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首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >pH-Induced conformational changes of BSA in fluorescent AuNCs@BSA and its effects on NCs emission
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pH-Induced conformational changes of BSA in fluorescent AuNCs@BSA and its effects on NCs emission

机译:荧光Auncs @ BSA中BSA的PH诱导的构象变化及其对NCS排放的影响

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摘要

We investigated the pH-induced fluorescence changes of BSA-protected gold nanoclusters, Aui6NCs@BSA, and the corresponding conformational changes of ligand protein by fluorescence, circular dichrosim (CD) and 1R spectral measurements. The studies presented here demonstrated that BSA in AuNCs@BSA underwent identifiable conformational changes on both the secondary and the tertiary structure levels/The results of CD and IR interpreted the significant change of second structures at extreme acidity and alkaline, where more unordered structures were gained. Of note was that the extreme alkaline (pH = 11.43) induced the changes from exposed to buried α-helices, which was different from the pH-induced structural changes of BSA. In addition, the large fluorescence intensity gap of tryptophan between AuNCs@BSA and native BSA indicated efficient energy transfer took place between BSA and AuNCs, implying that the gold core resided near tryptophan in BSA.
机译:通过荧光,圆形二氯辛(CD)和1R光谱测量,研究了BSA保护的金纳米蛋白,AU6NCS @ BSA的相应构象变化和配体蛋白的相应构象变化的pH诱导的荧光变化。 这里提出的研究表明,Auncs @ BSA中的BSA接受了次要和三级结构水平的可识别构象变化/ CD和IR的结果解释了极端酸度和碱性下的第二结构的显着变化,从而获得了更多的无序结构 。 值得注意的是,极端碱性(pH = 11.43)诱导从暴露于掩埋α-螺旋的变化,这与BSA的pH诱导的结构变化不同。 此外,在BSA和Auncs之间发生了ununcs @ BSA和Native BSA之间的色氨酸的大荧光强度间隙,这意味着在BSA中的色氨酸附近仍然围绕着金芯。

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