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Hematopoietic PI3Kδ deficiency aggravates murine atherosclerosis through impairment of Tregs
Mario Zierden, Eva Maria Berghausen, Leoni Gnatzy-Feik, Christopher Millarg, Felix Simon Ruben Picard, Martha Kiljan, Simon Geißen, Apostolos Polykratis, Lea Zimmermann, Richard Julius Nies, Manolis Pasparakis, Stephan Baldus, Chanil Valasarajan, Soni Savai Pullamsetti, Holger Winkels, Marius Vantler, Stephan Rosenkranz
Mario Zierden, Eva Maria Berghausen, Leoni Gnatzy-Feik, Christopher Millarg, Felix Simon Ruben Picard, Martha Kiljan, Simon Geißen, Apostolos Polykratis, Lea Zimmermann, Richard Julius Nies, Manolis Pasparakis, Stephan Baldus, Chanil Valasarajan, Soni Savai Pullamsetti, Holger Winkels, Marius Vantler, Stephan Rosenkranz
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Research Article Cardiology Immunology

Hematopoietic PI3Kδ deficiency aggravates murine atherosclerosis through impairment of Tregs

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Abstract

Chronic activation of the adaptive immune system is a hallmark of atherosclerosis. As PI3Kδ is a key regulator of T and B cell differentiation and function, we hypothesized that alleviation of adaptive immunity by PI3Kδ inactivation may represent an attractive strategy counteracting atherogenesis. As expected, lack of hematopoietic PI3Kδ in atherosclerosis-prone Ldlr–/– mice resulted in lowered T and B cell numbers, CD4+ effector T cells, Th1 response, and immunoglobulin levels. However, despite markedly impaired peripheral pro-inflammatory Th1 cells and atheromatous CD4+ T cells, the unexpected net effect of hematopoietic PI3Kδ deficiency was aggravated vascular inflammation and atherosclerosis. Further analyses revealed that PI3Kδ deficiency impaired numbers, immunosuppressive functions, and stability of regulatory CD4+ T cells (Tregs), whereas macrophage biology remained largely unaffected. Adoptive transfer of wild-type Tregs fully restrained the atherosclerotic plaque burden in Ldlr–/– mice lacking hematopoietic PI3Kδ, whereas PI3Kδ-deficient Tregs failed to mitigate disease. Numbers of atheroprotective B-1 and pro-atherogenic B-2 cells as well as serum immunoglobulin levels remained unaffected by adoptively transferred wild-type Tregs. In conclusion, we demonstrate that hematopoietic PI3Kδ ablation promotes atherosclerosis. Mechanistically, we identified PI3Kδ signaling as a powerful driver of atheroprotective Treg responses, which outweigh PI3Kδ-driven pro-atherogenic effects of adaptive immune cells like Th1 cells.

Authors

Mario Zierden, Eva Maria Berghausen, Leoni Gnatzy-Feik, Christopher Millarg, Felix Simon Ruben Picard, Martha Kiljan, Simon Geißen, Apostolos Polykratis, Lea Zimmermann, Richard Julius Nies, Manolis Pasparakis, Stephan Baldus, Chanil Valasarajan, Soni Savai Pullamsetti, Holger Winkels, Marius Vantler, Stephan Rosenkranz

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Figure 7

PI3Kδ–/–→Ldlr–/– mice possess impaired mature B cells and serum Ig levels unaffected by adoptive transfer of PI3Kδ+/+ Tregs.

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PI3Kδ–/–→Ldlr–/– mice possess impaired mature B cells and serum Ig level...
(A) IgD, IgM, and CD5 expression of live pregated CD19+ cells as well as (B) proportion and number of IgMhiIgDloCD5+ B-1a, IgMhiIgDloCD5– B-1b, and IgMloIgDhi B-2 cells in the PerC of indicated and PI3Kδ–/–→Ldlr–/– male mice adoptively transferred with 106 PI3Kδ+/+ (green) CD4+CD25+ Tregs (n = 6–9). Proportion and number of B-1, B-2, marginal zone B-2 (MZB), follicular B-2 (FOB), B-1a, B-1b, and regulatory B (Bregs) cells in (C) LNs and (D) spleen based on the gating strategy depicted in Supplemental Figure 8 (n = 3 LNs pooled of 3 mice each, n = 8–9 spleen). (E) Serum levels of depicted Ig isotypes from indicated male mice (n = 8–11). Statistics were done using 1-way ANOVA with Bonferroni’s post hoc test. *P < 0.05; **P < 0.01, ***P < 0.001. For E, #A vs. B, P < 0.001; $A vs. B, P < 0.01; §A vs. C, P < 0.001; all B vs. C were not significant.

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