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Utilizing Selenocysteine for Expressed Protein Ligation and Bioconjugations

机译:利用硒代半胱氨酸表达的蛋白质连接和生物结合。

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摘要

Employing selenocysteine-containing protein fragments to form the amide bond between respective protein fragments significantly extends the current capabilities of the widely used protein engineering method, expressed protein ligation. Selenocysteine-mediated ligation is noteworthy for its high yield and efficiency. However, it has so far been restricted to solid-phase synthesized seleno-peptides and thus constrained by where the selenocysteine can be positioned. Here we employ heterologously expressed seleno-fragments to overcome the placement and size restrictions in selenocysteine-mediated chemical ligation. Following ligation, the selenocysteine can be deselenized into an alanine or serine, resulting in nonselenopro-teins. This greatly extends the flexibility in selecting the conjugation site in expressed protein ligations with no influence on native cysteines. Furthermore, the selenocysteine can be used to selectively introduce site-specific protein modifications. Therefore, selenocysteine-mediated expressed protein ligation simplifies incorporation of post-translational modifications into the protein scaffold.
机译:利用含硒代半胱氨酸的蛋白质片段在各个蛋白质片段之间形成酰胺键,可显着扩展广泛使用的蛋白质工程方法(表达的蛋白质连接)的当前功能。硒代半胱氨酸介导的连接因其高产率和高效率而值得注意。但是,迄今为止,它仅限于固相合成的硒肽,因此受到硒代半胱氨酸的定位限制。在这里,我们采用异源表达的硒片段,以克服硒代半胱氨酸介导的化学连接中的位置和大小限制。连接后,可以将硒代半胱氨酸去硒化为丙氨酸或丝氨酸,得到非硒代蛋白。这极大地扩展了在表达的蛋白质连接中选择接合位点的灵活性,而对天然半胱氨酸没有影响。此外,硒代半胱氨酸可用于选择性地引入位点特异性蛋白质修饰。因此,硒代半胱氨酸介导的表达的蛋白质连接简化了翻译后修饰结合到蛋白质支架中。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第9期|3430-3437|共8页
  • 作者单位

    Department of Chemistry & Biochemistry, University of Delaware, Newark, Delaware 19716, United States;

    Department of Chemistry & Biochemistry, University of Delaware, Newark, Delaware 19716, United States;

    Department of Chemistry & Biochemistry, University of Delaware, Newark, Delaware 19716, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:56

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