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CD9 regulates macrophage-mediated remodeling of adipose tissue in obesity
Julia Chini, Nicole DeMarco, Dana V. Mitchell, Sam J. McCright, Kaitlyn M. Shen, Divyansi Pandey, Rachel L. Clement, Jessica Miller, Rajan Jain, Deanne M. Taylor, Mitchell A. Lazar, David A. Hill
Julia Chini, Nicole DeMarco, Dana V. Mitchell, Sam J. McCright, Kaitlyn M. Shen, Divyansi Pandey, Rachel L. Clement, Jessica Miller, Rajan Jain, Deanne M. Taylor, Mitchell A. Lazar, David A. Hill
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Research Article Immunology Metabolism

CD9 regulates macrophage-mediated remodeling of adipose tissue in obesity

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Abstract

Dysfunctional white adipose tissue contributes to the development of obesity-related morbidities, including insulin resistance, dyslipidemia, and other metabolic disorders. Adipose tissue macrophages (ATMs) accumulate in obesity and play both beneficial and harmful roles in the maintenance of adipose tissue homeostasis and function. Despite their importance, the molecules and mechanisms that regulate these diverse functions are not well understood. Lipid-associated macrophages (LAMs), the dominant subset of obesity-associated ATMs, accumulate in crown-like structures and are characterized by a metabolically activated and proinflammatory phenotype. We previously identified CD9 as a surface marker of LAMs. However, the contribution of CD9 to the activation and function of LAMs during obesity is unknown. Using a myeloid-specific CD9-KO model, we show that CD9 supports ATM-adipocyte adhesion and crown-like structure formation. Furthermore, CD9 promotes the expression of profibrotic and extracellular matrix remodeling genes. Loss of myeloid CD9 reduces adipose tissue fibrosis, increases visceral adipose tissue accumulation, and improves global metabolic outcomes during diet-induced obesity. These results identify CD9 as a causal regulator of pathogenic LAM functions, highlighting CD9 as a potential therapeutic target for treating obesity-associated metabolic disease.

Authors

Julia Chini, Nicole DeMarco, Dana V. Mitchell, Sam J. McCright, Kaitlyn M. Shen, Divyansi Pandey, Rachel L. Clement, Jessica Miller, Rajan Jain, Deanne M. Taylor, Mitchell A. Lazar, David A. Hill

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Figure 4

Myeloid-intrinsic CD9 alters adipose tissue remodeling during obesity.

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Myeloid-intrinsic CD9 alters adipose tissue remodeling during obesity.
E...
Epididymal white adipose tissue (eWAT) was collected from male control (Cd9fl/fl) and CD9-MKO (Cd9fl/fl LysMCre+/–) mice fed either an NCD or HFD for 12 weeks. (A) eWAT mass (n = 10–15). (B) Representative H&E staining of eWAT in control or CD9-MKO HFD mice (n = 11–12). Scale bar: 400 μm. (C) Frequency distribution and mean adipocyte diameter calculated from H&E images in B (n = 11–12). (D and E) Bulk RNA-Seq was performed on eWAT depots from control and CD9-MKO mice (n = 4). (D) Volcano plot showing the log2 fold-change (FC; x axis) and adjusted P value (–log10 FDR; y axis) of genes between CD9-MKO HFD and control HFD groups. Significantly differentially expressed genes (log2 FC > 0.58 and FDR < 0.05) are shown in purple. (E) Pathway enrichment analysis showing the most significant (by normalized enrichment score) nonredundant pathways downregulated in eWAT. Pooled data from 3 independent experiments (A–C) or data from 1 experiment (D and E). Data presented as mean ± SEM (A and C); 1-way ANOVA with Fisher’s LSD test (A) or unpaired 2-tailed Student’s t test between means (C). ns, not significant; *P < 0.05, ****P < 0.0001. Avg, average; MMP, matrix metalloproteinases; NOXs, NADPH oxidases.

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