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首页> 外文期刊>Angewandte Chemie >Proximity-Enabled Protein Crosslinking through Genetically Encoding Haloalkane Unnatural Amino Acids
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Proximity-Enabled Protein Crosslinking through Genetically Encoding Haloalkane Unnatural Amino Acids

机译:通过遗传编码卤代烷烃非天然氨基酸实现邻近的蛋白质交联

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摘要

The selective generation of covalent bonds between and within proteins would provide new avenues for studying protein function and engineering proteins with new properties. New covalent bonds were genetically introduced into proteins by enabling an unnatural amino acid (Uaa) to selectively react with a proximal natural residue. This proximity-enabled bioreactivity was expanded to a series of haloalkane Uaas. Orthogonal tRNA/synthetase pairs were evolved to incorporate these Uaas, which only form a covalent thioether bond with cysteine when positioned in close proximity. By using the Uaa and cysteine, spontaneous covalent bond formation was demonstrated between an affibody and its substrate Z protein, thereby leading to irreversible binding, and within the affibody to increase its thermostability. This strategy of proximity-enabled protein crosslinking (PEPC) may be generally expanded to target different natural amino acids, thus providing diversity and flexibility in covalent bond formation for protein research and protein engineering.
机译:蛋白质之间和蛋白质内部选择性共价键的产生将为研究蛋白质功能和工程蛋白质提供新的途径。通过使非天然氨基酸 (Uaa) 能够选择性地与近端天然残基反应,将新的共价键遗传引入蛋白质中。这种邻近的生物反应性被扩展到一系列卤代烷烃Uaas。正交 tRNA/合成酶对被进化为包含这些 Uaas,它们仅在靠近时与半胱氨酸形成共价硫醚键。通过使用 Uaa 和半胱氨酸,证明了亲和体与其底物 Z 蛋白之间的自发共价键形成,从而导致不可逆的结合,并在亲和体内增加其热稳定性。这种邻近蛋白质交联 (PEPC) 策略通常可以扩展到靶向不同的天然氨基酸,从而为蛋白质研究和蛋白质工程提供共价键形成的多样性和灵活性。

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