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Thrombospondin-1 protects against pathogen-induced lung injury by limiting extracellular matrix proteolysis
Yanyan Qu, Tolani Olonisakin, William Bain, Jill Zupetic, Rebecca Brown, Mei Hulver, Zeyu Xiong, Jesus Tejero, Robert M.Q. Shanks, Jennifer M. Bomberger, Vaughn S. Cooper, Michael E. Zegans, Hyunryul Ryu, Jongyoon Han, Joseph Pilewski, Anuradha Ray, Zhenyu Cheng, Prabir Ray, Janet S. Lee
Yanyan Qu, Tolani Olonisakin, William Bain, Jill Zupetic, Rebecca Brown, Mei Hulver, Zeyu Xiong, Jesus Tejero, Robert M.Q. Shanks, Jennifer M. Bomberger, Vaughn S. Cooper, Michael E. Zegans, Hyunryul Ryu, Jongyoon Han, Joseph Pilewski, Anuradha Ray, Zhenyu Cheng, Prabir Ray, Janet S. Lee
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Research Article Pulmonology

Thrombospondin-1 protects against pathogen-induced lung injury by limiting extracellular matrix proteolysis

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Abstract

Acute lung injury is characterized by excessive extracellular matrix proteolysis and neutrophilic inflammation. A major risk factor for lung injury is bacterial pneumonia. However, host factors that protect against pathogen-induced and host-sustained proteolytic injury following infection are poorly understood. Pseudomonas aeruginosa (PA) is a major cause of nosocomial pneumonia and secretes proteases to amplify tissue injury. We show that thrombospondin-1 (TSP-1), a matricellular glycoprotein released during inflammation, dose-dependently inhibits PA metalloendoprotease LasB, a virulence factor. TSP-1–deficient (Thbs1–/–) mice show reduced survival, impaired host defense, and increased lung permeability with exaggerated neutrophil activation following acute intrapulmonary PA infection. Administration of TSP-1 from platelets corrects the impaired host defense and aberrant injury in Thbs1–/– mice. Although TSP-1 is cleaved into 2 fragments by PA, TSP-1 substantially inhibits Pseudomonas elastolytic activity. Administration of LasB inhibitor, genetic disabling of the PA type II secretion system, or functional deletion of LasB improves host defense and neutrophilic inflammation in mice. Moreover, TSP-1 provides an additional line of defense by directly subduing host-derived proteolysis, with dose-dependent inhibition of neutrophil elastase from airway neutrophils of mechanically ventilated critically ill patients. Thus, a host matricellular protein provides dual levels of protection against pathogen-initiated and host-sustained proteolytic injury following microbial trigger.

Authors

Yanyan Qu, Tolani Olonisakin, William Bain, Jill Zupetic, Rebecca Brown, Mei Hulver, Zeyu Xiong, Jesus Tejero, Robert M.Q. Shanks, Jennifer M. Bomberger, Vaughn S. Cooper, Michael E. Zegans, Hyunryul Ryu, Jongyoon Han, Joseph Pilewski, Anuradha Ray, Zhenyu Cheng, Prabir Ray, Janet S. Lee

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Figure 8

The ΔxcpQ mutant induces less bacterial burden, airspace neutrophil recruitment, and inflammation in Thbs1–/– mice when compared with Pseudomonas aeruginosa parent strain.

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The ΔxcpQ mutant induces less bacterial burden, airspace neutrophil recr...
WT and Thbs1–/– (KO) mice were inoculated with P. aeruginosa (PA) parent strain PA14 or ΔxcpQ mutant strain and outcome measurements obtained 20 hours after infection (PA inoculum, 2.2 × 106 CFU; ΔxcpQ mutant inoculum, 2.5 × 106 CFU). (A) Total protease activity of cell-free supernatant (SN) from the PA14 parent strain and ΔxcpQ mutant was measured by the cleavage of fluorogenic casein substrate in relative fluorescence units (RFU) over time. (B) Lung CFU/ml, (C) total bronchoalveolar lavage (BAL) cell counts/ml, (D) total BAL PMN counts/ml, (E) total BAL protein concentration, (F) BAL free neutrophil elastase (NE) activity, and (G) lung tissue myeloperoxidase (MPO) activity were measured in WT and KO mice. Each data point represents an individual mouse, n = 8 mice/group. Lines indicate the median. *P < 0.05, **P < 0.01, ***P < 0.001 by Kruskal-Wallis test with Dunn’s multiple comparisons.

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