Modern molecular genetics studies necessitate the manipulation of genes in their endogenous locus, but most of the current methodologies require an inefficient donor-dependent homologous recombination step to locally modify the genome. Here we describe a methodology to efficiently generate Drosophila knock-in alleles by capitalizing on the availability of numerous genomic MiMIC transposon insertions carrying recombinogenic attP sites. Our methodology entails the efficient PhiC31-mediated integration of a recombination cassette flanked by unique I-SceI and/or I-CreI restriction enzyme sites into an attP-site. These restriction enzyme sites allow for double-strand break-mediated removal of unwanted flanking transposon sequences, while leaving...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...
Modern molecular genetics studies necessitate the manipulation of genes in their endogenous locus, b...
Modern molecular genetics studies necessitate the manipulation of genes in their endogenous locus, b...
We demonstrate the versatility of a collection of insertions of the transposon Minos mediated integr...
Precise modification of sequences in the Drosophila melanogaster genome underlies the powerful capac...
Effective genome engineering should lead to a desired locus change with minimal adverse impact to th...
The development of clustered, regularly interspaced, short palindromic repeats (CRISPR)/CRISPR-assoc...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
Journal ArticleWe used a recently developed method to produce mutant alleles of five endogenous Dros...
We used a recently developed method to produce mutant alleles of five endogenous Drosophila genes, i...
We have developed a modified RNA interference (RNAi) method for generating gene knock-outs in Drosop...
A central challenge in investigating biological phenomena is the development of techniques to modify...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...
Modern molecular genetics studies necessitate the manipulation of genes in their endogenous locus, b...
Modern molecular genetics studies necessitate the manipulation of genes in their endogenous locus, b...
We demonstrate the versatility of a collection of insertions of the transposon Minos mediated integr...
Precise modification of sequences in the Drosophila melanogaster genome underlies the powerful capac...
Effective genome engineering should lead to a desired locus change with minimal adverse impact to th...
The development of clustered, regularly interspaced, short palindromic repeats (CRISPR)/CRISPR-assoc...
Modifying the genomes of many organisms is becoming as easy as manipulating DNA in test tubes, which...
Drosophila is a well-established genetic model organism: thousands of point mutations, deficiencies ...
Journal ArticleWe used a recently developed method to produce mutant alleles of five endogenous Dros...
We used a recently developed method to produce mutant alleles of five endogenous Drosophila genes, i...
We have developed a modified RNA interference (RNAi) method for generating gene knock-outs in Drosop...
A central challenge in investigating biological phenomena is the development of techniques to modify...
Here, we present a simple and highly efficient method for generating and detecting mutations ofany g...
Technology development has always been one of the forces driving breakthroughs in biomedical researc...
Here, we present a simple and highly efficient method for generating and detecting mutations of any ...