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PAI-1 interaction with sortilin-related receptor 1 is required for lung fibrosis
Thomas H. Sisson, … , Steven K. Huang, Daniel A. Lawrence
Thomas H. Sisson, … , Steven K. Huang, Daniel A. Lawrence
Published April 29, 2025
Citation Information: JCI Insight. 2025;10(11):e186131. https://doi.org/10.1172/jci.insight.186131.
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Research Article Aging Pulmonology

PAI-1 interaction with sortilin-related receptor 1 is required for lung fibrosis

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Abstract

Mutation studies of plasminogen activator inhibitor 1 (PAI-1) have previously implied that PAI-1 promotes lung fibrosis via a vitronectin-dependent (VTN-dependent) mechanism. In the present study, employing 2 distinct murine fibrosis models and VTN-deficient mice, we found that VTN is not required for PAI-1 to drive lung scarring. This result suggested the existence of a profibrotic interaction involving the VTN-binding site on PAI-1 with an unidentified ligand. Using an unbiased proteomic approach, we identified sortilin-related receptor 1 (SorLA) as the most highly enriched PAI-1 binding partner in the fibrosing lung. Investigating the role of SorLA in pulmonary fibrosis demonstrated that deficiency of this protein protected against lung scarring in a murine model. We further found that SorLA is required for PAI-1 to promote scarring in mice, that both SorLA and PAI-1 protein levels are increased in human idiopathic pulmonary fibrosis (IPF) explants, and that these proteins are associated in IPF tissue. Finally, confocal microscopy showed that expression of SorLA in CHO cells increased cellular uptake of PAI-1, and these proteins colocalized in the cytoplasm. Together, these data elucidate a mechanism by which the potent profibrotic mediator PAI-1 drives lung fibrosis and implicate SorLA as a potential therapeutic target in IPF treatment.

Authors

Thomas H. Sisson, John J. Osterholzer, Lisa Leung, Venkatesha Basrur, Alexey Nesvizhskii, Natalya Subbotina, Mark Warnock, Daniel Torrente, Ammara Q. Virk, Sergey S. Gutor, Jeffrey C. Horowitz, Mary Migliorini, Dudley K. Strickland, Kevin K. Kim, Steven K. Huang, Daniel A. Lawrence

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Figure 3

PAI-1 binds to SorLA as revealed by SPR analysis.

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PAI-1 binds to SorLA as revealed by SPR analysis.
Increasing concentrati...
Increasing concentrations of PAI-1WT or PAI-1AK were flowed over SPR flow cells coupled with soluble SorLA (A) or the VSP10 domain (B). Data were analyzed by equilibrium analysis by fitting the association data to a first-order process to determine Req. The data were normalized to Rmax and plotted as Req/Rmax versus PAI-1 concentrations. Data were fit to a single binding site by nonlinear regression analysis. (C) Inhibition of PAI-1 (250 nM) binding to SorLA in the presence of increasing concentrations of somatomedin B (SMB) domain of VTN.

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