首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Fluorescence characterization of Trp 21 in rat glutathione S-transferase 1-1: microconformational changes induced by S-hexyl glutathione.
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Fluorescence characterization of Trp 21 in rat glutathione S-transferase 1-1: microconformational changes induced by S-hexyl glutathione.

机译:大鼠谷胱甘肽S-转移酶1-1中Trp 21的荧光特性:S-己基谷胱甘肽诱导的微构象变化。

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摘要

The glutathione S-transferase (GST) isoenzyme A1-1 from rat contains a single tryptophan, Trp 21, which is expected to lie within alpha-helix 1 based on comparison with the X-ray crystal structures of the pi- and mu-class enzymes. Steady-state and multifrequency phase/modulation fluorescence studies have been performed in order to characterize the fluorescence parameters of this tryptophan and to document ligand-induced conformational changes in this region of the protein. Addition of S-hexyl glutathione to GST isoenzyme A1-1 causes an increase in the steady-state fluorescence intensity, whereas addition of the substrate glutathione has no effect. Frequency-domain excited-state lifetime measurements indicate that Trp 21 exhibits three exponential decays in substrate-free GST. In the presence of S-hexyl glutathione, the data are also best described by the sum of three exponential decays, but the recovered lifetime values change. For the substrate-free protein, the short lifetime component contributes 9-16% of the total intensity at four wavelengths spanning the emission. The fractional intensity of this lifetime component is decreased to less than 3% in the presence of S-hexyl glutathione. Steady-state quenching experiments indicate that Trp 21 is insensitive to quenching by iodide, but it is readily quenched by acrylamide. Acrylamide-quenching experiments at several emission wavelengths indicate that the long-wavelength components become quenched more easily in the presence of S-hexyl glutathione. Differential fluorescence polarization measurements also have been performed, and the data describe the sum of two anisotropy decay rates. The recovered rotational correlation times for this model are 26 ns and 0.81 ns, which can be attributed to global motion of the protein dimer, and fast local motion of the tryptophan side chain. These results demonstrate that regions of GST that are not in direct contact with bound substrates are mobile and undergo microconformational rearrangement when the "H-site" is occupied.
机译:来自大鼠的谷胱甘肽S-转移酶(GST)同工酶A1-1含有单个色氨酸Trp 21,根据与pi和mu类的X射线晶体结构比较,该色氨酸预计位于alpha-螺旋1内酶。为了表征该色氨酸的荧光参数并记录在该蛋白区域中配体诱导的构象变化,已经进行了稳态和多频相位/调制荧光研究。将S-己基谷胱甘肽添加到GST同工酶A1-1中会导致稳态荧光强度增加,而底物谷胱甘肽的添加则没有效果。频域激发态寿命测量表明,Trp 21在无底物的GST中表现出三个指数衰减。在存在S-己基谷胱甘肽的情况下,数据也可以通过三个指数衰减的总和来最好地描述,但是恢复的寿命值会发生变化。对于无底物的蛋白质,短寿命成分在跨越发射的四个波长处占总强度的9-16%。在存在S-己基谷胱甘肽的情况下,该寿命组分的分数强度降低至小于3%。稳态猝灭实验表明,Trp 21对碘化物猝灭不敏感,但很容易被丙烯酰胺猝灭。在几个发射波长处的丙烯酰胺猝灭实验表明,在存在S-己基谷胱甘肽的情况下,长波组分更容易被淬灭。还进行了差分荧光偏振测量,数据描述了两个各向异性衰减率的总和。该模型的恢复旋转相关时间为26 ns和0.81 ns,这可以归因于蛋白质二聚体的整体运动和色氨酸侧链的快速局部运动。这些结果表明,不与结合的底物直接接触的GST区域是可移动的,并且当“ H-位点”被占据时发生微构象重排。

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