TY - JOUR
T1 - B Cell–Mediated Antigen Presentation through MHC Class II Is Dispensable for Atherosclerosis Progression
AU - Williams, Jesse W.
AU - Elvington, Andrew
AU - Kessler, Skyler
AU - Wohltmann, Mary
AU - Wu, Gregory F.
AU - Randolph, Gwendalyn J.
N1 - Funding Information:
Received for publication February 20, 2018. Accepted for publication January 7, 2019. Address correspondence and reprint requests to: Prof. Gwendalyn J. Randolph, Department of Pathology and Immunology, Washington University School of Medicine, 425 S. Euclid Avenue, Box 8118, St. Louis, MO 63110. E-mail address: gjrandolph@wustl.edu ORCIDs: 0000-0003-3992-4908 (S.K.); 0000-0003-3588-0637 (G.F.W.). J.W.W. and G.J.R. wrote and edited the manuscript. J.W.W., G.F.W., and G.J.R. conceived and supervised the project. J.W.W., A.E., S.K., and M.W. performed and analyzed experiments. This work was supported by National Institutes of Health (NIH) R01 HL118206, R37 AI049653, and DP1DK109668 (to G.J.R.). J.W.W. was supported by NIH Training Grant 2T32DK007120-41, American Heart Association Grant 17POST33410473, and NIH K99 HL138163. A.E. was supported by NIH Training Grant T32-HL07081-38. G.F.W. was supported by Grant R01NS083678 from the National Institute of Neurological Disorders and Stroke. Abbreviations used in this article: ATLO, artery-associated tertiary lymphoid organ; BM, bone marrow; DC, dendritic cell; GC, germinal center; HFD, high-fat diet; MHC II, MHC class II; MZ, marginal zone; ORO, Oil Red O; oxLDL, oxidized low-density lipoprotein; Tfh, T follicular helper. The online version of this article contains supplemental material. This article is distributed under the terms of the CC BY 4.0 Unported license. Copyright © 2019 The Authors
Publisher Copyright:
Copyright © 2019 The Authors
PY - 2019/1/1
Y1 - 2019/1/1
N2 - Depletion of B cells attenuates plaque development and modulates T cell responses in mouse models of atherosclerosis, suggesting that Ag presentation by B cells may promote disease progression. Thus, we set out to determine the role of B cell–mediated MHC class II (MHC II) Ag presentation during atherosclerotic plaque development. We developed murine conditional MHC II deletion and expression systems under control of the B cell–restricted CD19 promoter in an experimental model of atherosclerosis. Mice lacking MHC II expression only on B cells exhibited systemic shifts in germinal center and marginal zone B cell populations, leading to a reduced Ab response compared with littermate control animals. However, all populations were present and normal cholesterol uptake was detected in the plasma following high-fat diet treatment. In a second model, in which conditional expression of MHC II is limited only to B cells, showed similar overall cellularity characteristics compared with mice with complete MHC II deficiency. High-fat diet feeding showed no major changes in atherosclerotic plaque size or plaque cellular content in either conditional deletion or conditional expression approaches, compared with control animals. By testing the necessity and sufficiency of MHC II on B cells in the progression of atherosclerosis, we determine that MHC II on B cells does not directly regulate lesion development in murine models.
AB - Depletion of B cells attenuates plaque development and modulates T cell responses in mouse models of atherosclerosis, suggesting that Ag presentation by B cells may promote disease progression. Thus, we set out to determine the role of B cell–mediated MHC class II (MHC II) Ag presentation during atherosclerotic plaque development. We developed murine conditional MHC II deletion and expression systems under control of the B cell–restricted CD19 promoter in an experimental model of atherosclerosis. Mice lacking MHC II expression only on B cells exhibited systemic shifts in germinal center and marginal zone B cell populations, leading to a reduced Ab response compared with littermate control animals. However, all populations were present and normal cholesterol uptake was detected in the plasma following high-fat diet treatment. In a second model, in which conditional expression of MHC II is limited only to B cells, showed similar overall cellularity characteristics compared with mice with complete MHC II deficiency. High-fat diet feeding showed no major changes in atherosclerotic plaque size or plaque cellular content in either conditional deletion or conditional expression approaches, compared with control animals. By testing the necessity and sufficiency of MHC II on B cells in the progression of atherosclerosis, we determine that MHC II on B cells does not directly regulate lesion development in murine models.
UR - http://www.scopus.com/inward/record.url?scp=85066036271&partnerID=8YFLogxK
U2 - 10.4049/immunohorizons.1800015
DO - 10.4049/immunohorizons.1800015
M3 - Article
C2 - 31356175
AN - SCOPUS:85066036271
SN - 2573-7732
VL - 3
SP - 37
EP - 44
JO - ImmunoHorizons
JF - ImmunoHorizons
IS - 1
ER -