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March 17, 2026The Brazilian Journal of Infectious Diseases0 citationsOpen Access

Surface Proteolytic Profiles in Leishmania (V.) Braziliensis: Functional Divergence Among Thor03, Thor10, and Thor22

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FFFatemeh Farshchi

Key Points

  • The study aims to analyze and compare the surface proteolytic profiles of different subpopulations of Leishmania braziliensis, focusing on their potential roles in virulence.
  • Compared enzymatic profiles of promastigotes and axenic amastigotes of Thor strain subpopulations (Thor03, Thor10, Thor22).
  • Used phospholipase C to selectively release GPI-anchored surface proteases.
  • Analyzed proteolytic activity via gelatin zymography and fluorimetry with specific substrates.
  • Employed selective inhibitors to assess different protease activities.
  • Distinct proteolytic activity profiles observed across all subpopulations.
  • Metalloprotease activity was predominant, particularly in Thor03 amastigotes.
  • Significant cysteine and serine protease activities were found, showing variable patterns across subpopulations.
  • Thor03 exhibited greater enzymatic potential in amastigote form, suggesting higher infectivity.

Abstract

Leishmania (Viannia) braziliensis is the main etiological agent of cutaneous leishmaniasis in Brazil. The Thor strain, isolated in the state of Rio de Janeiro, presents subpopulations with distinct biological profiles. Considering the role of surface proteases in parasite virulence and adaptation, this study aimed to compare the enzymatic profiles of promastigotes and axenic amastigotes of the Thor strain and three subpopulations: Thor03, Thor10, and Thor22. Promastigote and axenic amastigote forms were treated with phospholipase C (PLC) for selective release of GPI-anchored surface proteases. Proteolytic activity was analyzed by gelatin zymography, fluorimetry using substrates specific for metalloproteases, cysteine and serine proteases, and assays with selective inhibitors. Quantification was based on the rate of hydrolysis of fluorescent substrates. All subpopulations showed distinct proteolytic activity profiles. Metalloprotease activity was predominant, especially in Thor03 amastigotes. Significant cysteine and serine protease activities were also observed, with variable patterns among forms and subpopulations. The enzymatic profiles suggest a functional role in early infection and host adaptation. Differences in surface protease activity among Thor strain subpopulations highlight the relevance of these enzymes as virulence factors. Subpopulation Thor03 showed greater enzymatic potential in the amastigote form, indicating a likely contribution to infectivity. These findings reinforce the use of proteases as molecular markers and potential therapeutic targets in cutaneous leishmaniasis.

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Cite This Study

Fatemeh Farshchi (2026) studied this question.

synapsesocial.com/papers/69b8ef52deb47d591b8c5671https://doi.org/10.1016/j.bjid.2026.105613
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