Targeting N-linked Glycosylation for the Therapy of Aggressive Lymphomas

Author:

Scheich Sebastian1ORCID,Chen Jiji2ORCID,Liu Jiamin2ORCID,Schnütgen Frank345ORCID,Enssle Julius C.3ORCID,Ceribelli Michele6ORCID,Thomas Craig J.16ORCID,Choi Jaewoo1ORCID,Morris Vivian17ORCID,Hsiao Tony1ORCID,Nguyen Hang1ORCID,Wang Boya1ORCID,Bolomsky Arnold1ORCID,Phelan James D.1ORCID,Corcoran Sean1ORCID,Urlaub Henning89ORCID,Young Ryan M.1ORCID,Häupl Björn345ORCID,Wright George W.10ORCID,Huang Da Wei1ORCID,Ji Yanlong358ORCID,Yu Xin1ORCID,Xu Weihong1ORCID,Yang Yandan1ORCID,Zhao Hong1ORCID,Muppidi Jagan1ORCID,Pan Kuan-Ting5ORCID,Oellerich Thomas345ORCID,Staudt Louis M.1ORCID

Affiliation:

1. 1Lymphoid Malignancies Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland.

2. 2Advanced Imaging and Microscopy Resource, National Institutes of Health, Bethesda, Maryland.

3. 3Department of Medicine, Hematology/Oncology, University Hospital Frankfurt, Goethe University, Frankfurt, Germany.

4. 4German Cancer Consortium (DKTK), Partner Site Frankfurt/Mainz, and German Cancer Research Center (DKFZ), Heidelberg, Germany.

5. 5Frankfurt Cancer Institute, Goethe University Frankfurt, Frankfurt/Main, Germany.

6. 6Division of Preclinical Innovation, National Center for Advancing Translational Sciences, National Institutes of Health, Bethesda, Maryland.

7. 7Department of Biology, Johns Hopkins University, Baltimore, Maryland.

8. 8Bioanalytical Mass Spectrometry Group, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany.

9. 9Bioanalytics, Institute of Clinical Chemistry, University Medical Center Göttingen, Göttingen, Germany.

10. 10Biometric Research Branch, Division of Cancer Diagnosis and Treatment, National Cancer Institute, National Institutes of Health, Bethesda, Maryland.

Abstract

Abstract Diffuse large B-cell lymphoma (DLBCL) can be subdivided into the activated B-cell (ABC) and germinal center B cell–like (GCB) subtypes. Self-antigen engagement of B-cell receptors (BCR) in ABC tumors induces their clustering, thereby initiating chronic active signaling and activation of NF-κB and PI3 kinase. Constitutive BCR signaling is essential in some GCB tumors but primarily activates PI3 kinase. We devised genome-wide CRISPR–Cas9 screens to identify regulators of IRF4, a direct transcriptional target of NF-κB and an indicator of proximal BCR signaling in ABC DLBCL. Unexpectedly, inactivation of N-linked protein glycosylation by the oligosaccharyltransferase-B (OST-B) complex reduced IRF4 expression. OST-B inhibition of BCR glycosylation reduced BCR clustering and internalization while promoting its association with CD22, which attenuated PI3 kinase and NF-κB activation. By directly interfering with proximal BCR signaling, OST-B inactivation killed models of ABC and GCB DLBCL, supporting the development of selective OST-B inhibitors for the treatment of these aggressive cancers. Significance: DLBCL depends on constitutive BCR activation and signaling. There are currently no therapeutics that target the BCR directly and attenuate its pathologic signaling. Here, we unraveled a therapeutically exploitable, OST-B–dependent glycosylation pathway that drives BCR organization and proximal BCR signaling. This article is highlighted in the In This Issue feature, p. 1749

Funder

Deutsche Forschungsgemeinschaft

Wilhelm Sander-Stiftung

National Institutes of Health

Publisher

American Association for Cancer Research (AACR)

Subject

Oncology

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