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Difference Raman spectroscopic studies of ligand-protein interactions

机译:配体-蛋白质相互作用的差异拉曼光谱研究

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Abstract: arize here our recent advancements in application of Raman spectroscopy to studies of protein-ligand interactions. Two main experimental strategies are shown to yield a wealth of information regarding the specific binding 'handles' which contribute to protein-ligand affinity and selectivity. Non-resonance Raman difference spectroscopy, in which the vibrational spectrum of the bound ligand is obtained by subtraction of the apo-protein spectrum from that of the complex is applied to chymotrypsin and aspartate aminotransferase. In both cases, vibrational information derived from previous resonance Raman measurements is shown to be misleading due to photochemically-induced changes in substrate conformation. Isotope editing extends the application of Raman difference spectroscopy to systems where measurements of the apo-protein spectrum is not a viable option because the bound ligand induces too many protein conformational changes that show up in the difference spectrum or in cases where the apoprotein is unstable. A difference spectrum is formed between the two protein-ligand complexes, one of which is specifically labeled with a stable isotope. Vibrational modes which are associated with the isotropic tag show as spectral shifts in the difference spectrum, while all other bands cancel. The power of this method is shown by studies the binding of phosphate of GDP to EF-Tu, the elongation factor from E. Coli. and of glucose-phosphate to phosphoglucomutase, PGM, where $+18$/O labeling of phosphate reveals binding-induced changes in the vibrational modes of the phosphate moiety.!19
机译:摘要:在这里总结我们在拉曼光谱技术用于蛋白质-配体相互作用研究中的最新进展。已显示出两种主要的实验策略,可产生有关特定结合“手柄”的大量信息,这些信息有助于蛋白质-配体的亲和力和选择性。非共振拉曼差光谱法,其中通过从复合物中减去载脂蛋白光谱获得结合配体的振动光谱,将其应用于糜蛋白酶和天冬氨酸转氨酶。在这两种情况下,由于光化学诱导的底物构象变化,从先前的共振拉曼测量得出的振动信息都显示出误导性。同位素编辑将拉曼差异光谱学的应用扩展到了对脱辅基蛋白质谱测量不可行的系统上,因为结合的配体会诱导太多蛋白质构象变化,这些变化会在差异谱中显示或在脱辅基蛋白质不稳定的情况下出现。两种蛋白质-配体复合物之间形成差异光谱,其中之一被稳定同位素特异性标记。与各向同性标签相关的振动模式显示为差异频谱中的频谱偏移,而所有其他频段都抵消了。通过研究GDP磷酸盐与EF-Tu(大肠杆菌的延伸因子)的结合,可以证明这种方法的强大功能。 19磷酸化为磷酸葡萄糖变位酶PGM,其中$ + 18 $ / O磷酸标记显示了结合诱导的磷酸部分振动模式的变化。19

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