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Plexin C1 deficiency permits synaptotagmin 7-mediated macrophage migration and enhances mammalian lung fibrosis
Xueyan Peng1, Meagan Moore1, Aditi Mathur1
1Department of Pulmonary, Critical Care, and Sleep Medicine, Yale School of Medicine, New Haven, Connecticut, USA.
Abstract:
Pulmonary fibrosis is a progressive and often fatal condition that is believed to be partially orchestrated by macrophages. Mechanisms that control migration of these cells into and within the lung remain undefined. We evaluated the contributions of the semaphorin receptor, plexin C1 (PLXNC1), and the exocytic calcium sensor, synaptotagmin 7 (Syt7), in these processes. We evaluated the role of PLXNC1 in macrophage migration by using Boyden chambers and scratch tests, characterized its contribution to experimentally induced lung fibrosis in mice, and defined the mechanism for our observations. Our findings reveal that relative to control participants, patients with idiopathic pulmonary fibrosis demonstrate excessive monocyte migration and underexpression of PLXNC1 in the lungs and circulation, a finding that is recapitulated in the setting of scleroderma-related interstitial lung disease. Relative to wild type, PLXNC1-/- mouse macrophages are excessively migratory, and PLXNC1-/- mice show exacerbated collagen accumulation in response to either inhaled bleomycin or inducible lung targeted TGF-β1 overexpression. These findings are ameliorated by replacement of PLXNC1 on bone marrow-derived cells or by genetic deletion of Syt7. These data demonstrate the previously unrecognized observation that PLXNC1 deficiency permits Syt7-mediated macrophage migration and enhances mammalian lung fibrosis.-Peng, X., Moore, M., Mathur, A., Zhou, Y., Sun, H., Gan, Y., Herazo-Maya, J. D., Kaminski, N., Hu, X., Pan, H., Ryu, C., Osafo-Addo, A., Homer, R. J., Feghali-Bostwick, C., Fares, W. H., Gulati, M., Hu, B., Lee, C.-G., Elias, J. A., Herzog, E. L. Plexin C1 deficiency permits synaptotagmin 7-mediated macrophage migration and enhances mammalian lung fibrosis.
Insights
Plexin C1 (PLXNC1) deficiency in macrophages allows synaptotagmin 7 (Syt7) to drive lung fibrosis. Reduced PLXNC1 and increased Syt7 worsen pulmonary fibrosis, while restoring PLXNC1 or deleting Syt7 improves outcomes.
Area of Science:
- Immunology
- Cell Biology
- Pulmonary Medicine
Background:
- Pulmonary fibrosis pathogenesis involves macrophages, but their migration mechanisms are unclear.
- Plexin C1 (PLXNC1) and synaptotagmin 7 (Syt7) are investigated for roles in macrophage migration and lung fibrosis.
Purpose of the Study:
- To determine the role of PLXNC1 and Syt7 in macrophage migration and pulmonary fibrosis.
- To investigate the association between PLXNC1 expression and idiopathic pulmonary fibrosis (IPF) and scleroderma-related interstitial lung disease (SSc-ILD).
Main Methods:
- Macrophage migration assessed using Boyden chambers and scratch assays.
- Pulmonary fibrosis experimentally induced in PLXNC1 knockout mice using bleomycin or TGF-β1.
- Effects of PLXNC1 re-expression and Syt7 deletion on fibrosis were evaluated.
Main Results:
- Patients with IPF and SSc-ILD exhibit reduced PLXNC1 and increased monocyte migration.
- PLXNC1-deficient macrophages show excessive migration, and PLXNC1 knockout mice display worsened lung fibrosis.
- Fibrosis severity was reduced by restoring PLXNC1 or deleting Syt7.
Conclusions:
- PLXNC1 deficiency facilitates Syt7-mediated macrophage migration, exacerbating lung fibrosis.
- PLXNC1 and Syt7 are critical regulators of macrophage behavior in pulmonary fibrosis.
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