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A Single-Step Chemoenzymatic Reaction for the Construction of Antibody-Cell Conjugates

  • Jie Li
    ,
  • Mingkuan Chen
    ,
  • Zilei Liu
    ,
  • Linda Zhang
    ,
  • Brunie H. Felding
    ,
  • Kelley W. Moremen
*Corresponding author for this work
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Sustainable Development Goals

  • SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well

Abstract

Employing live cells as therapeutics is a direction of future drug discovery. An easy and robust method to modify the surfaces of cells directly to incorporate novel functionalities is highly desirable. However, genetic methods for cell-surface engineering are laborious and limited by low efficiency for primary cell modification. Here we report a chemoenzymatic approach that exploits a fucosyltransferase to transfer bio-macromolecules, such as an IgG antibody (MW∼ 150 KD), to the glycocalyx on the surfaces of live cells when the antibody is conjugated to the enzyme's natural donor substrate GDP-Fucose. Requiring no genetic modification, this method is fast and biocompatible with little interference to cells' endogenous functions. We applied this method to construct two antibody-cell conjugates (ACCs) using both cell lines and primary cells, and the modified cells exhibited specific tumor targeting and resistance to inhibitory signals produced by tumor cells, respectively. Remarkably, Herceptin-NK-92MI conjugates, a natural killer cell line modified with Herceptin, exhibit enhanced activities to induce the lysis of HER2+ cancer cells both ex vivo and in a human tumor xenograft model. Given the unprecedented substrate tolerance of the fucosyltransferase, this chemoenzymatic method offers a general approach to engineer cells as research tools and for therapeutic applications.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 1633-1641 (9 pages)

Journal (Volume, Issue Number)

ACS Central Science (Volume 4, Issue 12)

Publication milestones

  • Published - 12/26/2018

Publication status

Published - 12/26/2018

ISSN

2374-7943

Publication IDs

  • Scopus: 85058525170

Publication metrics

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1
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0.10
Fractional count
9
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0.90
Fractional count
1
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1
Scopus
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Funding Details

This work was supported by the NIH (GM113046 and GM093282 to P.W.; GM103390 to K.W.M.). We thank Prof. Peter Schultz (TSRI, USA) for MDA-MB-435/HER2+/F-luc cells, Prof. John Teijaro (TSRI, USA) for P14 mice, and Prof. Philippe A. Gallay (TSRI, USA) for NSG mice.