Literature DB >> 31636063

Modification of pfap2μ and pfubp1 Markedly Reduces Ring-Stage Susceptibility of Plasmodium falciparum to Artemisinin In Vitro.

Ryan C Henrici1, Donelly A van Schalkwyk1, Colin J Sutherland2.   

Abstract

Management of uncomplicated malaria worldwide is threatened by the emergence in Asia of Plasmodium falciparum carrying variants of the pfk13 locus and exhibiting reduced susceptibility to artemisinin. Mutations in two other genes, ubp1 and ap2μ, are associated with artemisinin resistance in rodent malaria and with clinical failure of combination therapy in African malaria patients. Transgenic P. falciparum clones, each carrying orthologues of mutations in pfap2μ and pfubp1 associated with artemisinin resistance in Plasmodium chabaudi, were derived by Cas9 gene editing. Susceptibility to artemisinin and other antimalarial drugs was determined. Following exposure to 700 nM dihydroartemisinin in the ring-stage survival assay, we found strong evidence that transgenic parasites expressing the I592T variant (11% survival), but not the S160N variant (1% survival), of the AP2μ adaptin subunit were significantly less susceptible than the parental wild-type parasite population. The V3275F variant of UBP1, but not the V3306F variant, also displayed reduced susceptibility to dihydroartemisinin (8.5% survival versus 0.5% survival). AP2μ and UBP1 variants did not elicit reduced susceptibility to 48 h of exposure to artemisinin or to other antimalarial drugs. Therefore, variants of the AP2 adaptor complex μ-subunit and of the ubiquitin hydrolase UBP1 reduce in vitro artemisinin susceptibility at the early ring stage in P. falciparum These findings confirm the existence of multiple pathways to perturbation of either the mode of action of artemisinin, the parasite's adaptive mechanisms of resistance, or both. The cellular role of UBP1 and AP2μ in Plasmodium parasites should now be elucidated.
Copyright © 2019 American Society for Microbiology.

Entities:  

Keywords:  Plasmodium falciparumzzm321990; antimalarial agents; gene editing; susceptibility

Year:  2019        PMID: 31636063      PMCID: PMC7187599          DOI: 10.1128/AAC.01542-19

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  25 in total

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Journal:  Science       Date:  2014-12-11       Impact factor: 47.728

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Authors:  Juliana M Sá; Sarah R Kaslow; Michael A Krause; Viviana A Melendez-Muniz; Rebecca E Salzman; Whitney A Kite; Min Zhang; Roberto R Moraes Barros; Jianbing Mu; Paul K Han; J Patrick Mershon; Christine E Figan; Ramoncito L Caleon; Rifat S Rahman; Tyler J Gibson; Chanaki Amaratunga; Erika P Nishiguchi; Kimberly F Breglio; Theresa M Engels; Soundarapandian Velmurugan; Stacy Ricklefs; Judith Straimer; Nina F Gnädig; Bingbing Deng; Anna Liu; Ababacar Diouf; Kazutoyo Miura; Gregory S Tullo; Richard T Eastman; Sumana Chakravarty; Eric R James; Kenneth Udenze; Suzanne Li; Daniel E Sturdevant; Robert W Gwadz; Stephen F Porcella; Carole A Long; David A Fidock; Marvin L Thomas; Michael P Fay; B Kim Lee Sim; Stephen L Hoffman; John H Adams; Rick M Fairhurst; Xin-Zhuan Su; Thomas E Wellems
Journal:  Proc Natl Acad Sci U S A       Date:  2018-11-19       Impact factor: 11.205

3.  Genome editing in the human malaria parasite Plasmodium falciparum using the CRISPR-Cas9 system.

Authors:  Mehdi Ghorbal; Molly Gorman; Cameron Ross Macpherson; Rafael Miyazawa Martins; Artur Scherf; Jose-Juan Lopez-Rubio
Journal:  Nat Biotechnol       Date:  2014-06-01       Impact factor: 54.908

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Authors:  Elizabeth A Ashley; Mehul Dhorda; Rick M Fairhurst; Chanaki Amaratunga; Parath Lim; Seila Suon; Sokunthea Sreng; Jennifer M Anderson; Sivanna Mao; Baramey Sam; Chantha Sopha; Char Meng Chuor; Chea Nguon; Siv Sovannaroth; Sasithon Pukrittayakamee; Podjanee Jittamala; Kesinee Chotivanich; Kitipumi Chutasmit; Chaiyaporn Suchatsoonthorn; Ratchadaporn Runcharoen; Tran Tinh Hien; Nguyen Thanh Thuy-Nhien; Ngo Viet Thanh; Nguyen Hoan Phu; Ye Htut; Kay-Thwe Han; Kyin Hla Aye; Olugbenga A Mokuolu; Rasaq R Olaosebikan; Olaleke O Folaranmi; Mayfong Mayxay; Maniphone Khanthavong; Bouasy Hongvanthong; Paul N Newton; Marie A Onyamboko; Caterina I Fanello; Antoinette K Tshefu; Neelima Mishra; Neena Valecha; Aung Pyae Phyo; Francois Nosten; Poravuth Yi; Rupam Tripura; Steffen Borrmann; Mahfudh Bashraheil; Judy Peshu; M Abul Faiz; Aniruddha Ghose; M Amir Hossain; Rasheda Samad; M Ridwanur Rahman; M Mahtabuddin Hasan; Akhterul Islam; Olivo Miotto; Roberto Amato; Bronwyn MacInnis; Jim Stalker; Dominic P Kwiatkowski; Zbynek Bozdech; Atthanee Jeeyapant; Phaik Yeong Cheah; Tharisara Sakulthaew; Jeremy Chalk; Benjamas Intharabut; Kamolrat Silamut; Sue J Lee; Benchawan Vihokhern; Chanon Kunasol; Mallika Imwong; Joel Tarning; Walter J Taylor; Shunmay Yeung; Charles J Woodrow; Jennifer A Flegg; Debashish Das; Jeffery Smith; Meera Venkatesan; Christopher V Plowe; Kasia Stepniewska; Philippe J Guerin; Arjen M Dondorp; Nicholas P Day; Nicholas J White
Journal:  N Engl J Med       Date:  2014-07-31       Impact factor: 91.245

5.  The Mu subunit of Plasmodium falciparum clathrin-associated adaptor protein 2 modulates in vitro parasite response to artemisinin and quinine.

Authors:  Gisela Henriques; Donelly A van Schalkwyk; Rebekah Burrow; David C Warhurst; Eloise Thompson; David A Baker; David A Fidock; Rachel Hallett; Christian Flueck; Colin J Sutherland
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6.  Gene encoding a deubiquitinating enzyme is mutated in artesunate- and chloroquine-resistant rodent malaria parasites.

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Journal:  Sci Rep       Date:  2013-11-25       Impact factor: 4.379

8.  Directional selection at the pfmdr1, pfcrt, pfubp1, and pfap2mu loci of Plasmodium falciparum in Kenyan children treated with ACT.

Authors:  Gisela Henriques; Rachel L Hallett; Khalid B Beshir; Nahla B Gadalla; Rachel E Johnson; Rebekah Burrow; Donelly A van Schalkwyk; Patrick Sawa; Sabah A Omar; Taane G Clark; Teun Bousema; Colin J Sutherland
Journal:  J Infect Dis       Date:  2014-07-03       Impact factor: 5.226

9.  Lack of K13 mutations in Plasmodium falciparum persisting after artemisinin combination therapy treatment of Kenyan children.

Authors:  Julian Muwanguzi; Gisela Henriques; Patrick Sawa; Teun Bousema; Colin J Sutherland; Khalid B Beshir
Journal:  Malar J       Date:  2016-01-22       Impact factor: 2.979

10.  Comparison of the susceptibility of Plasmodium knowlesi and Plasmodium falciparum to antimalarial agents.

Authors:  Donelly A van Schalkwyk; Robert W Moon; Benjamin Blasco; Colin J Sutherland
Journal:  J Antimicrob Chemother       Date:  2017-11-01       Impact factor: 5.790

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  13 in total

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Authors:  Xin-Zhuan Su; Jian Wu; Fangzheng Xu; Sittiporn Pattaradilokrat
Journal:  Parasitol Int       Date:  2022-08-01       Impact factor: 2.106

2.  Characterization of pfmdr1, pfcrt, pfK13, pfubp1, and pfap2mu in Travelers Returning from Africa with Plasmodium falciparum Infections Reported in China from 2014 to 2018.

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3.  Autophagy Underlies the Proteostasis Mechanisms of Artemisinin Resistance in P. falciparum Malaria.

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4.  Experimentally Engineered Mutations in a Ubiquitin Hydrolase, UBP-1, Modulate In Vivo Susceptibility to Artemisinin and Chloroquine in Plasmodium berghei.

Authors:  Nelson V Simwela; Katie R Hughes; A Brett Roberts; Michael T Rennie; Michael P Barrett; Andrew P Waters
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8.  Plasmodium berghei K13 Mutations Mediate In Vivo Artemisinin Resistance That Is Reversed by Proteasome Inhibition.

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9.  Plasmodium falciparum K13 mutations in Africa and Asia impact artemisinin resistance and parasite fitness.

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10.  The Plasmodium falciparum Artemisinin Susceptibility-Associated AP-2 Adaptin μ Subunit is Clathrin Independent and Essential for Schizont Maturation.

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