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Can infrared spectroscopy provide information on protein-protein interactions?

机译:红外光谱可以提供有关蛋白质-蛋白质相互作用的信息吗?

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For most biophysical techniques, characterization of protein-protein interactions is challenging; this is especially true with methods that rely on a physical phenomenon that is common to both of the interacting proteins. Thus, for example, in IR spectroscopy, the carbonyl vibration (1600-1700 cm~1) associated with the amide bonds from both of the interacting proteins will overlap extensively, making the interpretation of spectral changes very complicated. Isotope-edited infrared spectroscopy, where one of the interacting proteins is uniformly labelled with ~(13)C or ~(13)C,~(15)N has been introduced as a solution to this problem, enabling the study of protein-protein interactions using IR spectroscopy. The large shift of the amide I band (approx. 45 cm"1 towards lower frequency) upon ~(13)C labelling of one of the proteins reveals the amide I band of the unlabelled protein, enabling it to be used as a probe for monitoring conformational changes. With site-specific isotopic labelling, structural resolution at the level of individual amino acid residues can be achieved. Furthermore, the ability to record IR spectra of proteins in diverse environments means that isotope-edited IR spectroscopy can be used to structurally characterize difficult systems such as protein-protein complexes bound to membranes or large insoluble peptide/protein aggregates. In the present article, examples of application of isotope-edited IR spectroscopy for studying protein-protein interactions are provided.
机译:对于大多数生物物理技术而言,表征蛋白质间相互作用是一项挑战。对于依赖于两种相互作用蛋白共有的物理现象的方法,尤其如此。因此,例如,在IR光谱中,与来自两个相互作用蛋白的酰胺键相关的羰基振动(1600-1700cm-1)将广泛重叠,从而使光谱变化的解释非常复杂。同位素编辑红外光谱法,其中相互作用的蛋白质之一被〜(13)C或〜(13)C,〜(15)N均匀标记,已被引入作为解决此问题的方法,从而使蛋白质-蛋白质的研究成为可能红外光谱的相互作用。 〜(13)C标记其中一种蛋白质后,酰胺I谱带发生较大移动(朝较低频率大约45 cm“ 1处),揭示了未标记蛋白的酰胺I谱带,使其可用作探针监测构象变化,通过位点特异性同位素标记,可以实现单个氨基酸残基水平的结构拆分;此外,在各种环境中记录蛋白质红外光谱的能力意味着可以使用同位素编辑的红外光谱在结构上表征困难的系统,例如与膜结合的蛋白质-蛋白质复合物或大的不溶性肽/蛋白质聚集体。在本文中,提供了应用同位素编辑红外光谱技术研究蛋白质-蛋白质相互作用的实例。

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