首页> 外文期刊>Biochemistry >Fluorescence Based Structural Analysis of Tryptophan Analogue-AMP Formation in Single Tryptophan Mutants of Bacillus stearothermophilus Tryptophanyl-tRNA Synthetase.
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Fluorescence Based Structural Analysis of Tryptophan Analogue-AMP Formation in Single Tryptophan Mutants of Bacillus stearothermophilus Tryptophanyl-tRNA Synthetase.

机译:嗜热脂肪芽孢杆菌色氨酸-tRNA合成酶单个色氨酸突变体中色氨酸类似物-AMP形成的基于荧光的结构分析。

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摘要

The symmetrical dimer structure of tryptophanyl-tRNA synthetase is similar to that of tyrosyl-tRNA synthetase whose binding behavior and structural details have been elucidated in detail. The structure of both subunits after forming the intermediate tryptophanyl-AMP has important implications for the binding of the cognate tRNA(Trp). Single tryptophan mutants of Bacillus stearothermophilus tryptophanyl-tRNA synthetase have been constructed and expressed and used to probe structural changes in different domains of the enzyme in both subunits. Substrate titrations using the Trp analogues 4-fluorotryptophan and 7-azatryptophan in the presence of ATP to form the corresponding aminoacyl-adenylate reveal significant structural changes occurring throughout the active subunit in regions not confined to the active site. Changes in environment around the specific Trp residues were monitored using UV absorbance and steady-state fluorescence measurements. When titrated with 4-fluorotryptophan, both Trp 91 and Trp 290 fluorescence is quenched (49 and 22%, respectively) when one subunit has formed Trp-AMP. The fluorescence of Trp 48 is enhanced 19%. No further change in signal was observed after a 1:1 dimer/l-4FW-AMP complex ratio had been established. Using an anion-exchange filter binding assay with radiolabeled l-Trp as a substrate, binding to only one subunit was observed under nonsaturating conditions. This agrees with the results of the assay using 7-azatryptohan as a substrate. The observed changes extend to the unfilled subunit where a similar structure is believed to form after one subunit has formed tryptophan-AMP. Movement in the regions of the enzyme containing Trp 290 and Trp 91 suggests a mechanism for cross-subunit communication involving the helical backbone and dimer interface containing these two residues.
机译:色氨酸-tRNA合成酶的对称二聚体结构与酪氨酸-tRNA合成酶的对称二聚体结构相似,其结合行为和结构细节已得到详细阐明。形成中间色氨酸-AMP后,两个亚基的结构对于同源tRNA(Trp)的结合具有重要意义。已构建并表达了嗜热脂肪芽孢杆菌色氨酸-tRNA合成酶的单个色氨酸突变体,并将其用于探测两个亚基中该酶不同域的结构变化。在ATP存在下使用Trp类似物4-氟色氨酸和7-氮杂色氨酸进行底物滴定以形成相应的氨酰基-腺苷酸,发现整个活性亚基发生在活性位点以外的区域,发生了显着的结构变化。使用紫外线吸收和稳态荧光测量来监测特定Trp残基周围环境的变化。当用4-氟色氨酸滴定时,当一个亚基已形成Trp-AMP时,Trp 91和Trp 290荧光均被淬灭(分别为49%和22%)。 Trp 48的荧光增强了19%。建立了1:1二聚体/ 1-4FW-AMP络合物比例后,未观察到信号的进一步变化。使用以放射性标记的I-Trp为底物的阴离子交换滤纸结合试验,在非饱和条件下仅观察到与一个亚基的结合。这与使用7-氮杂色氨酸为底物的测定结果一致。观察到的变化延伸到未填充的亚基,据信在一个亚基形成色氨酸-AMP后会形成类似的结构。在含有Trp 290和Trp 91的酶区域中的运动表明涉及包含这两个残基的螺旋骨架和二聚体界面的跨亚单位通讯机制。

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