Depsipeptide substrates for sortase-mediated N-terminal protein ligation

被引:0
|
作者
Daniel J Williamson
Michael E Webb
W Bruce Turnbull
机构
[1] School of Chemistry and Astbury Centre for Structural Molecular Biology,
[2] University of Leeds,undefined
来源
Nature Protocols | 2014年 / 9卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Technologies that allow the efficient chemical modification of proteins under mild conditions are widely sought after. Sortase-mediated peptide ligation provides a strategy for modifying the N or C terminus of proteins. This protocol describes the use of depsipeptide substrates (containing an ester linkage) with sortase A (SrtA) to completely modify proteins carrying a single N-terminal glycine residue under mild conditions in 4–6 h. The SrtA-mediated ligation reaction is reversible, so most labeling protocols that use this enzyme require a large excess of both substrate and sortase to produce high yields of ligation product. In contrast, switching to depsipeptide substrates effectively renders the reaction irreversible, allowing complete labeling of proteins with a small excess of substrate and catalytic quantities of sortase. Herein we describe the synthesis of depsipeptide substrates that contain an ester linkage between a threonine and glycolic acid residue and an N-terminal FITC fluorophore appended via a thiourea linkage. The synthesis of the depsipeptide substrate typically takes 2–3 d.
引用
收藏
页码:253 / 262
页数:9
相关论文
共 50 条
  • [21] Manipulating virus-like particles via sortase-mediated ligation
    Western, Brian
    Patterson, Dustin
    Krugler, Paul
    Terra, Matthew
    Hicks, Matthew
    Douglas, Trevor
    Schwarz, Benjamin
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 251
  • [22] Attachment of an NMR-invisible solubility enhancement tag using a sortase-mediated protein ligation method
    Kobashigawa, Yoshihiro
    Kumeta, Hiroyuki
    Ogura, Kenji
    Inagaki, Fuyuhiko
    JOURNAL OF BIOMOLECULAR NMR, 2009, 43 (03) : 145 - 150
  • [23] Attachment of an NMR-invisible solubility enhancement tag using a sortase-mediated protein ligation method
    Yoshihiro Kobashigawa
    Hiroyuki Kumeta
    Kenji Ogura
    Fuyuhiko Inagaki
    Journal of Biomolecular NMR, 2009, 43
  • [24] Empowering Site-Specific Bioconjugations In Vitro and In Vivo: Advances in Sortase Engineering and Sortase-Mediated Ligation
    Zou, Zhi
    Ji, Yu
    Schwaneberg, Ulrich
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024, 63 (12)
  • [25] Covalent Attachment of Proteins to Solid Supports and Surfaces via Sortase-Mediated Ligation
    Chan, Lilyan
    Cross, Hannah F.
    She, Joseph K.
    Cavalli, Gabriel
    Martins, Hugo F. P.
    Neylon, Cameron
    PLOS ONE, 2007, 2 (11):
  • [26] End-Point Immobilization of Recombinant Thrombomodulin via Sortase-Mediated Ligation
    Jiang, Rui
    Weingart, Jacob
    Zhang, Hailong
    Ma, Yong
    Sun, Xue-Long
    BIOCONJUGATE CHEMISTRY, 2012, 23 (03) : 643 - 649
  • [27] Covalent modification of synthetic hydrogels with bioactive proteins via sortase-mediated ligation
    Renggli, Kasper
    Cambria, Elena
    Ahrens, Caroline Chopko
    Cook, Christi
    Imperiali, Barbara
    Griffith, Linda
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 250
  • [28] Covalent Modification of Synthetic Hydrogels with Bioactive Proteins via Sortase-Mediated Ligation
    Cambria, Elena
    Renggli, Kasper
    Ahrens, Caroline C.
    Cook, Christi D.
    Kroll, Carsten
    Krueger, Andrew T.
    Imperiali, Barbara
    Griffith, Linda G.
    BIOMACROMOLECULES, 2015, 16 (08) : 2316 - 2326
  • [29] Influence of Residues Outside the Canonical LPXTG Motif in Promoting Sortase-Mediated Ligation Reactions
    Antos, John
    PROTEIN SCIENCE, 2024, 33 : 132 - 132
  • [30] Site-specific antibody labeling for brain PET using sortase-mediated ligation
    van den Broek, S. Lopes
    Schlein, E.
    Laurell, K.
    Eriksson, J.
    Godec, A.
    Hultqvist, G.
    Syvanen, S.
    Sehlin, D.
    EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2024, 51 : S434 - S435