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Site-selective characterization of Src homology 3 domain molecular recognition with cyanophenylalanine infrared probes

机译:氰基苯丙氨酸红外探针的Src同源性3域分子识别的定点表征

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Local heterogeneity of microenvironments in proteins is important in biological function, but difficult to characterize experimentally. One approach is the combination of infrared (IR) spectroscopy and site-selective incorporation of probe moieties with spectrally resolved IR absorptions that enable characterization within inherently congested protein IR spectra. We employed this method to study molecular recognition of a Src homology 3 (SH3) domain from the yeast protein Sho1 for a peptide containing the proline-rich recognition sequence of its physiological binding partner Pbs2. Nitrile IR probes were introduced at four distinct sites in the protein by selective incorporation of p-cyanophenylalanine via the amber codon suppressor method and characterized by IR spectroscopy. Variation among the IR absorption bands reports on heterogeneity in local residue environments dictated by the protein structure, as well as on residue-dependent changes upon peptide binding. The study informs on the molecular recognition of SH3(Sho1) and illustrates the speed and simplicity of this approach for characterization of select microenvironments within proteins.
机译:蛋白质中微环境的局部异质性对生物学功能很重要,但很难通过实验表征。一种方法是将红外(IR)光谱和探针部分与光谱分辨的IR吸收位点选择性结合在一起,从而在固有拥挤的蛋白质IR光谱内进行表征。我们采用了这种方法来研究酵母蛋白Sho1中Src同源3(SH3)域的分子识别,该肽包含其生理结合伴侣Pbs2富含脯氨酸的识别序列。通过琥珀色密码子抑制方法通过选择性掺入对氰基苯丙氨酸,在蛋白质的四个不同位点引入腈IR探针,并通过IR光谱进行表征。 IR吸收带之间的变化报告了蛋白质结构决定的局部残基环境中的异质性,以及肽结合后残基依赖性变化。该研究为SH3(Sho1)的分子识别提供了信息,并说明了该方法表征蛋白质中所选微环境的速度和简便性。

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