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Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia
Glucose-6-phosphate dehydrogenase (G6PD) deficiency is believed to confer protection against Plasmodium falciparum malaria, but the precise nature of the protective effect has proved difficult to define as G6PD deficiency has multiple allelic variants with different effects in males and females, and...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
eLife Sciences Publications, Ltd
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5222559/ https://www.ncbi.nlm.nih.gov/pubmed/28067620 http://dx.doi.org/10.7554/eLife.15085 |
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author | Clarke, Geraldine M Rockett, Kirk Kivinen, Katja Hubbart, Christina Jeffreys, Anna E Rowlands, Kate Jallow, Muminatou Conway, David J Bojang, Kalifa A Pinder, Margaret Usen, Stanley Sisay-Joof, Fatoumatta Sirugo, Giorgio Toure, Ousmane Thera, Mahamadou A Konate, Salimata Sissoko, Sibiry Niangaly, Amadou Poudiougou, Belco Mangano, Valentina D Bougouma, Edith C Sirima, Sodiomon B Modiano, David Amenga-Etego, Lucas N Ghansah, Anita Koram, Kwadwo A Wilson, Michael D Enimil, Anthony Evans, Jennifer Amodu, Olukemi K Olaniyan, Subulade Apinjoh, Tobias Mugri, Regina Ndi, Andre Ndila, Carolyne M Uyoga, Sophie Macharia, Alexander Peshu, Norbert Williams, Thomas N Manjurano, Alphaxard Sepúlveda, Nuno Clark, Taane G Riley, Eleanor Drakeley, Chris Reyburn, Hugh Nyirongo, Vysaul Kachala, David Molyneux, Malcolm Dunstan, Sarah J Phu, Nguyen Hoan Quyen, Nguyen Ngoc Thai, Cao Quang Hien, Tran Tinh Manning, Laurens Laman, Moses Siba, Peter Karunajeewa, Harin Allen, Steve Allen, Angela Davis, Timothy ME Michon, Pascal Mueller, Ivo Molloy, Síle F Campino, Susana Kerasidou, Angeliki Cornelius, Victoria J Hart, Lee Shah, Shivang S Band, Gavin Spencer, Chris CA Agbenyega, Tsiri Achidi, Eric Doumbo, Ogobara K Farrar, Jeremy Marsh, Kevin Taylor, Terrie Kwiatkowski, Dominic P |
author_facet | Clarke, Geraldine M Rockett, Kirk Kivinen, Katja Hubbart, Christina Jeffreys, Anna E Rowlands, Kate Jallow, Muminatou Conway, David J Bojang, Kalifa A Pinder, Margaret Usen, Stanley Sisay-Joof, Fatoumatta Sirugo, Giorgio Toure, Ousmane Thera, Mahamadou A Konate, Salimata Sissoko, Sibiry Niangaly, Amadou Poudiougou, Belco Mangano, Valentina D Bougouma, Edith C Sirima, Sodiomon B Modiano, David Amenga-Etego, Lucas N Ghansah, Anita Koram, Kwadwo A Wilson, Michael D Enimil, Anthony Evans, Jennifer Amodu, Olukemi K Olaniyan, Subulade Apinjoh, Tobias Mugri, Regina Ndi, Andre Ndila, Carolyne M Uyoga, Sophie Macharia, Alexander Peshu, Norbert Williams, Thomas N Manjurano, Alphaxard Sepúlveda, Nuno Clark, Taane G Riley, Eleanor Drakeley, Chris Reyburn, Hugh Nyirongo, Vysaul Kachala, David Molyneux, Malcolm Dunstan, Sarah J Phu, Nguyen Hoan Quyen, Nguyen Ngoc Thai, Cao Quang Hien, Tran Tinh Manning, Laurens Laman, Moses Siba, Peter Karunajeewa, Harin Allen, Steve Allen, Angela Davis, Timothy ME Michon, Pascal Mueller, Ivo Molloy, Síle F Campino, Susana Kerasidou, Angeliki Cornelius, Victoria J Hart, Lee Shah, Shivang S Band, Gavin Spencer, Chris CA Agbenyega, Tsiri Achidi, Eric Doumbo, Ogobara K Farrar, Jeremy Marsh, Kevin Taylor, Terrie Kwiatkowski, Dominic P |
author_sort | Clarke, Geraldine M |
collection | PubMed |
description | Glucose-6-phosphate dehydrogenase (G6PD) deficiency is believed to confer protection against Plasmodium falciparum malaria, but the precise nature of the protective effect has proved difficult to define as G6PD deficiency has multiple allelic variants with different effects in males and females, and it has heterogeneous effects on the clinical outcome of P. falciparum infection. Here we report an analysis of multiple allelic forms of G6PD deficiency in a large multi-centre case-control study of severe malaria, using the WHO classification of G6PD mutations to estimate each individual’s level of enzyme activity from their genotype. Aggregated across all genotypes, we find that increasing levels of G6PD deficiency are associated with decreasing risk of cerebral malaria, but with increased risk of severe malarial anaemia. Models of balancing selection based on these findings indicate that an evolutionary trade-off between different clinical outcomes of P. falciparum infection could have been a major cause of the high levels of G6PD polymorphism seen in human populations. DOI: http://dx.doi.org/10.7554/eLife.15085.001 |
format | Online Article Text |
id | pubmed-5222559 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | eLife Sciences Publications, Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-52225592017-01-11 Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia Clarke, Geraldine M Rockett, Kirk Kivinen, Katja Hubbart, Christina Jeffreys, Anna E Rowlands, Kate Jallow, Muminatou Conway, David J Bojang, Kalifa A Pinder, Margaret Usen, Stanley Sisay-Joof, Fatoumatta Sirugo, Giorgio Toure, Ousmane Thera, Mahamadou A Konate, Salimata Sissoko, Sibiry Niangaly, Amadou Poudiougou, Belco Mangano, Valentina D Bougouma, Edith C Sirima, Sodiomon B Modiano, David Amenga-Etego, Lucas N Ghansah, Anita Koram, Kwadwo A Wilson, Michael D Enimil, Anthony Evans, Jennifer Amodu, Olukemi K Olaniyan, Subulade Apinjoh, Tobias Mugri, Regina Ndi, Andre Ndila, Carolyne M Uyoga, Sophie Macharia, Alexander Peshu, Norbert Williams, Thomas N Manjurano, Alphaxard Sepúlveda, Nuno Clark, Taane G Riley, Eleanor Drakeley, Chris Reyburn, Hugh Nyirongo, Vysaul Kachala, David Molyneux, Malcolm Dunstan, Sarah J Phu, Nguyen Hoan Quyen, Nguyen Ngoc Thai, Cao Quang Hien, Tran Tinh Manning, Laurens Laman, Moses Siba, Peter Karunajeewa, Harin Allen, Steve Allen, Angela Davis, Timothy ME Michon, Pascal Mueller, Ivo Molloy, Síle F Campino, Susana Kerasidou, Angeliki Cornelius, Victoria J Hart, Lee Shah, Shivang S Band, Gavin Spencer, Chris CA Agbenyega, Tsiri Achidi, Eric Doumbo, Ogobara K Farrar, Jeremy Marsh, Kevin Taylor, Terrie Kwiatkowski, Dominic P eLife Epidemiology and Global Health Glucose-6-phosphate dehydrogenase (G6PD) deficiency is believed to confer protection against Plasmodium falciparum malaria, but the precise nature of the protective effect has proved difficult to define as G6PD deficiency has multiple allelic variants with different effects in males and females, and it has heterogeneous effects on the clinical outcome of P. falciparum infection. Here we report an analysis of multiple allelic forms of G6PD deficiency in a large multi-centre case-control study of severe malaria, using the WHO classification of G6PD mutations to estimate each individual’s level of enzyme activity from their genotype. Aggregated across all genotypes, we find that increasing levels of G6PD deficiency are associated with decreasing risk of cerebral malaria, but with increased risk of severe malarial anaemia. Models of balancing selection based on these findings indicate that an evolutionary trade-off between different clinical outcomes of P. falciparum infection could have been a major cause of the high levels of G6PD polymorphism seen in human populations. DOI: http://dx.doi.org/10.7554/eLife.15085.001 eLife Sciences Publications, Ltd 2017-01-09 /pmc/articles/PMC5222559/ /pubmed/28067620 http://dx.doi.org/10.7554/eLife.15085 Text en © 2017, Clarke et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited. |
spellingShingle | Epidemiology and Global Health Clarke, Geraldine M Rockett, Kirk Kivinen, Katja Hubbart, Christina Jeffreys, Anna E Rowlands, Kate Jallow, Muminatou Conway, David J Bojang, Kalifa A Pinder, Margaret Usen, Stanley Sisay-Joof, Fatoumatta Sirugo, Giorgio Toure, Ousmane Thera, Mahamadou A Konate, Salimata Sissoko, Sibiry Niangaly, Amadou Poudiougou, Belco Mangano, Valentina D Bougouma, Edith C Sirima, Sodiomon B Modiano, David Amenga-Etego, Lucas N Ghansah, Anita Koram, Kwadwo A Wilson, Michael D Enimil, Anthony Evans, Jennifer Amodu, Olukemi K Olaniyan, Subulade Apinjoh, Tobias Mugri, Regina Ndi, Andre Ndila, Carolyne M Uyoga, Sophie Macharia, Alexander Peshu, Norbert Williams, Thomas N Manjurano, Alphaxard Sepúlveda, Nuno Clark, Taane G Riley, Eleanor Drakeley, Chris Reyburn, Hugh Nyirongo, Vysaul Kachala, David Molyneux, Malcolm Dunstan, Sarah J Phu, Nguyen Hoan Quyen, Nguyen Ngoc Thai, Cao Quang Hien, Tran Tinh Manning, Laurens Laman, Moses Siba, Peter Karunajeewa, Harin Allen, Steve Allen, Angela Davis, Timothy ME Michon, Pascal Mueller, Ivo Molloy, Síle F Campino, Susana Kerasidou, Angeliki Cornelius, Victoria J Hart, Lee Shah, Shivang S Band, Gavin Spencer, Chris CA Agbenyega, Tsiri Achidi, Eric Doumbo, Ogobara K Farrar, Jeremy Marsh, Kevin Taylor, Terrie Kwiatkowski, Dominic P Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia |
title | Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia |
title_full | Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia |
title_fullStr | Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia |
title_full_unstemmed | Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia |
title_short | Characterisation of the opposing effects of G6PD deficiency on cerebral malaria and severe malarial anaemia |
title_sort | characterisation of the opposing effects of g6pd deficiency on cerebral malaria and severe malarial anaemia |
topic | Epidemiology and Global Health |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5222559/ https://www.ncbi.nlm.nih.gov/pubmed/28067620 http://dx.doi.org/10.7554/eLife.15085 |
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