylation on the metal binding sites of Escherichia coli glutamine synthetase (GS). These studies revealed the presence of two lanthanide ion binding sites of GS of either adenylylation extrema. Individual emission decay lifetimes were obtained in both H2O and D2O solvent systems, allowing for the determination of the number of water molecules coordinated to each bound Eu3+. The results indicate that there are 4.3 +/- 0.5 and 4.6 +/- 0.5 water molecules coordinated to Eu3+ bound to the n1 site of unadenylylated enzyme, GS0, and fully adenylylated enzyme, GS12, respectively, and that there are 2.6 +/- 0.5 water molecules coordinated to Eu3+ at site n2 for both GS0 and GS12. Energy transfer measurements between the lanthanide donor-acceptor pair Eu3+ and Nd3+, obtained an intermetal distance measurement of 12.1 +/- 1.5 A. Distances between a Tb3+ ion at site n2 and tryptophan residues were also performed with the use of single-tryptophan mutant forms of E. coli GS. The dissociation constant for lanthanide ion binding to site n1 was observed to decrease from Kd = 0.35 +/- 0.09 microM for GS0 to Kd = 0.06 +/- 0.02 microM for GS12. The dissociation constant for lanthanide ion binding to site n2 remained unchanged as a function of adenylylation state; Kd = 3.8 +/- 0.9 microM and Kd = 2.6 +/- 0.7 microM for GS0 and GS12, respectively. Competition experiments indicate that Mn2+ affinity at site n1 decreases as a function of increasing adenylylation state, from Kd = 0.05 +/- 0.02 microM for GS0 to Kd = 0.35 +/- 0.09 microM for GS12. Mn2+ affinity at site n2 remains unchanged (Kd = 5.3 +/- 1.3 microM for GS0 and Kd = 4.0 +/- 1.0 microM for GS12). The observed divalent metal ion affinities, which are affected by the adenylylation state, agrees with other steady-state substrate experiments (Abell LM, Villafranca JJ, 1991, Biochemistry 30:1413-1418), supporting the hypothesis that adenylylation regulates GS by altering substrate and metal ion affinities.
机译:镧系元素发光用于检查翻译后腺苷酸化对大肠杆菌谷氨酰胺合成酶(GS)的金属结合位点的影响。这些研究表明存在两个腺苷酸化极值的GS的两个镧系元素离子结合位点。在H2O和D2O溶剂系统中均获得了单独的发射衰减寿命,从而可以确定与每个结合的Eu3 +配位的水分子的数量。结果表明,分别有4.3 +/- 0.5和4.6 +/- 0.5的水分子与未结合烯丙基化的酶GS0和完全腺苷酸化的酶GS12的n1位点结合的Eu3 +结合,并且有2.6 +/- GS0和GS12的0.5个水分子在n2位与Eu3 +配位。镧系元素供体-受体Eu3 +和Nd3 +之间的能量转移测量获得的金属间距离测量值为12.1 +/- 1.5A。n2位点处Tb3 +离子与色氨酸残基之间的距离也使用单色氨酸突变体形式进行大肠杆菌GS。观察到镧系元素离子结合到位点n1的解离常数从GS0的Kd = 0.35 +/- 0.09 microM降低到GS12的Kd = 0.06 +/- 0.02 microM。镧系元素离子结合到位点n2的解离常数保持不变,取决于腺苷酸化状态。对于GS0和GS12,Kd = 3.8 +/- 0.9 microM,Kd = 2.6 +/- 0.7 microM。竞争实验表明,位点n1的Mn2 +亲和力随腺苷酸化状态的增加而降低,从GS0的Kd = 0.05 +/- 0.02 microM到GS12的Kd = 0.35 +/- 0.09 microM。位点n2上的Mn2 +亲和力保持不变(对于GS0,Kd = 5.3 +/- 1.3 microM,对于GS12,Kd = 4.0 +/- 1.0 microM)。观察到的受腺苷酸化状态影响的二价金属离子亲和力与其他稳态底物实验一致(Abell LM,Villafranca JJ,1991,Biochemistry 30:1413-1418),支持了腺苷酸化通过改变底物来调节GS的假设。和金属离子亲和力。

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