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LYVE1 ectodomain shedding blunts lymphatic transmigration and clearance of macrophages during kidney injury
Jing Liu, Yuqing Liu, Wenqian Zhou, Saiya Zhu, Jianyong Zhong, Haichun Yang, Annet Kirabo, Valentina Kon, Chen Yu
Jing Liu, Yuqing Liu, Wenqian Zhou, Saiya Zhu, Jianyong Zhong, Haichun Yang, Annet Kirabo, Valentina Kon, Chen Yu
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Research Article Inflammation Nephrology Vascular biology

LYVE1 ectodomain shedding blunts lymphatic transmigration and clearance of macrophages during kidney injury

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Abstract

Although renal fibrosis is predominantly driven by the accumulated inflammatory cells that secrete proinflammatory factors within the kidney, the key mechanisms underlying macrophage clearance from the kidney are not well understood. The interaction of hyaluronan with lymphatic endothelial hyaluronan receptor 1 (LYVE1) constitutes a critical initial step in macrophage adhesion and removal by lymphatic vessels. This study investigates alterations in LYVE1 during kidney disease and elucidates its role in macrophage trafficking. Three renal fibrosis models demonstrated a reduction in full-length LYVE1 and an increase in the soluble LYVE1 fragment. Immunostaining of fibrotic kidneys showed significantly reduced expression of soluble LYVE1 compared with the intracellular fragment (Cyto-LYVE1), demonstrating ectodomain shedding of LYVE1 in vivo and in vitro. Functionally, human lymphatic endothelial cells exposed to TGF-β1 exhibited a significant decrease in macrophage adhesion and transendothelial migration compared with controls. Mechanistic analyses identified increased matrix metalloproteinase 9 (MMP9) in renal injury as a key upstream regulator of LYVE1 shedding. MMP9 inhibitors reduced LYVE1 shedding, enhanced macrophage adhesion and trafficking, and mitigated macrophage accumulation and disease progression. In conclusion, MMP9-induced LYVE1 shedding is linked to progressive kidney fibrosis and macrophage accumulation. LYVE1 shedding inhibitors offer potential as therapeutic agents for mitigating immune overload and kidney fibrosis.

Authors

Jing Liu, Yuqing Liu, Wenqian Zhou, Saiya Zhu, Jianyong Zhong, Haichun Yang, Annet Kirabo, Valentina Kon, Chen Yu

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Figure 5

Macrophage accumulation is ameliorated by shedding inhibitors in vivo.

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Macrophage accumulation is ameliorated by shedding inhibitors in vivo.
F...
F4/80+ macrophage aggregation was more prominent around the LVs in UUO mice compared with the other groups. (A) Left: In vitro adhesion experiments of macrophages and hLECs with TGF-β1 and SB-3CT or GM6001. Right: Bar graph of adhesion experiments; each point represents the average adhesion number of 5 random visual fields per well, assessed in 3 wells in each group. Scale bars: 100 μm. (B) Experiments of adhesion of macrophages to hLECs with TGF-β1 and siMMP9 treatment. Scale bars: 100 μm. (C and E) Trans-endothelium experiments of macrophage adhesion to hLECs with or without SB-3CT or GM6001 (C) and TGF-β1 and siMMP9 (E). Scale bars: 100 μm. (D and F) Fluorescence reading of culture medium in the lower chamber of trans-endothelium experiments of macrophage adhesion to hLECs with or without SB-3CT or GM6001 (D) and TGF-β1 and siMMP9 (F). (G and H) F4/80 protein expression of sham, UUO, UUO plus SB-3CT (G), or UUO plus GM6001 (H). (I) Macrophage marker F4/80 staining in kidneys of sham, UUO, UUO plus SB-3CT, or UUO plus GM6001. Scale bars: 100 μm. (J) F4/80+ macrophages (green) were observed in the lymphatic lumen (PDPN, red) (white arrows) of sham mice and mice treated with UUO plus SB-3CT or UUO plus GM6001 but not in untreated UUO mice (original magnification, ×1,000; scale bars: 20 μm). n = 5 per group for animal experiments; statistics used included 1-way ANOVA. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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