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Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128

BACKGROUND: Antibiotic resistant S. aureus infection is a global threat. Newer approaches are required to control this organism in the current scenario. Cell wall degrading enzymes have been proposed as antibacterial agents for human therapy. P128 is a novel antistaphylococcal chimeric protein under...

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Autores principales: George, Shilpa E, Chikkamadaiah, Ravisha, Durgaiah, Murali, Joshi, Amruta A, Thankappan, Ullas P, Madhusudhana, Shampur N, Sriram, Bharathi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3464943/
https://www.ncbi.nlm.nih.gov/pubmed/22682527
http://dx.doi.org/10.1186/1756-0500-5-280
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author George, Shilpa E
Chikkamadaiah, Ravisha
Durgaiah, Murali
Joshi, Amruta A
Thankappan, Ullas P
Madhusudhana, Shampur N
Sriram, Bharathi
author_facet George, Shilpa E
Chikkamadaiah, Ravisha
Durgaiah, Murali
Joshi, Amruta A
Thankappan, Ullas P
Madhusudhana, Shampur N
Sriram, Bharathi
author_sort George, Shilpa E
collection PubMed
description BACKGROUND: Antibiotic resistant S. aureus infection is a global threat. Newer approaches are required to control this organism in the current scenario. Cell wall degrading enzymes have been proposed as antibacterial agents for human therapy. P128 is a novel antistaphylococcal chimeric protein under development against S. aureus for human use which derives its bacterial cell wall degrading catalytic endopeptidase domain from ORF56, the Phage K tail-structure associated enzyme. Lead therapeutic entities have to be extensively characterized before they are assessed in animals for preclinical safety and toxicity. P128 is effective against antibiotic resistant strains as well as against a panel of isolates of global significance. Its efficacy against S. aureus in vivo has been established in our lab. Against this background, this study describes the characterization of this protein for its biochemical properties and other attributes. RESULTS: We evaluated the requirement or effect of divalent cations and the metal ion chelator, EDTA upon biological activity of P128. As the protein is intended for therapeutic use, we tested its activity in presence of body fluids and antibodies specific to P128. For the same reason, we used standard human cell lines to evaluate cytotoxic effects, if any. The divalent cations, calcium and magnesium at upto 25 mM and Zinc upto 2.5 mM neither inhibited nor enhanced P128 activity. Incubation of this protein with EDTA, human serum, plasma and blood also did not alter the antibacterial properties of the molecule. No inhibitory effect was observed in presence of hyper-immune sera raised against the protein. Finally, P128 did not show any cytotoxic effect on HEp2 and Vero cells at the highest concentration (5 mg/mL) tested. CONCLUSIONS: The results presented here throw light on several properties of protein P128. Taken together, these substantiate the potential of P128 for therapeutic use against S. aureus. Further development of the protein and conduct of preclinical safety studies in animals is warranted.
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spelling pubmed-34649432012-10-06 Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128 George, Shilpa E Chikkamadaiah, Ravisha Durgaiah, Murali Joshi, Amruta A Thankappan, Ullas P Madhusudhana, Shampur N Sriram, Bharathi BMC Res Notes Research Article BACKGROUND: Antibiotic resistant S. aureus infection is a global threat. Newer approaches are required to control this organism in the current scenario. Cell wall degrading enzymes have been proposed as antibacterial agents for human therapy. P128 is a novel antistaphylococcal chimeric protein under development against S. aureus for human use which derives its bacterial cell wall degrading catalytic endopeptidase domain from ORF56, the Phage K tail-structure associated enzyme. Lead therapeutic entities have to be extensively characterized before they are assessed in animals for preclinical safety and toxicity. P128 is effective against antibiotic resistant strains as well as against a panel of isolates of global significance. Its efficacy against S. aureus in vivo has been established in our lab. Against this background, this study describes the characterization of this protein for its biochemical properties and other attributes. RESULTS: We evaluated the requirement or effect of divalent cations and the metal ion chelator, EDTA upon biological activity of P128. As the protein is intended for therapeutic use, we tested its activity in presence of body fluids and antibodies specific to P128. For the same reason, we used standard human cell lines to evaluate cytotoxic effects, if any. The divalent cations, calcium and magnesium at upto 25 mM and Zinc upto 2.5 mM neither inhibited nor enhanced P128 activity. Incubation of this protein with EDTA, human serum, plasma and blood also did not alter the antibacterial properties of the molecule. No inhibitory effect was observed in presence of hyper-immune sera raised against the protein. Finally, P128 did not show any cytotoxic effect on HEp2 and Vero cells at the highest concentration (5 mg/mL) tested. CONCLUSIONS: The results presented here throw light on several properties of protein P128. Taken together, these substantiate the potential of P128 for therapeutic use against S. aureus. Further development of the protein and conduct of preclinical safety studies in animals is warranted. BioMed Central 2012-06-08 /pmc/articles/PMC3464943/ /pubmed/22682527 http://dx.doi.org/10.1186/1756-0500-5-280 Text en Copyright ©2012 George et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
George, Shilpa E
Chikkamadaiah, Ravisha
Durgaiah, Murali
Joshi, Amruta A
Thankappan, Ullas P
Madhusudhana, Shampur N
Sriram, Bharathi
Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128
title Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128
title_full Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128
title_fullStr Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128
title_full_unstemmed Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128
title_short Biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein P128
title_sort biochemical characterization and evaluation of cytotoxicity of antistaphylococcal chimeric protein p128
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3464943/
https://www.ncbi.nlm.nih.gov/pubmed/22682527
http://dx.doi.org/10.1186/1756-0500-5-280
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