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Early Secretory Antigenic Target-6 Drives Matrix Metalloproteinase-10 Gene Expression and Secretion in Tuberculosis
Sara Brilha1,2, Tarangini Sathyamoorthy1, Laura H Stuttaford1
11 Infectious Diseases and Immunity, Imperial College London, London, United Kingdom.
Abstract:
Tuberculosis (TB) causes disease worldwide, and multidrug resistance is an increasing problem. Matrix metalloproteinases (MMPs), particularly the collagenase MMP-1, cause lung extracellular matrix destruction, which drives disease transmission and morbidity. The role in such tissue damage of the stromelysin MMP-10, a key activator of the collagenase MMP-1, was investigated in direct Mycobacterium tuberculosis (Mtb)-infected macrophages and in conditioned medium from Mtb-infected monocyte-stimulated cells. Mtb infection increased MMP-10 secretion from primary human macrophages 29-fold, whereas Mtb-infected monocytes increased secretion by 4.5-fold from pulmonary epithelial cells and 10.5-fold from fibroblasts. Inhibition of MMP-10 activity decreased collagen breakdown. In two independent cohorts of patients with TB from different continents, MMP-10 was increased in both induced sputum and bronchoalveolar lavage fluid compared with control subjects and patients with other respiratory diseases (both P < 0.05). Mtb drove 3.5-fold greater MMP-10 secretion from human macrophages than the vaccine strain bacillus Calmette-Guerin (P < 0.001), whereas both mycobacteria up-regulated TNF-α secretion equally. Using overlapping, short, linear peptides covering the sequence of early secretory antigenic target-6, a virulence factor secreted by Mtb, but not bacillus Calmette-Guerin, we found that stimulation of human macrophages with a single specific 15-amino acid peptide sequence drove threefold greater MMP-10 secretion than any other peptide (P < 0.001). Mtb-driven MMP-10 secretion was inhibited in a dose-dependent manner by p38 and extracellular signal-related kinase mitogen-activated protein kinase blockade (P < 0.001 and P < 0.01 respectively), but it was not affected by inhibition of NF-κB. In summary, Mtb activates inflammatory and stromal cells to secrete MMP-10, and this is partly driven by the virulence factor early secretory antigenic target-6, implicating it in TB-associated tissue destruction.
Insights
Tuberculosis (TB) infection significantly increases MMP-10, an enzyme linked to lung tissue destruction. Mycobacterium tuberculosis (Mtb) virulence factor ESAT-6 drives this MMP-10 increase, implicating it in TB pathogenesis.
Area of Science:
- Immunology
- Microbiology
- Pulmonology
Background:
- Tuberculosis (TB) remains a global health challenge, exacerbated by multidrug resistance.
- Matrix metalloproteinases (MMPs), particularly MMP-1, contribute to lung extracellular matrix destruction in TB.
- MMP-10, a key activator of MMP-1, has an under-investigated role in TB-associated tissue damage.
Purpose of the Study:
- To investigate the role of stromelysin MMP-10 in tissue damage during Mycobacterium tuberculosis (Mtb) infection.
- To determine the cellular sources and regulation of MMP-10 secretion in response to Mtb.
Main Methods:
- MMP-10 secretion was measured in Mtb-infected primary human macrophages, monocytes, pulmonary epithelial cells, and fibroblasts.
- Inhibition of MMP-10 activity and specific signaling pathways (p38, ERK, NF-κB) were assessed.
- Peptide stimulation using fragments of Mtb's early secretory antigenic target-6 (ESAT-6) was performed.
- MMP-10 levels were quantified in induced sputum and bronchoalveolar lavage fluid from TB patients and controls.
Main Results:
- Mtb infection markedly increased MMP-10 secretion from macrophages (29-fold) and stimulated monocytes increased secretion from epithelial cells (4.5-fold) and fibroblasts (10.5-fold).
- Inhibition of MMP-10 reduced collagen breakdown; MMP-10 levels were elevated in TB patients' sputum and lavage fluid.
- Mtb induced significantly more MMP-10 secretion than BCG; a specific ESAT-6 peptide strongly upregulated MMP-10 via p38 and ERK pathways, but not NF-κB.
Conclusions:
- Mtb activates inflammatory and stromal cells to secrete MMP-10, contributing to TB-associated lung tissue destruction.
- The Mtb virulence factor ESAT-6 plays a role in driving MMP-10 secretion.
- Targeting MMP-10 or its associated signaling pathways may offer therapeutic strategies for TB.
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