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首页> 外文期刊>Protein engineering design & selection: PEDS >Transglutaminase-mediated N- and C-terminal fluorescein labeling of a protein can support the native activity of the modified protein
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Transglutaminase-mediated N- and C-terminal fluorescein labeling of a protein can support the native activity of the modified protein

机译:转谷氨酰胺酶介导的蛋白质的N和C末端荧光素标记可支持修饰蛋白质的天然活性

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摘要

Fluorescein and its analogs are among the best fluorophores to label proteins and the labeling generally involves chemical modification of a translated protein. Using this methodology, labeling at a specific position remains difficult. It is known that the guinea pig liver transglutaminase (TGase)-catalyzed enzymatic modification method can allow terminal-specific fluorophore labeling of a protein by monodansylcadaverine. However, native activity of the fluorescent protein has not been investigated so far, nor has direct comparison between the chemical modification and the TGase-catalyzed modification been attempted. Therefore, we compared the possibility of fluorescein labeling via chemical labeling and via TGase-catalyzed modification. The latter method was found to be very practical and overcame some of the problems associated with the specificity of the former; fluorescein was covalently attached only to the N- or C-terminal site of glutathione S-transferase when the reaction was catalyzed by TGase and the resulting labeled protein completely retained its native activity. The TGase-mediated labeling occurred not only at room temperature but also at 4 ℃ to the same extent, which is more desirable for preventing the inactivation of proteins.
机译:荧光素及其类似物是标记蛋白质的最佳荧光团之一,标记通常涉及翻译蛋白质的化学修饰。使用这种方法,在特定位置贴标签仍然很困难。众所周知,豚鼠肝转谷氨酰胺酶(TGase)催化的酶修饰方法可以通过单丹磺酰尸胺对蛋白质进行末端特异性荧光标记。然而,迄今为止尚未研究荧光蛋白的天然活性,也未尝试直接比较化学修饰和TGase催化的修饰。因此,我们比较了通过化学标记和TGase催化修饰进行荧光素标记的可能性。发现后一种方法非常实用,克服了与前者的特异性有关的一些问题。当用TGase催化该反应时,荧光素仅共价连接到谷胱甘肽S-转移酶的N或C末端,而标记的蛋白质完全保留了其天然活性。 TGase介导的标记不仅在室温下发生,而且在4℃下发生的程度相同,这对于防止蛋白质失活是更理想的。

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