MGAT1-Guided complex N-Glycans on CD73 regulate immune evasion in triple-negative breast cancer

J Junlong Jack Chi P Ping Xie (State Key Laboratory of Chemo and Biosensing, College of Chemistry and Chemical Engineering) M Mary Hongying Cheng Y Yueming Zhu X Xin Cui (Department of Chemistry) J Joshua Watson L Lidan Zeng A Amad Uddin H Hoang Nguyen L Lei Li K Kelley Moremen A April Reedy M Megan Wyatt A Adam Marcus M Mingji Dai (Department of Chemistry) C Chrystal M. Paulos M Massimo Cristofanilli (Weill-Cornell Medicine, New York–Presbyterian Hospital, New York) W William J. Gradishar S Shaying Zhao K Kevin Kalinsky (Winship Cancer Institute, Emory University, Atlanta) M Mine-Chie Hung I Ivet Bahar B Bin Zhang Y Yong Wan

Abstract

Abstract Despite the widespread application of immunotherapy, treating immune-cold tumors remains a significant challenge in cancer therapy. Using multiomic spatial analyses and experimental validation, we identify MGAT1, a glycosyltransferase, as a pivotal factor governing tumor immune response. Overexpression of MGAT1 leads to immune evasion due to aberrant elevation of CD73 membrane translocation, which suppresses CD8+ T cell function, especially in immune-cold triple-negative breast cancer (TNBC). Mechanistically, addition of N-acetylglucosamine to CD73 by MGAT1 enables the CD73 dimerization necessary for CD73 loading onto VAMP3, ensuring membrane fusion. We further show that THBS1 is an upstream etiological factor orchestrating the MGAT1-CD73-VAMP3-adenosine axis in suppressing CD8+ T cell antitumor activity. Spatial transcriptomic profiling reveals spatially resolved features of interacting malignant and immune cells pertaining to expression levels of MGAT1 and CD73. In preclinical models of TNBC, W-GTF01, an inhibitor specifically blocked the MGAT1-catalyzed CD73 glycosylation, sensitizing refractory tumors to anti-PD-L1 therapy via restoring capacity to elicit a CD8+ IFNγ-producing T cell response. Collectively, our findings uncover a strategy for targeting the immunosuppressive molecule CD73 by inhibiting MGAT1.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (24)

J

Junlong Jack Chi

P

Ping Xie

State Key Laboratory of Chemo and Biosensing, College of Chemistry and Chemical Engineering

M

Mary Hongying Cheng

Y

Yueming Zhu

X

Xin Cui

Department of Chemistry

J

Joshua Watson

L

Lidan Zeng

A

Amad Uddin

H

Hoang Nguyen

L

Lei Li

K

Kelley Moremen

A

April Reedy

M

Megan Wyatt

A

Adam Marcus

M

Mingji Dai

Department of Chemistry

C

Chrystal M. Paulos

M

Massimo Cristofanilli

Weill-Cornell Medicine, New York–Presbyterian Hospital, New York

W

William J. Gradishar

S

Shaying Zhao

K

Kevin Kalinsky

Winship Cancer Institute, Emory University, Atlanta

M

Mine-Chie Hung

I

Ivet Bahar

B

Bin Zhang

Y

Yong Wan