Steric-Deficient Oligoglycine Surrogates Facilitate Multivalent and Bifunctional Nanobody Synthesis via Combined Sortase A Transpeptidation and Click Chemistry. 2023

Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton 3800, Victoria, Australia.

Conferring multifunctional properties to proteins via enzymatic approaches has greatly facilitated recent progress in protein nanotechnology. In this regard, sortase (Srt) A transpeptidation has facilitated many of these developments due to its exceptional specificity, mild reaction conditions, and complementation with other bioorthogonal techniques, such as click chemistry. In most of these developments, Srt A is used to seamlessly tether oligoglycine-containing molecules to a protein of interest that is equipped with the enzyme's recognition sequence, LPXTG. However, the dependence on oligoglycine attacking nucleophiles and the associated cost of certain derivatives (e.g., cyclooctyne) limit the utility of this approach to lab-scale applications only. Thus, the quest to identify appropriate alternatives and understand their effectiveness remains an important area of research. This study identifies that steric and nucleophilicity-associated effects influence Srt A transpeptidation when two oligoglycine surrogates were examined. The approach was further used in complementation with click chemistry to synthesize bivalent and bifunctional nanobody conjugates for application in epithelial growth factor receptor targeting. The overall technique and tools developed here may facilitate the advancement of future nanotechnologies.

UI MeSH Term Description Entries
D003546 Cysteine Endopeptidases ENDOPEPTIDASES which have a cysteine involved in the catalytic process. This group of enzymes is inactivated by CYSTEINE PROTEINASE INHIBITORS such as CYSTATINS and SULFHYDRYL REAGENTS.
D001426 Bacterial Proteins Proteins found in any species of bacterium. Bacterial Gene Products,Bacterial Gene Proteins,Gene Products, Bacterial,Bacterial Gene Product,Bacterial Gene Protein,Bacterial Protein,Gene Product, Bacterial,Gene Protein, Bacterial,Gene Proteins, Bacterial,Protein, Bacterial,Proteins, Bacterial
D057930 Click Chemistry Organic chemistry methodology that mimics the modular nature of various biosynthetic processes. It uses highly reliable and selective reactions designed to "click" i.e., rapidly join small modular units together in high yield, without offensive byproducts. In combination with COMBINATORIAL CHEMISTRY TECHNIQUES, it is used for the synthesis of new compounds and combinatorial libraries. Click Chemical Reactions,Click Chemical Techniques,Chemical Reaction, Click,Chemical Reactions, Click,Chemical Technique, Click,Chemical Techniques, Click,Chemistries, Click,Chemistry, Click,Click Chemical Reaction,Click Chemical Technique,Click Chemistries,Reaction, Click Chemical,Reactions, Click Chemical,Technique, Click Chemical,Techniques, Click Chemical
D019881 Aminoacyltransferases Enzymes that catalyze the transfer of an aminoacyl group from donor to acceptor resulting in the formation of an ester or amide linkage. EC 2.3.2.

Related Publications

Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
December 2005, Chemical communications (Cambridge, England),
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
September 2013, Nature protocols,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
November 2010, Organic & biomolecular chemistry,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
September 2021, Cancers,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
September 2013, ACS medicinal chemistry letters,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
August 2007, Organic & biomolecular chemistry,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
September 2005, Chemical communications (Cambridge, England),
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
September 2009, Journal of the American Chemical Society,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
October 2018, Annual review of cell and developmental biology,
Eugene M Obeng, and David L Steer, and Alex Fulcher, and Kylie M Wagstaff
February 2010, Journal of the American Chemical Society,
Copied contents to your clipboard!