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Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3

The Plasmodium falciparum cysteine proteases falcipain-2 and falcipain-3 degrade host hemoglobin to provide free amino acids for parasite protein synthesis. Hemoglobin hydrolysis has been described as an ordered process initiated by aspartic proteases, but cysteine protease inhibitors completely blo...

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Autores principales: Subramanian, Shoba, Hardt, Markus, Choe, Youngchool, Niles, Richard K., Johansen, Eric B., Legac, Jennifer, Gut, Jiri, Kerr, Iain D., Craik, Charles S., Rosenthal, Philip J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2663817/
https://www.ncbi.nlm.nih.gov/pubmed/19357776
http://dx.doi.org/10.1371/journal.pone.0005156
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author Subramanian, Shoba
Hardt, Markus
Choe, Youngchool
Niles, Richard K.
Johansen, Eric B.
Legac, Jennifer
Gut, Jiri
Kerr, Iain D.
Craik, Charles S.
Rosenthal, Philip J.
author_facet Subramanian, Shoba
Hardt, Markus
Choe, Youngchool
Niles, Richard K.
Johansen, Eric B.
Legac, Jennifer
Gut, Jiri
Kerr, Iain D.
Craik, Charles S.
Rosenthal, Philip J.
author_sort Subramanian, Shoba
collection PubMed
description The Plasmodium falciparum cysteine proteases falcipain-2 and falcipain-3 degrade host hemoglobin to provide free amino acids for parasite protein synthesis. Hemoglobin hydrolysis has been described as an ordered process initiated by aspartic proteases, but cysteine protease inhibitors completely block the process, suggesting that cysteine proteases can also initiate hemoglobin hydrolysis. To characterize the specific roles of falcipains, we used three approaches. First, using random P(1) – P(4) amino acid substrate libraries, falcipain-2 and falcipain-3 demonstrated strong preference for cleavage sites with Leu at the P(2) position. Second, with overlapping peptides spanning α and β globin and proteolysis-dependent (18)O labeling, hydrolysis was seen at many cleavage sites. Third, with intact hemoglobin, numerous cleavage products were identified. Our results suggest that hemoglobin hydrolysis by malaria parasites is not a highly ordered process, but rather proceeds with rapid cleavage by falcipains at multiple sites. However, falcipain-2 and falcipain-3 show strong specificity for P(2) Leu in small peptide substrates, in agreement with the specificity in optimized small molecule inhibitors that was identified previously. These results are consistent with a principal role of falcipain-2 and falcipain-3 in the hydrolysis of hemoglobin by P. falciparum and with the possibility of developing small molecule inhibitors with optimized specificity as antimalarial agents.
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spelling pubmed-26638172009-04-09 Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3 Subramanian, Shoba Hardt, Markus Choe, Youngchool Niles, Richard K. Johansen, Eric B. Legac, Jennifer Gut, Jiri Kerr, Iain D. Craik, Charles S. Rosenthal, Philip J. PLoS One Research Article The Plasmodium falciparum cysteine proteases falcipain-2 and falcipain-3 degrade host hemoglobin to provide free amino acids for parasite protein synthesis. Hemoglobin hydrolysis has been described as an ordered process initiated by aspartic proteases, but cysteine protease inhibitors completely block the process, suggesting that cysteine proteases can also initiate hemoglobin hydrolysis. To characterize the specific roles of falcipains, we used three approaches. First, using random P(1) – P(4) amino acid substrate libraries, falcipain-2 and falcipain-3 demonstrated strong preference for cleavage sites with Leu at the P(2) position. Second, with overlapping peptides spanning α and β globin and proteolysis-dependent (18)O labeling, hydrolysis was seen at many cleavage sites. Third, with intact hemoglobin, numerous cleavage products were identified. Our results suggest that hemoglobin hydrolysis by malaria parasites is not a highly ordered process, but rather proceeds with rapid cleavage by falcipains at multiple sites. However, falcipain-2 and falcipain-3 show strong specificity for P(2) Leu in small peptide substrates, in agreement with the specificity in optimized small molecule inhibitors that was identified previously. These results are consistent with a principal role of falcipain-2 and falcipain-3 in the hydrolysis of hemoglobin by P. falciparum and with the possibility of developing small molecule inhibitors with optimized specificity as antimalarial agents. Public Library of Science 2009-04-09 /pmc/articles/PMC2663817/ /pubmed/19357776 http://dx.doi.org/10.1371/journal.pone.0005156 Text en Subramanian et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Subramanian, Shoba
Hardt, Markus
Choe, Youngchool
Niles, Richard K.
Johansen, Eric B.
Legac, Jennifer
Gut, Jiri
Kerr, Iain D.
Craik, Charles S.
Rosenthal, Philip J.
Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3
title Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3
title_full Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3
title_fullStr Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3
title_full_unstemmed Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3
title_short Hemoglobin Cleavage Site-Specificity of the Plasmodium falciparum Cysteine Proteases Falcipain-2 and Falcipain-3
title_sort hemoglobin cleavage site-specificity of the plasmodium falciparum cysteine proteases falcipain-2 and falcipain-3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2663817/
https://www.ncbi.nlm.nih.gov/pubmed/19357776
http://dx.doi.org/10.1371/journal.pone.0005156
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