Literature DB >> 25599401

Genetic architecture of artemisinin-resistant Plasmodium falciparum.

Olivo Miotto1, Roberto Amato2, Elizabeth A Ashley3, Bronwyn MacInnis4, Jacob Almagro-Garcia2, Chanaki Amaratunga5, Pharath Lim6, Daniel Mead7, Samuel O Oyola7, Mehul Dhorda8, Mallika Imwong9, Charles Woodrow3, Magnus Manske4, Jim Stalker4, Eleanor Drury7, Susana Campino4, Lucas Amenga-Etego10, Thuy-Nhien Nguyen Thanh11, Hien Tinh Tran12, Pascal Ringwald13, Delia Bethell14, Francois Nosten15, Aung Pyae Phyo15, Sasithon Pukrittayakamee9, Kesinee Chotivanich9, Char Meng Chuor16, Chea Nguon16, Seila Suon16, Sokunthea Sreng16, Paul N Newton17, Mayfong Mayxay18, Maniphone Khanthavong19, Bouasy Hongvanthong19, Ye Htut20, Kay Thwe Han20, Myat Phone Kyaw20, Md Abul Faiz21, Caterina I Fanello3, Marie Onyamboko22, Olugbenga A Mokuolu23, Christopher G Jacob24, Shannon Takala-Harrison24, Christopher V Plowe25, Nicholas P Day3, Arjen M Dondorp3, Chris C A Spencer26, Gilean McVean27, Rick M Fairhurst5, Nicholas J White3, Dominic P Kwiatkowski2.   

Abstract

We report a large multicenter genome-wide association study of Plasmodium falciparum resistance to artemisinin, the frontline antimalarial drug. Across 15 locations in Southeast Asia, we identified at least 20 mutations in kelch13 (PF3D7_1343700) affecting the encoded propeller and BTB/POZ domains, which were associated with a slow parasite clearance rate after treatment with artemisinin derivatives. Nonsynonymous polymorphisms in fd (ferredoxin), arps10 (apicoplast ribosomal protein S10), mdr2 (multidrug resistance protein 2) and crt (chloroquine resistance transporter) also showed strong associations with artemisinin resistance. Analysis of the fine structure of the parasite population showed that the fd, arps10, mdr2 and crt polymorphisms are markers of a genetic background on which kelch13 mutations are particularly likely to arise and that they correlate with the contemporary geographical boundaries and population frequencies of artemisinin resistance. These findings indicate that the risk of new resistance-causing mutations emerging is determined by specific predisposing genetic factors in the underlying parasite population.

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Year:  2015        PMID: 25599401      PMCID: PMC4545236          DOI: 10.1038/ng.3189

Source DB:  PubMed          Journal:  Nat Genet        ISSN: 1061-4036            Impact factor:   38.330


  41 in total

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3.  A molecular marker of artemisinin-resistant Plasmodium falciparum malaria.

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Journal:  Nature       Date:  2013-12-18       Impact factor: 49.962

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Authors:  Ian H Cheeseman; Becky A Miller; Shalini Nair; Standwell Nkhoma; Asako Tan; John C Tan; Salma Al Saai; Aung Pyae Phyo; Carit Ler Moo; Khin Maung Lwin; Rose McGready; Elizabeth Ashley; Mallika Imwong; Kasia Stepniewska; Poravuth Yi; Arjen M Dondorp; Mayfong Mayxay; Paul N Newton; Nicholas J White; François Nosten; Michael T Ferdig; Timothy J C Anderson
Journal:  Science       Date:  2012-04-06       Impact factor: 47.728

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Journal:  N Engl J Med       Date:  2009-07-30       Impact factor: 91.245

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8.  Molecular interaction of ferredoxin and ferredoxin-NADP+ reductase from human malaria parasite.

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10.  Multiple populations of artemisinin-resistant Plasmodium falciparum in Cambodia.

Authors:  Olivo Miotto; Jacob Almagro-Garcia; Magnus Manske; Bronwyn Macinnis; Susana Campino; Kirk A Rockett; Chanaki Amaratunga; Pharath Lim; Seila Suon; Sokunthea Sreng; Jennifer M Anderson; Socheat Duong; Chea Nguon; Char Meng Chuor; David Saunders; Youry Se; Chantap Lon; Mark M Fukuda; Lucas Amenga-Etego; Abraham V O Hodgson; Victor Asoala; Mallika Imwong; Shannon Takala-Harrison; François Nosten; Xin-Zhuan Su; Pascal Ringwald; Frédéric Ariey; Christiane Dolecek; Tran Tinh Hien; Maciej F Boni; Cao Quang Thai; Alfred Amambua-Ngwa; David J Conway; Abdoulaye A Djimdé; Ogobara K Doumbo; Issaka Zongo; Jean-Bosco Ouedraogo; Daniel Alcock; Eleanor Drury; Sarah Auburn; Oliver Koch; Mandy Sanders; Christina Hubbart; Gareth Maslen; Valentin Ruano-Rubio; Dushyanth Jyothi; Alistair Miles; John O'Brien; Chris Gamble; Samuel O Oyola; Julian C Rayner; Chris I Newbold; Matthew Berriman; Chris C A Spencer; Gilean McVean; Nicholas P Day; Nicholas J White; Delia Bethell; Arjen M Dondorp; Christopher V Plowe; Rick M Fairhurst; Dominic P Kwiatkowski
Journal:  Nat Genet       Date:  2013-04-28       Impact factor: 38.330

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  276 in total

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3.  Fusion of field studies and the laboratory solves a puzzle in antimalarial resistance.

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6.  Plasmodium falciparum Falcipain-2a Polymorphisms in Southeast Asia and Their Association With Artemisinin Resistance.

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7.  Molecular Profile of Malaria Drug Resistance Markers of Plasmodium falciparum in Suriname.

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8.  Artemisinin Resistance-Associated K13 Polymorphisms of Plasmodium falciparum in Southern Rwanda, 2010-2015.

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9.  Molecular Surveillance of Plasmodium falciparum Drug Resistance Markers in Clinical Samples from Botswana.

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