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Attomole level protein sequencing by Edman degradation coupledwith accelerator mass spectrometry

机译:通过埃德曼降解耦合的阿托莫尔水平蛋白质测序加速器质谱

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摘要

Edman degradation remains the primary method for determining the sequence of proteins. In this study, accelerator mass spectrometry was used to determine the N-terminal sequence of glutathione S-transferase at the attomole level with zeptomole precision using a tracer of 14C. The transgenic transferase was labeled by growing transformed Escherichia coli on [14C]glucose and purified by microaffinity chromatography. An internal standard of peptides on a solid phase synthesized to release approximately equal amounts of all known amino acids with each cycle were found to increase yield of gas phase sequencing reactions and subsequent semimicrobore HPLC as did a lactoglobulin carrier. This method is applicable to the sequencing of proteins from cell culture and illustrates a path to more general methods for determining N-terminal sequences with high sensitivity.
机译:埃德曼降解仍然是确定蛋白质序列的主要方法。在这项研究中,使用加速器质谱仪使用 14 C示踪剂,以苯妥英钠精密度测定了处于原子水平的谷胱甘肽S-转移酶的N端序列。通过在[ 14 C]葡萄糖上生长转化的大肠杆菌来标记转基因转移酶,并通过微亲和层析纯化。发现在固相上合成的肽的内标与每个周期释放大约等量的所有已知氨基酸,可以增加气相测序反应和随后的半微孔HPLC的产率,就像乳球蛋白载体一样。该方法适用于细胞培养物中蛋白质的测序,并阐明了通向更通用的方法以高灵敏度确定N端序列的方法。

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