Cargando…

Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4

BACKGROUND: Multiple cysteine proteases of malaria parasites are required for maintenance of parasite metabolic homeostasis and egress from the host erythrocyte. In Plasmodium falciparum these proteases appear to mediate the processing of hemoglobin and aspartic proteases (plasmepsins) in the acidic...

Descripción completa

Detalles Bibliográficos
Autores principales: Na, Byoung-Kuk, Bae, Young-An, Zo, Young-Gun, Choe, Youngchool, Kim, Seon-Hee, Desai, Prashant V., Avery, Mitchell A., Craik, Charles S., Kim, Tong-Soo, Rosenthal, Philip J., Kong, Yoon
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2953480/
https://www.ncbi.nlm.nih.gov/pubmed/20967286
http://dx.doi.org/10.1371/journal.pntd.0000849
_version_ 1782187845709987840
author Na, Byoung-Kuk
Bae, Young-An
Zo, Young-Gun
Choe, Youngchool
Kim, Seon-Hee
Desai, Prashant V.
Avery, Mitchell A.
Craik, Charles S.
Kim, Tong-Soo
Rosenthal, Philip J.
Kong, Yoon
author_facet Na, Byoung-Kuk
Bae, Young-An
Zo, Young-Gun
Choe, Youngchool
Kim, Seon-Hee
Desai, Prashant V.
Avery, Mitchell A.
Craik, Charles S.
Kim, Tong-Soo
Rosenthal, Philip J.
Kong, Yoon
author_sort Na, Byoung-Kuk
collection PubMed
description BACKGROUND: Multiple cysteine proteases of malaria parasites are required for maintenance of parasite metabolic homeostasis and egress from the host erythrocyte. In Plasmodium falciparum these proteases appear to mediate the processing of hemoglobin and aspartic proteases (plasmepsins) in the acidic food vacuole and the hydrolysis of erythrocyte structural proteins at neutral pH. Two cysteine proteases, vivapain (VX)-2 and VX-3 have been characterized in P. vivax, but comprehensive studies of P. vivax cysteine proteases remain elusive. FINDINGS: We characterized a novel cysteine protease of P. vivax, VX-4, of which orthologs appears to have evolved differentially in primate plasmodia with strong cladistic affinity toward those of rodent Plasmodium. Recombinant VX-4 demonstrated dual substrate specificity depending on the surrounding micro-environmental pH. Its hydrolyzing activity against benzyloxycarbonyl-Leu-Arg-4-methyl-coumaryl-7-amide (Z-Leu-Arg-MCA) and Z-Phe-Arg-MCA was highest at acidic pH (5.5), whereas that against Z-Arg-Arg-MCA was maximal at neutral pH (6.5–7.5). VX-4 preferred positively charged amino acids and Gln at the P1 position, with less strict specificity at P3 and P4. P2 preferences depended on pH (Leu at pH 5.5 and Arg at pH 7.5). Three amino acids that delineate the S2 pocket were substituted in VX-4 compared to VX-2 and VX-3 (Ala90, Gly157 and Glu180). Replacement of Glu180 abolished activity against Z-Arg-Arg-MCA at neutral pH, indicating the importance of this amino acid in the pH-dependent substrate preference. VX-4 was localized in the food vacuoles and cytoplasm of the erythrocytic stage of P. vivax. VX-4 showed maximal activity against actin at neutral pH, and that against P. vivax plasmepsin 4 and hemoglobin was detected at neutral/acidic and acidic pH, respectively. CONCLUSION: VX-4 demonstrates pH-dependent substrate switching, which might offer an efficient mechanism for the specific cleavage of different substrates in different intracellular environments. VX-4 might function as a hemoglobinase in the acidic parasite food vacuole, a maturase of P. vivax plasmepsin 4 at neutral or acidic pH, and a cytoskeleton-degrading protease in the neutral erythrocyte cytosol.
format Text
id pubmed-2953480
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-29534802010-10-21 Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4 Na, Byoung-Kuk Bae, Young-An Zo, Young-Gun Choe, Youngchool Kim, Seon-Hee Desai, Prashant V. Avery, Mitchell A. Craik, Charles S. Kim, Tong-Soo Rosenthal, Philip J. Kong, Yoon PLoS Negl Trop Dis Research Article BACKGROUND: Multiple cysteine proteases of malaria parasites are required for maintenance of parasite metabolic homeostasis and egress from the host erythrocyte. In Plasmodium falciparum these proteases appear to mediate the processing of hemoglobin and aspartic proteases (plasmepsins) in the acidic food vacuole and the hydrolysis of erythrocyte structural proteins at neutral pH. Two cysteine proteases, vivapain (VX)-2 and VX-3 have been characterized in P. vivax, but comprehensive studies of P. vivax cysteine proteases remain elusive. FINDINGS: We characterized a novel cysteine protease of P. vivax, VX-4, of which orthologs appears to have evolved differentially in primate plasmodia with strong cladistic affinity toward those of rodent Plasmodium. Recombinant VX-4 demonstrated dual substrate specificity depending on the surrounding micro-environmental pH. Its hydrolyzing activity against benzyloxycarbonyl-Leu-Arg-4-methyl-coumaryl-7-amide (Z-Leu-Arg-MCA) and Z-Phe-Arg-MCA was highest at acidic pH (5.5), whereas that against Z-Arg-Arg-MCA was maximal at neutral pH (6.5–7.5). VX-4 preferred positively charged amino acids and Gln at the P1 position, with less strict specificity at P3 and P4. P2 preferences depended on pH (Leu at pH 5.5 and Arg at pH 7.5). Three amino acids that delineate the S2 pocket were substituted in VX-4 compared to VX-2 and VX-3 (Ala90, Gly157 and Glu180). Replacement of Glu180 abolished activity against Z-Arg-Arg-MCA at neutral pH, indicating the importance of this amino acid in the pH-dependent substrate preference. VX-4 was localized in the food vacuoles and cytoplasm of the erythrocytic stage of P. vivax. VX-4 showed maximal activity against actin at neutral pH, and that against P. vivax plasmepsin 4 and hemoglobin was detected at neutral/acidic and acidic pH, respectively. CONCLUSION: VX-4 demonstrates pH-dependent substrate switching, which might offer an efficient mechanism for the specific cleavage of different substrates in different intracellular environments. VX-4 might function as a hemoglobinase in the acidic parasite food vacuole, a maturase of P. vivax plasmepsin 4 at neutral or acidic pH, and a cytoskeleton-degrading protease in the neutral erythrocyte cytosol. Public Library of Science 2010-10-12 /pmc/articles/PMC2953480/ /pubmed/20967286 http://dx.doi.org/10.1371/journal.pntd.0000849 Text en Na 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
Na, Byoung-Kuk
Bae, Young-An
Zo, Young-Gun
Choe, Youngchool
Kim, Seon-Hee
Desai, Prashant V.
Avery, Mitchell A.
Craik, Charles S.
Kim, Tong-Soo
Rosenthal, Philip J.
Kong, Yoon
Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4
title Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4
title_full Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4
title_fullStr Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4
title_full_unstemmed Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4
title_short Biochemical Properties of a Novel Cysteine Protease of Plasmodium vivax, Vivapain-4
title_sort biochemical properties of a novel cysteine protease of plasmodium vivax, vivapain-4
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2953480/
https://www.ncbi.nlm.nih.gov/pubmed/20967286
http://dx.doi.org/10.1371/journal.pntd.0000849
work_keys_str_mv AT nabyoungkuk biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT baeyoungan biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT zoyounggun biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT choeyoungchool biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT kimseonhee biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT desaiprashantv biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT averymitchella biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT craikcharless biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT kimtongsoo biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT rosenthalphilipj biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4
AT kongyoon biochemicalpropertiesofanovelcysteineproteaseofplasmodiumvivaxvivapain4