Gα13 restricts nutrient driven proliferation in mucosal germinal centers

Author:

Nguyen Hang T.,Li Moyi,Vadakath Rahul,Henke Keirstin A.,Tran Tam C.,Li Huifang,Yamadi MaryamORCID,Darbha SriranjaniORCID,Yang Yandan,Kabat Juraj,Albright Anne R.,Centeno Enoc GranadosORCID,Phelan James D.ORCID,Roulland Sandrine,Huang Da Wei,Kelly Michael C.ORCID,Young Ryan M.ORCID,Pittaluga StefaniaORCID,Difilippantonio Simone,Muppidi Jagan R.ORCID

Abstract

AbstractGerminal centers (GCs) that form in mucosal sites are exposed to gut-derived factors that have the potential to influence homeostasis independent of antigen receptor-driven selective processes. The G-protein Gα13 confines B cells to the GC and limits the development of GC-derived lymphoma. We discovered that Gα13-deficiency fuels the GC reaction via increased mTORC1 signaling and Myc protein expression specifically in the mesenteric lymph node (mLN). The competitive advantage of Gα13-deficient GC B cells (GCBs) in mLN was not dependent on T cell help or gut microbiota. Instead, Gα13-deficient GCBs were selectively dependent on dietary nutrients likely due to greater access to gut lymphatics. Specifically, we found that diet-derived glutamine supported proliferation and Myc expression in Gα13-deficient GCBs in the mLN. Thus, GC confinement limits the effects of dietary glutamine on GC dynamics in mucosal tissues. Gα13 pathway mutations coopt these processes to promote the gut tropism of aggressive lymphoma.

Funder

U.S. Department of Health & Human Services | NIH | National Cancer Institute

U.S. Department of Health & Human Services | NIH | National Human Genome Research Institute

Division of Intramural Research, National Institute of Allergy and Infectious Diseases

Publisher

Springer Science and Business Media LLC

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