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Autolytic Mycobacterium leprae Hsp65 fragments may act as biological markers for autoimmune diseases. | LitMetric

AI Article Synopsis

  • The recombinant Mycobacterium leprae Heat Shock Protein of 65 kDa (rHsp65) exhibits instability, primarily degrading from its C-terminus to N-terminus, resulting in a stable middle fragment.
  • Urea prevents this autolysis, while EDTA increases degradation, indicating the importance of metal ions in the stability of the protein.
  • In a mouse model of Systemic Lupus Erythematosus, rHsp65 peptides showed potential in modulating immune responses and influenced survival time, suggesting that Heat Shock Proteins may play a role in autoimmune diseases.

Article Abstract

Investigating the proteolytic activity of the recombinant Mycobacterium leprae Heat Shock Protein of 65 kDa (rHsp65), chaperonin 2 (cpn2), we observed that it displays high instability. The fragmentation process starts at the C-terminus followed by progressive degradation of the N-terminus, which leads to a stable fragment comprising the middle region of the molecule. Urea was able to prevent autolysis, probably due to its denaturing action, while EDTA increased degradation levels indicating the need for metal ions. Peptides originated from autolysis were purified and analyzed by mass spectrometry, generating a continuous map. Since the bacteria and mammalian Hsp60 are known to be targets of the immune response and have been implicated in autoimmune diseases and chronic inflammation, the in vivo effect of rHsp65 peptides was evaluated in the spontaneous Systemic Lupus Erythematosus (SLE) model developed by the (NZB/NZW)F(1) mouse hybrids, and their individual anti-rHsp65 IgG2a/IgG1 antibody titer ratio was determined. The results showed orientation toward a T(H)1 responsiveness, and the treatment with the rHsp65 peptides diminished the environmental variance of the survival time of treated animals. These results outline the fact that environmental factors may also act through the modified stability expression of Heat Shock Proteins intervening during autoimmune processes.

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Source
http://dx.doi.org/10.1016/j.micpath.2011.06.001DOI Listing

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