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无标签蛋白修饰的脂酰基辅酶 A 连接酶 A:探索底物耐受性。

Tag-free protein modification by lipoate ligase A: exploring substrate tolerance.

机构信息

Ajinomoto Co., Inc., 1-1 Suzuki-cho, Kawasaki, Kanagawa, 210-8681, Japan.

出版信息

Anal Sci. 2024 Jun;40(6):1111-1119. doi: 10.1007/s44211-024-00534-6. Epub 2024 Mar 19.

Abstract

This study delves into the functional intricacies of lipoate ligase A (LplA), an enzyme showing great promise in bioconjugation due to its unique capacity for introducing azido groups into proteins without requiring a genetic tag. We aimed to enhance the understanding of LplA's functionality, particularly its substrate tolerance and the reliability of various analytical techniques. A pivotal aspect of our approach was incorporating azido groups into a range of proteins, followed by the addition of the fluorescent molecule Cy3 via click chemistry. Analysis of fluorescent intensity in the altered proteins indicated varying degrees of conjugation. Additionally, phenyl resin-based RP-HPLC facilitated effective separation of modified proteins, unmodified proteins, and remaining fluorescent tags post-separation. SASA analysis provided insights into conjugation trends, guiding the identification of proteins amenable to LplA's tag-free modification. Our findings demonstrate LplA's broad substrate tolerability for protein modification.

摘要

本研究深入探讨了脂酰基辅酶 A 连接酶 A(LplA)的功能复杂性,由于其独特的在蛋白质中引入叠氮基团的能力,而无需基因标记,该酶在生物偶联中具有很大的应用前景。我们旨在增强对 LplA 功能的理解,特别是其底物耐受性和各种分析技术的可靠性。我们方法的一个关键方面是将叠氮基团引入一系列蛋白质中,然后通过点击化学将荧光分子 Cy3 添加到其中。对改变后的蛋白质的荧光强度进行分析表明,偶联程度不同。此外,基于苯基树脂的反相高效液相色谱(RP-HPLC)有助于有效分离修饰后的蛋白质、未修饰的蛋白质和分离后剩余的荧光标记物。SASA 分析提供了有关偶联趋势的见解,指导鉴定可接受 LplA 无标记修饰的蛋白质。我们的研究结果表明,LplA 对蛋白质修饰具有广泛的底物耐受性。

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