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Burton, L.

Publications and source records attributed to Burton, L..

3 recordsLinked to original sources

Inhibition of Pseudomonas aeruginosa-secreted protease IV reduces lung

The opportunistic pathogen Pseudomonas aeruginosa secretes numerous proteases that disrupt host defenses. Among them, the lysyl endopeptidase PrpL has been implicated in virulence, but its role in inflammatory responses has remained unclear. This study shows that purified PrpL activates the AP-1 transcription factors following instillation into mouse lungs, and drives robust production of IL-1{beta}, IL-6, and TNF, as well as clinical symptoms. A proteolytically inactive mutant of PrpL fails to elicit these responses. Structural analysis of the complex of PrpL and its natural inhibitory propeptide (PrpLPP) using X-ray crystallography revealed the inhibitory mechanism of PrpLPP, which guided the identification of a pre-existing dipeptide inhibitor (LasBi) that blocked PrpL activity and restricted AP-1-driven cytokine induction and clinical symptoms in vivo. This study shows that the alkaline protease AprA degrades PrpLPP and functions redundantly with LasB to liberate mature, active PrpL. Our findings: 1) establish PrpL as a key virulence factor that triggers AP-1-mediated inflammatory signaling, 2) provide structural and functional insights into PrpL inhibition, and 3) identify AprA as a novel upstream PrpL activator. Together, these results highlight PrpL as a promising anti-virulence therapeutic target. Given the functional redundancy of inflammatory effectors produced by P. aeruginosa, strategies aimed at mitigating P. aeruginosa-induced lung inflammation through PrpL inhibition would likely need to be combined with approaches targeting additional pro-inflammatory bacterial factors. Author SummaryWe identify PrpL as a critical Pseudomonas aeruginosa protease that activates the inflammatory transcription factor AP-1 and drives potent lung inflammation. Structural analysis of a natural PrpL inhibitor guided development of an existing dipeptide inhibitor that significantly reduced the production of proinflammatory cytokines and clinical responses in vivo. Moreover, discovery of the AprA protease as an additional PrpL activator refines the activation model and suggests potential upstream therapeutic strategies. These findings highlight PrpL as both a driver of pathogenesis and a promising therapeutic target for treating P. aeruginosa infections.

microbiology↗

New, biomechanically sound tendon tissue after injection of uncultured, autologous, adipose derived regenerative cells in partial Achilles tendon defects in rabbits

BackgroundCurrent management options for partial tendon tears may not offer future potential to heal tissue and improve clinical results. This study tested the hypothesis that treatment of a partial rabbit common calcaneus tendon (CCT) defect with uncultured, autologous, adipose derived regenerative cells (UA-ADRCs) enables regenerative healing without scar formation, as recently observed in a biopsy of a human supraspinatus tendon. MethodsA full-thickness hole (diameter, 3 mm) was punched into the midsubstance of the right gastrocnemius tendon (GT; which is a part of the CCT) of adult, female New Zealand white rabbits. Immediately thereafter the rabbits were treated by application of an averaged 28.3x106 UA-ADRCs in 0.5 ml lactated Ringers solution (RLS) into the GT defect and surrounding tendon tissue, or underwent sham treatment. Rabbits were sacrificed either four weeks (W4) or twelve weeks (W12) post-treatment, and the CCTs were investigated using histology, immunohistochemistry and non-destructive biomechanical testing. ResultsNewly formed connective tissue was consistent with the formation of new tendon tissue after treatment with UA-ADRCs, and with the formation of scar tissue after sham treatment, at both W4 and W12 post-treatment. Biomechanical testing demonstrated a significantly higher mean percent relaxation after treatment with UA-ADRCs than after sham treatment (p < 0.05), and significant, negative correlations between the peak stress as well as the equilibrium stress and the cross-sectional area of the CCT (p < 0.05) after treatment with UA-ADRCs but not after sham treatment. ConclusionsManagement of partial tendon tears with UA-ADRCs has the potential to be truly "structure-modifying".

bioengineering↗

Ability of mycobacterial pathogens to establish a persistent infection is lost by deletion of a single gene, rel, regulator of the stringent response

Studies in a mouse model revealed Mycobacterium tuberculosis (Mtb) with a deletion of rel, regulator of the stringent response, could not establish a persistent infection. Studies in cattle with a Mycobacterium. a. paratuberculosis rel deletion mutant revealed inability to establish a persistent infection was associated with development of CD8 cytotoxic T cells (CTL) that kill intracellular bacteria. Further comparative studies ex vivo with Mbv Calmette-Guerin (BCG) and a BCG rel deletion mutant revealed no clear difference in development of CTL in vitro. As reported, a study of the recall response was conducted with cattle vaccinated with either BCG or with BCGrel, to determine if information could be obtained that would show how gene products under control of rel interfere with the CTL response to mycobacterial pathogens in vivo. The study revealed the CTL response elicited by vaccination with BCG was impaired, in comparison with the response elicited by BCGrel. Comparative analysis of the recall response ex vivo revealed the functional impairment was not associated with the timing of appearance of the recall response, expression of IFN-{gamma}, TNF-, IL-17, or IL-22, or molecules that mediate intracellular killing. Further studies are needed to determine how CD8 CTL functional activity is modulated in vivo by gene products regulated by rel.

immunology↗