Background: Integrating non-viral vectors based on transposable elements are widely used for genetically engineering mammalian cells in functional genomics and therapeutic gene transfer. For the Sleeping Beauty (SB) transposase system it was demonstrated that convergent transcription driven by the SB transposase inverted repeats (IRs) in eukaryotic cells occurs after somatic integration. This could lead to formation of double-stranded RNAs potentially presenting targets for the RNA interference (RNAi) machinery and subsequently resulting into silencing of the transgene. Therefore, we aimed at investigating transgene expression upon transposition under RNA interference knockdown conditions. Principal Findings: To establish RNAi knockdown cel...
The Sleeping Beauty (SB) transposon is a non-viral integrating vector system with proven efficacy fo...
Transposable elements can be considered as natural, nonviral gene-delivery vehicles and are valuable...
Gene trapping is a high-throughput approach to elucidate gene functions by disrupting and recapitula...
Integrating non-viral vectors based on transposable elements are widely used for genetically enginee...
Integrating non-viral vectors based on transposable elements are widely used for genetically enginee...
An ideal tool for gene therapy would enable efficient gene integration at predetermined sites in the...
The Sleeping Beauty (SB) transposable element shows efficient transposition in human cells, and prov...
The mobility of transposable elements in natural populations is usually strictly regulated in order ...
The mobility of class II transposable elements (DNA transposons) can be experimentally controlled by...
Sleeping Beauty (SB) is a transposon system that has been widely used as a genetic engineering tool....
The Sleeping Beauty (SB) transposon is a non-viral integrating vector system with proven efficacy fo...
<div><p>The <i>Sleeping Beauty</i> (SB) transposon is a non-viral integrating vector system with pro...
International audienceThe Sleeping Beauty (SB) transposon is a non-viral integrating vector system w...
Transposons are natural gene delivery vehicles. The Sleeping Beauty (SB) transposon shows efficient ...
Abstract Transposable elements can be viewed as natural DNA transfer vehicles that, similar to integ...
The Sleeping Beauty (SB) transposon is a non-viral integrating vector system with proven efficacy fo...
Transposable elements can be considered as natural, nonviral gene-delivery vehicles and are valuable...
Gene trapping is a high-throughput approach to elucidate gene functions by disrupting and recapitula...
Integrating non-viral vectors based on transposable elements are widely used for genetically enginee...
Integrating non-viral vectors based on transposable elements are widely used for genetically enginee...
An ideal tool for gene therapy would enable efficient gene integration at predetermined sites in the...
The Sleeping Beauty (SB) transposable element shows efficient transposition in human cells, and prov...
The mobility of transposable elements in natural populations is usually strictly regulated in order ...
The mobility of class II transposable elements (DNA transposons) can be experimentally controlled by...
Sleeping Beauty (SB) is a transposon system that has been widely used as a genetic engineering tool....
The Sleeping Beauty (SB) transposon is a non-viral integrating vector system with proven efficacy fo...
<div><p>The <i>Sleeping Beauty</i> (SB) transposon is a non-viral integrating vector system with pro...
International audienceThe Sleeping Beauty (SB) transposon is a non-viral integrating vector system w...
Transposons are natural gene delivery vehicles. The Sleeping Beauty (SB) transposon shows efficient ...
Abstract Transposable elements can be viewed as natural DNA transfer vehicles that, similar to integ...
The Sleeping Beauty (SB) transposon is a non-viral integrating vector system with proven efficacy fo...
Transposable elements can be considered as natural, nonviral gene-delivery vehicles and are valuable...
Gene trapping is a high-throughput approach to elucidate gene functions by disrupting and recapitula...