The homing endonuclease gene (HEG) drive system, a promising genetic approach for controlling arthropod populations, utilises engineered nucleases to spread deleterious mutations that inactivate individual genes throughout a target population. Previous work with a naturally occurring LAGLIDADG homing endonuclease (I-SceI) demonstrated its feasibility in both Drosophila and Anopheles. Here we report on the next stage of this strategy: the redesign of HEGs with customized specificity in order to drive HEG-induced 'homing' in vivo via break-induced homologous recombination. Variants targeting a sequence within the Anopheles AGAP004734 gene were created from the recently characterized I-OnuI endonuclease, and tested for cleavage activity and fr...
Malaria continues to impose a substantial burden on human health. We have previously proposed that b...
Malaria continues to impose a substantial burden on human health. We have previously proposed that b...
A gene drive method of particular interest for population suppression utilizes homing endonuclease g...
The homing endonuclease gene (HEG) drive system, a promising genetic approach for controlling arthro...
<div><p>The homing endonuclease gene (HEG) drive system, a promising genetic approach for controllin...
Homing endonuclease gene (HEG) drive is a promising insect population control technique that employs...
Homing endonuclease gene (HEG) drive is a promising insect population control technique that employs...
Homing endonuclease genes (HEGs) are 'selfish' genetic elements that combine the capability to selec...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
The development of genetically engineered malaria-resis-tant mosquitoes has shown, as a proof-of-pri...
Homing endonuclease genes (HEGs) encode proteins that in the heterozygous state cause double-strand ...
Studying gene function in the human malaria vector Anopheles gambiae is the key to understanding its...
Driving endonuclease genes (DEGs) spread through a population by a non-Mendelian mechanism. In a het...
Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of ot...
Malaria continues to impose a substantial burden on human health. We have previously proposed that b...
Malaria continues to impose a substantial burden on human health. We have previously proposed that b...
A gene drive method of particular interest for population suppression utilizes homing endonuclease g...
The homing endonuclease gene (HEG) drive system, a promising genetic approach for controlling arthro...
<div><p>The homing endonuclease gene (HEG) drive system, a promising genetic approach for controllin...
Homing endonuclease gene (HEG) drive is a promising insect population control technique that employs...
Homing endonuclease gene (HEG) drive is a promising insect population control technique that employs...
Homing endonuclease genes (HEGs) are 'selfish' genetic elements that combine the capability to selec...
Genetic methods of manipulating or eradicating disease vector populations have long been discussed a...
Making discrete and precise genetic changes to wild populations has been proposed as a means of addr...
The development of genetically engineered malaria-resis-tant mosquitoes has shown, as a proof-of-pri...
Homing endonuclease genes (HEGs) encode proteins that in the heterozygous state cause double-strand ...
Studying gene function in the human malaria vector Anopheles gambiae is the key to understanding its...
Driving endonuclease genes (DEGs) spread through a population by a non-Mendelian mechanism. In a het...
Selfish genes are DNA elements that increase their rate of genetic transmission at the expense of ot...
Malaria continues to impose a substantial burden on human health. We have previously proposed that b...
Malaria continues to impose a substantial burden on human health. We have previously proposed that b...
A gene drive method of particular interest for population suppression utilizes homing endonuclease g...