Zhe-Wei Zhang, Shi-Yan Wan, Wen Li, Xiao Lu, Rong Chen, Xin Xing, Wei Lai, Shu-Yang Sheng, M M Mosebetsi, Qing-Tao Meng, Zi-Long Lu, Di Fan, Wan-Li Jiang
Septic cardiomyopathy is characterized by acute cardiac dysfunction, while sustained inflammatory and extracellular matrix remodeling may contribute to subsequent myocardial fibrosis and impaired cardiac recovery. A disintegrin and metalloproteinase with thrombospondin motifs 4 (ADAMTS4) has been linked to fibrotic remodelling, but its role in septic cardiac injury remains unclear. Here, we show that Adamts4 is upregulated in LPS-induced septic mouse hearts and is predominantly induced in cardiac fibroblasts. Using three fibroblast-lineage Adamts4 knockout models, we demonstrate that Adamts4 deletion attenuates LPS-induced cardiac dysfunction, inflammation and fibrosis, whereas Tcf21-lineage fibroblast Adamts4 overexpression aggravates these changes. Mechanistically, ADAMTS4 interacts with thrombospondin-1 (TSP1) and promotes its catalytic activity-dependent proteolytic processing. The 236-246 amino acid region of TSP1 is required for fragment generation and fibroblast activation. TSP1 processing further activates TGF-β/Smad and NF-κB signalling, promoting myofibroblast activation and extracellular matrix deposition. These findings identify ADAMTS4 as a fibroblast-centred driver of septic cardiac fibrosis and suggest that targeting the ADAMTS4-TSP1 axis may offer therapeutic potential for septic cardiomyopathy. KEY POINTS: ADAMTS4 is induced predominantly in cardiac fibroblasts after LPS challenge Fibroblast-lineage Adamts4 deletion attenuates LPS-induced cardiac dysfunction and fibrosis The TSP1 236-246 aa region is required for efficient ADAMTS4-dependent processing ADAMTS4-dependent TSP1 processing activates TGF-β/Smad and NF-κB signalling in fibroblasts.