Hein Christopher, Löhr Frank, Schwarz Daniel, Dötsch Volker
Institute of Biophysical Chemistry and Center for Biomolecular Magnetic Resonance, Goethe University, Frankfurt, 60438, Germany.
Merck KGaA, Discovery Pharmacology, Global Research and Development, Darmstadt, 64293, Germany.
Biopolymers. 2017 May;107(5). doi: 10.1002/bip.23013.
Selective labeling with stable isotopes has long been recognized as a valuable tool in protein NMR to alleviate signal overlap and sensitivity limitations. In this study, combinatorial N-, C -, and C'-selective labeling has been used during the backbone assignment of human cyclophilin D to explore binding of an inhibitor molecule. Using a cell-free expression system, a scheme that involves N, 1- C, 2- C, fully N/ C, and unlabeled amino acids was optimized to gain a maximum of assignment information from three samples. This scheme was combined with time-shared triple-resonance NMR experiments, which allows a fast and efficient backbone assignment by giving the unambiguous assignment of unique amino acid pairs in the protein, the identity of ambiguous pairs and information about all 19 non-proline amino acid types. It is therefore well suited for binding studies where de novo assignments of amide H and N resonances need to be obtained, even in cases where sensitivity is the limiting factor.
长期以来,稳定同位素选择性标记一直被认为是蛋白质核磁共振(NMR)中减轻信号重叠和灵敏度限制的一种有价值的工具。在本研究中,在人亲环蛋白D的主链归属过程中使用了组合的N、C和C'选择性标记,以探索抑制剂分子的结合情况。使用无细胞表达系统,优化了一种涉及N、1- C、2- C、完全N/C和未标记氨基酸的方案,以便从三个样品中获得最大量的归属信息。该方案与分时三重共振NMR实验相结合,通过明确蛋白质中独特氨基酸对的归属、模糊对的身份以及所有19种非脯氨酸氨基酸类型的信息,实现快速有效的主链归属。因此,它非常适合于酰胺H和N共振的从头归属需要获得的结合研究,即使在灵敏度是限制因素的情况下也是如此。