Targeting N-linked Glycosylation for the Therapy of Aggressive Lymphomas

靶向N-连接糖基化治疗侵袭性淋巴瘤

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作者:Sebastian Scheich,Jiji Chen,Jiamin Liu,Frank Schnütgen ,Julius C Enssle,Michele Ceribelli,Craig J Thomas,Jaewoo Choi,Vivian Morris,Tony Hsiao,Hang Nguyen,Boya Wang,Arnold Bolomsky,James D Phelan,Sean Corcoran,Henning Urlaub,Ryan M Young,Björn Häupl ,George W Wright,Da Wei Huang,Yanlong Ji ,Xin Yu,Weihong Xu,Yandan Yang,Hong Zhao,Jagan Muppidi,Kuan-Ting Pan,Thomas Oellerich ,Louis M Staudt

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.

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