Synthesis of Selectively (13)C/(2)H/(15)N- Labeled Arginine to Probe Protein Conformation and Interaction by NMR Spectroscopy

利用核磁共振波谱法选择性合成(13)C/(2)H/(15)N标记的精氨酸,以探测蛋白质构象和相互作用

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Abstract

The charged arginine side chain is unique in determining many innate properties of proteins, contributing to stability and interaction surfaces, and directing allosteric regulation and enzymatic catalysis. NMR experiments can be used to reveal these processes at the molecular level, but it often requires selective insertion of carbon-13, nitrogen-15, and deuterium at defined atomic positions. We introduce a method to endow arginine residues with defined isotope patterns, combining synthetic organic chemistry and cell-based protein overexpression. The resulting proteins feature NMR active spin systems with optimized relaxation pathways leading to simplified NMR spectra with a sensitive response to changes in the chemical environment of the nuclei observed.

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