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High-yield expression and purification of isotopically labeled norcoclaurine synthase, a Bet v 1-homologous enzyme, from Thalictrum flavum for NMR studies

机译:高通量表达和纯化同位素标记的降芥子酸合酶(一种Bet v 1同源酶),来自黄藻,用于NMR研究

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摘要

The enzyme norcoclaurine synthase (NCS) found in the common meadow rue, Thalictrum flavum, and other plants shows sequence homology to members of the class 10 of pathogenesis related (PR 10) proteins that contains allergens such as the major birch pollen allergen Bet v 1, the major cherry allergen Pru av 1, and the major apple allergen Mal d 1. The enzyme is involved in the plant's secondary metabolism and is required for the production of bioactive secondary metabolites like morphine. Whereas the physiological function of PR 10 class allergens is still unknown, NCS activity has been studied in detail. Investigation of the structural properties of NCS by NMR spectroscopy can thus not only provide new information concerning the reaction mechanism of the enzyme, but is also expected to help clarify the long standing and heavily debated question on the physiological function as well as the reasons for the allergenic potential of members of this protein family. As the first important step towards the three-dimensional solution structure, we optimized expression of recombinant NCS in Escherichia coli and established an efficient purification protocol yielding high amounts of pure isotopically labeled active enzyme. The identity of NCS was confirmed by electrospray ionization mass spectrometry, and activity of the purified enzyme was determined by an assay detecting the radiolabeled reaction product. Spectroscopic analysis by NMR spectroscopy showed that the protein was properly folded with well defined tertiary structure. (C) 2007 Elsevier Inc. All rights reserved.
机译:在常见的草甸草皮,褐藻和其他植物中发现的降冰草酸合酶(NCS)与致病性相关(PR 10)蛋白质的10类成员具有序列同源性,该蛋白质包含过敏原,例如主要的桦树花粉过敏原Bet v 1 ,主要的樱桃过敏原Pru av 1和主要的苹果过敏原Mal d1。该酶参与植物的次生代谢,是产生生物活性次生代谢物(如吗啡)所必需的。虽然PR 10类过敏原的生理功能仍是未知的,但已经详细研究了NCS活性。因此,通过NMR光谱法研究NCS的结构特性不仅可以提供有关酶反应机理的新信息,而且有望有助于澄清长期以来人们争论不休的生理功能问题以及产生这种酶的原因。该蛋白家族成员的致敏潜力。作为迈向三维解决方案结构的重要第一步,我们优化了重组NCS在大肠杆菌中的表达,并建立了可产生大量纯同位素标记活性酶的有效纯化方案。通过电喷雾电离质谱法确认了NCS的身份,并且通过检测放射性标记的反应产物的测定法确定了纯化的酶的活性。通过NMR光谱的光谱分析表明该蛋白质被适当折叠并具有确定的三级结构。 (C)2007 Elsevier Inc.保留所有权利。

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