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Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding

BACKGROUND: Plasmodium falciparum is the protozoan parasite primarily responsible for more than one million malarial deaths, annually, and is developing resistance to current therapies. Throughout its lifespan, the parasite is subjected to oxidative attack, so Plasmodium antioxidant defences are ess...

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Autores principales: Qiu, Wei, Dong, Aiping, Pizarro, Juan C, Botchkarsev, Alexei, Min, Jinrong, Wernimont, Amy K, Hills, Tanya, Hui, Raymond, Artz, Jennifer D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3337327/
https://www.ncbi.nlm.nih.gov/pubmed/22429898
http://dx.doi.org/10.1186/1472-6807-12-2
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author Qiu, Wei
Dong, Aiping
Pizarro, Juan C
Botchkarsev, Alexei
Min, Jinrong
Wernimont, Amy K
Hills, Tanya
Hui, Raymond
Artz, Jennifer D
author_facet Qiu, Wei
Dong, Aiping
Pizarro, Juan C
Botchkarsev, Alexei
Min, Jinrong
Wernimont, Amy K
Hills, Tanya
Hui, Raymond
Artz, Jennifer D
author_sort Qiu, Wei
collection PubMed
description BACKGROUND: Plasmodium falciparum is the protozoan parasite primarily responsible for more than one million malarial deaths, annually, and is developing resistance to current therapies. Throughout its lifespan, the parasite is subjected to oxidative attack, so Plasmodium antioxidant defences are essential for its survival and are targets for disease control. RESULTS: To further understand the molecular aspects of the Plasmodium redox system, we solved 4 structures of Plasmodium peroxiredoxins (Prx). Our study has confirmed PvTrx-Px1 to be a hydrogen peroxide (H(2)O(2))-sensitive peroxiredoxin. We have identified and characterized the novel toroid octameric oligomer of PyTrx-Px1, which may be attributed to the interplay of several factors including: (1) the orientation of the conserved surface/buried arginine of the NNLA(I/L)GRS-loop; and (2) the C-terminal tail positioning (also associated with the aforementioned conserved loop) which facilitates the intermolecular hydrogen bond between dimers (in an A-C fashion). In addition, a notable feature of the disulfide bonds in some of the Prx crystal structures is discussed. Finally, insight into the latter stages of the peroxiredoxin reaction coordinate is gained. Our structure of PyPrx6 is not only in the sulfinic acid (RSO(2)H) form, but it is also with glycerol bound in a way (not previously observed) indicative of product binding. CONCLUSIONS: The structural characterization of Plasmodium peroxiredoxins provided herein provides insight into their oligomerization and product binding which may facilitate the targeting of these antioxidant defences. Although the structural basis for the octameric oligomerization is further understood, the results yield more questions about the biological implications of the peroxiredoxin oligomerization, as multiple toroid configurations are now known. The crystal structure depicting the product bound active site gives insight into the overoxidation of the active site and allows further characterization of the leaving group chemistry.
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spelling pubmed-33373272012-04-26 Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding Qiu, Wei Dong, Aiping Pizarro, Juan C Botchkarsev, Alexei Min, Jinrong Wernimont, Amy K Hills, Tanya Hui, Raymond Artz, Jennifer D BMC Struct Biol Research Article BACKGROUND: Plasmodium falciparum is the protozoan parasite primarily responsible for more than one million malarial deaths, annually, and is developing resistance to current therapies. Throughout its lifespan, the parasite is subjected to oxidative attack, so Plasmodium antioxidant defences are essential for its survival and are targets for disease control. RESULTS: To further understand the molecular aspects of the Plasmodium redox system, we solved 4 structures of Plasmodium peroxiredoxins (Prx). Our study has confirmed PvTrx-Px1 to be a hydrogen peroxide (H(2)O(2))-sensitive peroxiredoxin. We have identified and characterized the novel toroid octameric oligomer of PyTrx-Px1, which may be attributed to the interplay of several factors including: (1) the orientation of the conserved surface/buried arginine of the NNLA(I/L)GRS-loop; and (2) the C-terminal tail positioning (also associated with the aforementioned conserved loop) which facilitates the intermolecular hydrogen bond between dimers (in an A-C fashion). In addition, a notable feature of the disulfide bonds in some of the Prx crystal structures is discussed. Finally, insight into the latter stages of the peroxiredoxin reaction coordinate is gained. Our structure of PyPrx6 is not only in the sulfinic acid (RSO(2)H) form, but it is also with glycerol bound in a way (not previously observed) indicative of product binding. CONCLUSIONS: The structural characterization of Plasmodium peroxiredoxins provided herein provides insight into their oligomerization and product binding which may facilitate the targeting of these antioxidant defences. Although the structural basis for the octameric oligomerization is further understood, the results yield more questions about the biological implications of the peroxiredoxin oligomerization, as multiple toroid configurations are now known. The crystal structure depicting the product bound active site gives insight into the overoxidation of the active site and allows further characterization of the leaving group chemistry. BioMed Central 2012-03-19 /pmc/articles/PMC3337327/ /pubmed/22429898 http://dx.doi.org/10.1186/1472-6807-12-2 Text en Copyright ©2012 Qiu 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
Qiu, Wei
Dong, Aiping
Pizarro, Juan C
Botchkarsev, Alexei
Min, Jinrong
Wernimont, Amy K
Hills, Tanya
Hui, Raymond
Artz, Jennifer D
Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding
title Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding
title_full Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding
title_fullStr Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding
title_full_unstemmed Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding
title_short Crystal structures from the Plasmodium peroxiredoxins: new insights into oligomerization and product binding
title_sort crystal structures from the plasmodium peroxiredoxins: new insights into oligomerization and product binding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3337327/
https://www.ncbi.nlm.nih.gov/pubmed/22429898
http://dx.doi.org/10.1186/1472-6807-12-2
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