Literature DB >> 21976487

Requirements for effective malaria control with homing endonuclease genes.

Anne Deredec1, H Charles J Godfray, Austin Burt.   

Abstract

Malaria continues to impose a substantial burden on human health. We have previously proposed that biological approaches to control the mosquito vector of disease could be developed using homing endonuclease genes (HEGs), a class of selfish or parasitic gene that exists naturally in many microbes. Recent lab studies have demonstrated that HEGs can function in mosquitoes. We constructed and analyzed a model of mosquito population genetics and malaria epidemiology to determine how well HEGs need to function in order to have a significant effect on the burden of disease. Our model, combined with currently available data, indicates that populations of Anopheles gambiae could be eliminated by releasing 2-3 HEGs targeting female fertility genes, or a driving-Y chromosome that is transmitted to 75-96% of progeny. Combinations of fertility-targeting HEGs and Y drive may also be effective. It is possible to eliminate the disease without eliminating the vector, but the parameter space producing this outcome appears to be small. HEGs causing a quantitative reduction in adult survival can be more effective than those targeting female fertility, but the selection coefficients that need to be imposed are still large, unless many HEGs are to be released. Simulations show that HEG-based strategies can be effective over socially relevant time frames. Important limiting assumptions of the models are that there is only a single vector species, and we model a homogeneous population, not a landscape. Nevertheless, we conclude that HEG-based approaches could have a transformational effect on malaria control efforts.

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Year:  2011        PMID: 21976487      PMCID: PMC3203790          DOI: 10.1073/pnas.1110717108

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  29 in total

Review 1.  Gene drive systems in mosquitoes: rules of the road.

Authors:  Anthony A James
Journal:  Trends Parasitol       Date:  2005-02

Review 2.  Homing endonuclease structure and function.

Authors:  Barry L Stoddard
Journal:  Q Rev Biophys       Date:  2005-12-09       Impact factor: 5.318

Review 3.  Mutations affecting fitness in Drosophila populations.

Authors:  M J Simmons; J F Crow
Journal:  Annu Rev Genet       Date:  1977       Impact factor: 16.830

4.  Aestivation of the African malaria mosquito, Anopheles gambiae in the Sahel.

Authors:  Tovi Lehmann; Adama Dao; Alpha Seydou Yaro; Abdoulaye Adamou; Yaya Kassogue; Moussa Diallo; Traoré Sékou; Cecilia Coscaron-Arias
Journal:  Am J Trop Med Hyg       Date:  2010-09       Impact factor: 2.345

5.  Taking malaria transmission out of the bottle: implications of mosquito dispersal for vector-control interventions.

Authors:  Gerry F Killeen; Bart G J Knols; Weidong Gu
Journal:  Lancet Infect Dis       Date:  2003-05       Impact factor: 25.071

6.  Towards evolution-proof malaria control with insecticides.

Authors:  Jacob C Koella; Penelope A Lynch; Matthew B Thomas; Andrew F Read
Journal:  Evol Appl       Date:  2009-04-27       Impact factor: 5.183

7.  Late-acting dominant lethal genetic systems and mosquito control.

Authors:  Hoang Kim Phuc; Morten H Andreasen; Rosemary S Burton; Céline Vass; Matthew J Epton; Gavin Pape; Guoliang Fu; Kirsty C Condon; Sarah Scaife; Christl A Donnelly; Paul G Coleman; Helen White-Cooper; Luke Alphey
Journal:  BMC Biol       Date:  2007-03-20       Impact factor: 7.431

8.  How to make evolution-proof insecticides for malaria control.

Authors:  Andrew F Read; Penelope A Lynch; Matthew B Thomas
Journal:  PLoS Biol       Date:  2009-04-07       Impact factor: 8.029

9.  Application of the lumped age-class technique to studying the dynamics of malaria-mosquito-human interactions.

Authors:  Penny A Hancock; H Charles J Godfray
Journal:  Malar J       Date:  2007-07-30       Impact factor: 2.979

Review 10.  Statics and dynamics of malaria infection in Anopheles mosquitoes.

Authors:  David L Smith; F Ellis McKenzie
Journal:  Malar J       Date:  2004-06-04       Impact factor: 2.979

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  82 in total

Review 1.  Cheating evolution: engineering gene drives to manipulate the fate of wild populations.

Authors:  Jackson Champer; Anna Buchman; Omar S Akbari
Journal:  Nat Rev Genet       Date:  2016-02-15       Impact factor: 53.242

2.  Infertility resulting from transgenic I-PpoI male Anopheles gambiae in large cage trials.

Authors:  T A Klein; N Windbichler; A Deredec; A Burt; M Q Benedict
Journal:  Pathog Glob Health       Date:  2012-03       Impact factor: 2.894

3.  Pathway to Deployment of Gene Drive Mosquitoes as a Potential Biocontrol Tool for Elimination of Malaria in Sub-Saharan Africa: Recommendations of a Scientific Working Group.

Authors:  Stephanie James; Frank H Collins; Philip A Welkhoff; Claudia Emerson; H Charles J Godfray; Michael Gottlieb; Brian Greenwood; Steve W Lindsay; Charles M Mbogo; Fredros O Okumu; Hector Quemada; Moussa Savadogo; Jerome A Singh; Karen H Tountas; Yeya T Touré
Journal:  Am J Trop Med Hyg       Date:  2018-06       Impact factor: 2.345

Review 4.  Sex chromosome drive.

Authors:  Quentin Helleu; Pierre R Gérard; Catherine Montchamp-Moreau
Journal:  Cold Spring Harb Perspect Biol       Date:  2014-12-18       Impact factor: 10.005

5.  Impact of mosquito gene drive on malaria elimination in a computational model with explicit spatial and temporal dynamics.

Authors:  Philip A Eckhoff; Edward A Wenger; H Charles J Godfray; Austin Burt
Journal:  Proc Natl Acad Sci U S A       Date:  2016-12-27       Impact factor: 11.205

Review 6.  Beyond insecticides: new thinking on an ancient problem.

Authors:  Elizabeth A McGraw; Scott L O'Neill
Journal:  Nat Rev Microbiol       Date:  2013-03       Impact factor: 60.633

7.  Systematic identification of plausible pathways to potential harm via problem formulation for investigational releases of a population suppression gene drive to control the human malaria vector Anopheles gambiae in West Africa.

Authors:  John B Connolly; John D Mumford; Silke Fuchs; Geoff Turner; Camilla Beech; Ace R North; Austin Burt
Journal:  Malar J       Date:  2021-03-29       Impact factor: 2.979

8.  Evolution of Resistance Against CRISPR/Cas9 Gene Drive.

Authors:  Robert L Unckless; Andrew G Clark; Philipp W Messer
Journal:  Genetics       Date:  2016-12-10       Impact factor: 4.562

9.  Reducing resistance allele formation in CRISPR gene drive.

Authors:  Jackson Champer; Jingxian Liu; Suh Yeon Oh; Riona Reeves; Anisha Luthra; Nathan Oakes; Andrew G Clark; Philipp W Messer
Journal:  Proc Natl Acad Sci U S A       Date:  2018-05-07       Impact factor: 11.205

10.  Role of the Vector in Arbovirus Transmission.

Authors:  Michael J Conway; Tonya M Colpitts; Erol Fikrig
Journal:  Annu Rev Virol       Date:  2014-06-02       Impact factor: 10.431

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