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Site-specific sortase-catalyzed lipidation of proteins

Tatiana Dmitrievna Melikhova 1
Tatiana Dmitrievna Melikhova
Nicolai Vladimirovich Bovin 1
Nicolai Vladimirovich Bovin
Natalia Sergeevna Shoshina 2
Natalia Sergeevna Shoshina
Tatiana Vladimirovna Bobik 1
Tatiana Vladimirovna Bobik
Leonid A Gavrilov 1
Leonid A Gavrilov
Marina Aleksandrovna Sablina 1
Marina Aleksandrovna Sablina
Eugenia Markovna Rapoport 1
Eugenia Markovna Rapoport
Vasily Nikolaevich Stepanenko 2
Vasily Nikolaevich Stepanenko
Alexander Borisovich Tuzikov 1
Alexander Borisovich Tuzikov
2 I. M. Sechenov First Moscow State Medical University, 119991 Moscow, Russian Federation
Published 2025-02-18
CommunicationVolume 35, Issue 2, 136-138
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Melikhova T. D. et al. Site-specific sortase-catalyzed lipidation of proteins // Mendeleev Communications. 2025. Vol. 35. No. 2. pp. 136-138.
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Melikhova T. D., Bovin N. V., Shoshina N. S., Bobik T. V., Gavrilov L. A., Sablina M. A., Rapoport E. M., Stepanenko V. N., Tuzikov A. B. Site-specific sortase-catalyzed lipidation of proteins // Mendeleev Communications. 2025. Vol. 35. No. 2. pp. 136-138.
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TY - JOUR
DO - 10.71267/mencom.7613
UR - https://mendcomm.colab.ws/publications/10.71267/mencom.7613
TI - Site-specific sortase-catalyzed lipidation of proteins
T2 - Mendeleev Communications
AU - Melikhova, Tatiana Dmitrievna
AU - Bovin, Nicolai Vladimirovich
AU - Shoshina, Natalia Sergeevna
AU - Bobik, Tatiana Vladimirovna
AU - Gavrilov, Leonid A
AU - Sablina, Marina Aleksandrovna
AU - Rapoport, Eugenia Markovna
AU - Stepanenko, Vasily Nikolaevich
AU - Tuzikov, Alexander Borisovich
PY - 2025
DA - 2025/02/18
PB - Mendeleev Communications
SP - 136-138
IS - 2
VL - 35
ER -
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@article{2025_Melikhova,
author = {Tatiana Dmitrievna Melikhova and Nicolai Vladimirovich Bovin and Natalia Sergeevna Shoshina and Tatiana Vladimirovna Bobik and Leonid A Gavrilov and Marina Aleksandrovna Sablina and Eugenia Markovna Rapoport and Vasily Nikolaevich Stepanenko and Alexander Borisovich Tuzikov},
title = {Site-specific sortase-catalyzed lipidation of proteins},
journal = {Mendeleev Communications},
year = {2025},
volume = {35},
publisher = {Mendeleev Communications},
month = {Feb},
url = {https://mendcomm.colab.ws/publications/10.71267/mencom.7613},
number = {2},
pages = {136--138},
doi = {10.71267/mencom.7613}
}
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Melikhova, Tatiana Dmitrievna, et al. “Site-specific sortase-catalyzed lipidation of proteins.” Mendeleev Communications, vol. 35, no. 2, Feb. 2025, pp. 136-138. https://mendcomm.colab.ws/publications/10.71267/mencom.7613.

Keywords

bioconjugation
CMG
lipid tag
mCherry
protein A
sortase А

Abstract

A methodology for the enzymatic ligation of proteins with a lipid is proposed, a feature of which is the use of a hydrophilized [thanks to a CMG(2) spacer] and therefore highly water-soluble lipid. Its H2N-Gly5 terminus and the recombinant protein amino acid sequence LPETG are substrates of the enzyme sortase A. Two lipid-ligated proteins, red fluorescent mCherry and Protein A, are shown to be inserted into the cell membrane.

References

1.
Peptidomimetics via copper-catalyzed azide–alkyne cycloadditions
Angell Y.L., Burgess K.
Chemical Society Reviews, 2007
2.
The Staudinger ligation-a gift to chemical biology.
Köhn M., Breinbauer R.
Angewandte Chemie - International Edition, 2004
3.
Exploiting cell surface thiols to enhance cellular uptake.
4.
Lipid modification of proteins through sortase-catalyzed transpeptidation.
Antos J.M., Miller G.M., Grotenbreg G.M., Ploegh H.L.
Journal of the American Chemical Society, 2008
6.
Simultaneous Site-Specific Dual Protein Labeling Using Protein Prenyltransferases
Zhang Y., Blanden M.J., Sudheer C., Gangopadhyay S.A., Rashidian M., Hougland J.L., Distefano M.D.
Bioconjugate Chemistry, 2015
7.
Chemoenzymatic Labeling of Proteins for Imaging in Bacterial Cells
Ho S.H., Tirrell D.A.
Journal of the American Chemical Society, 2016
8.
SARS-CoV-2 Peptide Bioconjugates Designed for Antibody Diagnostics
Ryzhov I.M., Tuzikov A.B., Nizovtsev A.V., Baidakova L.K., Galanina O.E., Shilova N.V., Ziganshina M.M., Dolgushina N.V., Bayramova G.R., Sukhikh G.T., Williams E.C., Nagappan R., Henry S.M., Bovin N.V.
Bioconjugate Chemistry, 2021
9.
Sortase A: A chemoenzymatic approach for the labeling of cell surfaces
Kumari P., Bowmik S., Paul S.K., Biswas B., Banerjee S.K., Murty U.S., Ravichandiran V., Mohan U.
Biotechnology and Bioengineering, 2021
10.
A Designed Peptide Ligase for Total Synthesis of Ribonuclease A with Unnatural Catalytic Residues
Jackson D.Y., Burnier J., Quan C., Stanley M., Tom J., Wells J.A.
Science, 1994
12.
Purification and characterization of sortase, the transpeptidase that cleaves surface proteins of Staphylococcus aureus at the LPXTG motif
Ton-That H., Liu G., Mazmanian S.K., Faull K.F., Schneewind O.
Proceedings of the National Academy of Sciences of the United States of America, 1999
13.
Subtiligase: a tool for semisynthesis of proteins.
Chang T.K., Jackson D.Y., Burnier J.P., Wells J.A.
Proceedings of the National Academy of Sciences of the United States of America, 1994
14.
Targeting quantum dots to surface proteins in living cells with biotin ligase
Howarth M., Takao K., Hayashi Y., Ting A.Y.
Proceedings of the National Academy of Sciences of the United States of America, 2005
17.
Sortase Transpeptidases: Structural Biology and Catalytic Mechanism
Jacobitz A.W., Kattke M.D., Wereszczynski J., Clubb R.T.
Advances in Protein Chemistry and Structural Biology, 2017
18.
Chemistry and material science at the cell surface
Zhao W., Teo G.S., Kumar N., Karp J.M.
Materials Today, 2010
19.
Engineering Staphylococcal Protein A for high-throughput affinity purification of monoclonal antibodies
Amritkar V., Adat S., Tejwani V., Rathore A., Bhambure R.
Biotechnology Advances, 2020
22.
Melikhova T.D., Bovin N.V., Antipov A.D., Tereshin M.N., Ziganshin R.H., Tuzikov A.B.
Mendeleev Communications, 2023
23.
Affinity Resins for the Isolation of Immunoglobulins G Obtained Using Biocatalytic Technology
Tereshin M.N., Melikhova T.D., Eletskaya B.Z., Ksenofontova O.B., Pantyushenko P.V., Berzina M.Y., Ivanov I., Myagkikh I.V., Stepanenko V.N.
International Journal of Molecular Sciences, 2024
24.
Antigen Presentation in an Artificial and Cell Membrane.Blood Group A Glycan Recognition
Ryzhov I., Tuzikov A., Obukhova P., Sablina M., Popova I., Anisimova D., Galanina O., Shilova N., Khaidukov S., Chizhov A., Henry S., Bovin N.
ChemBioChem, 2024