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首页> 外文期刊>Journal of Molecular Biology >Combining EPR with fluorescence spectroscopy to monitor conformational changes at the myosin nucleotide pocket.
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Combining EPR with fluorescence spectroscopy to monitor conformational changes at the myosin nucleotide pocket.

机译:将EPR与荧光光谱结合以监测肌球蛋白核苷酸口袋处的构象变化。

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We used spin-labeled nucleotide analogs and fluorescence spectroscopy to monitor conformational changes at the nucleotide-binding site of wild-type Dictyostelium discoideum (WT) myosin and a construct containing a single tryptophan at position F239 near the switch 1 loop. Electron paramagnetic resonance (EPR) spectroscopy and tryptophan fluorescence have been used previously to investigate changes at the myosin nucleotide site. A limitation of fluorescence spectroscopy is that it must be done on mutated myosins containing only a single tryptophan. A limitation of EPR spectroscopy is that one infers protein conformational changes from alterations in the mobility of an attached probe. These limitations have led to controversies regarding conclusions reached by the two approaches. For the first time, the data presented here allow direct correlations to be made between the results from the two spectroscopic approaches on the same proteins and extend our previous EPR studies to a nonmuscle myosin. EPR probe mobility indicates that the conformation of the nucleotide pocket of the WTSLADP (spin-labeled ADP) complex is similar to that of skeletal myosin. The pocket is closed in the absence of actin for both diphosphate and triphosphate nucleotide states. In the actin myosin diphosphate state, the pocket is in equilibrium between closed and open conformations, with the open conformation slightly more favorable than that seen for fast skeletal actomyosin. The EPR spectra for the mutant show similar conformations to skeletal myosin, with one exception: in the absence of actin, the nucleotide pocket of the mutant displays an open component that was approximately 4-5 kJ/mol more favorable than in skeletal or WT myosin. These observations resolve the controversies between the two techniques. The data from both techniques confirm that binding of myosin to actin alters the conformation of the myosin nucleotide pocket with similar but not identical energetics in both muscle and nonmuscle myosins.
机译:我们使用自旋标记的核苷酸类似物和荧光光谱法来监测野生型盘基网柄菌(WT)肌球蛋白的核苷酸结合位点处的构象变化,以及在开关1环附近的位置F239处包含单个色氨酸的构建体。先前已经使用电子顺磁共振(EPR)光谱和色氨酸荧光来研究肌球蛋白核苷酸位点的变化。荧光光谱法的局限性在于必须对仅包含一个色氨酸的突变肌球蛋白进行检测。 EPR光谱学的局限性在于,它可以从所连接探针的迁移率变化中推断出蛋白质构象变化。这些局限性导致了关于两种方法得出的结论的争议。首次,此处提供的数据允许在相同蛋白质的两种光谱方法的结果之间进行直接关联,并将我们先前的EPR研究扩展到非肌肉肌球蛋白。 EPR探针的迁移性表明WTSLADP(旋转标记的ADP)复合物核苷酸口袋的构象与骨骼肌肌球蛋白的相似。对于二磷酸和三磷酸核苷酸状态,在缺乏肌动蛋白的情况下将口袋封闭。在肌动蛋白肌球蛋白二磷酸状态下,囊袋处于封闭和开放构象之间的平衡状态,开放构象比快速骨骼肌动球蛋白略有优势。该突变体的EPR谱图显示出与骨骼肌肌球蛋白相似的构象,但有一个例外:在缺乏肌动蛋白的情况下,该突变体的核苷酸口袋显示出比骨骼肌或WT肌球蛋白更有利的开放组分约4-5 kJ / mol 。这些观察结果解决了两种技术之间的争议。来自这两种技术的数据证实,肌球蛋白与肌动蛋白的结合改变了肌球蛋白核苷酸口袋的构象,在肌肉和非肌肉肌球蛋白中具有相似但不相同的能量。

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