Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fragments into mammalian cells. Although a HAC theoretically incorporates multiple gene expression cassettes of unlimited DNA size, its application has been limited because the conventional gene-loading system accepts only one gene-loading vector (GLV) into a HAC. We report a novel method for the simultaneous or sequential integration of multiple GLVs into a HAC vector (designated as the SIM system) via combined usage of Cre, FLP, Bxb1, and QC31 recombinase/integrase. As a proof of principle, we first attempted simultaneous integration of three GLVs encoding EGFP, Venus, and TdTomato into a gene-loading site of a HAC in CHO cells. These cells su...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
The production of cells capable of carrying multiple transgenes to Mb-size genomic loci has multiple...
We have developed a method for recombining bacterial artificial chromosomes (BACs) and P1 artificial...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
The production of cells capable of expressing gene(s) of interest is important for a variety of appl...
The production of cells capable of expressing gene(s) of interest is important for a variety of appl...
Mouse artificial chromosome (MAC) vectors have several advantages as gene delivery vectors, such as ...
Gene expression studies and gene therapy require efficient gene delivery into cells. Different techn...
Mammalian artificial chromosomes are natural chromosome-based vectors that may carry a vast amount o...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Most conditional expression vectors designed for mammalian cells have been valuable systems for stud...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
The production of cells capable of carrying multiple transgenes to Mb-size genomic loci has multiple...
We have developed a method for recombining bacterial artificial chromosomes (BACs) and P1 artificial...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
The production of cells capable of expressing gene(s) of interest is important for a variety of appl...
The production of cells capable of expressing gene(s) of interest is important for a variety of appl...
Mouse artificial chromosome (MAC) vectors have several advantages as gene delivery vectors, such as ...
Gene expression studies and gene therapy require efficient gene delivery into cells. Different techn...
Mammalian artificial chromosomes are natural chromosome-based vectors that may carry a vast amount o...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Most conditional expression vectors designed for mammalian cells have been valuable systems for stud...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
The production of cells capable of carrying multiple transgenes to Mb-size genomic loci has multiple...
We have developed a method for recombining bacterial artificial chromosomes (BACs) and P1 artificial...