The recent completion of the human genome sequence allows genomics research to focus on understanding gene complexity, expression, and regulation. However, the routine-use genomic DNA expression systems required to investigate these phenomena are not well developed. Bacterial artificial chromosomes (BACs) and P1-based artificial chromosomes (PACs) have proved excellent tools for the human genome sequencing projects. We describe a system to rapidly and efficiently deliver and express BAC and PAC library clones in human and mouse cells by converting them into infectious amplicon vectors. We show packaging and intact delivery of genomic inserts of >100 kilobases with efficiencies of up to 100%. To demonstrate that genomic loci transferred in t...
We have shown functional complementation of a genetic deficiency in human cultured cells, using arti...
Microinjection of DNA into the pronuclei of fertilized oocytes is one of the two most commonly used ...
Bacterial artifi cial chromosomes (BACs) can accommodate and stably propagate the genomes of large D...
Persistent expression of a transgene at therapeutic levels is required for successful gene therapy, ...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
The primary goal of this study was to develop a pipeline for BAC recombineering using a human gene c...
Human cells are, in general, poor recipients of foreign DNA, which has severely hampered the cloning...
International audienceMost genome projects have relied on the sequencing of bacterial artificial chr...
Bacterial artificial chromosomes (BACs) have many advantages over other large-insert cloning vectors...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Gene expression studies and gene therapy require efficient gene delivery into cells. Different techn...
Most conditional expression vectors designed for mammalian cells have been valuable systems for stud...
Exactly controlled conditional gene expressing systems are crucial for genomic functional research, ...
We have developed a method for recombining bacterial artificial chromosomes (BACs) and P1 artificial...
Pronuclear microinjection of bacterial artificial chromosomes (BACs) is the preferred way to generat...
We have shown functional complementation of a genetic deficiency in human cultured cells, using arti...
Microinjection of DNA into the pronuclei of fertilized oocytes is one of the two most commonly used ...
Bacterial artifi cial chromosomes (BACs) can accommodate and stably propagate the genomes of large D...
Persistent expression of a transgene at therapeutic levels is required for successful gene therapy, ...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
The primary goal of this study was to develop a pipeline for BAC recombineering using a human gene c...
Human cells are, in general, poor recipients of foreign DNA, which has severely hampered the cloning...
International audienceMost genome projects have relied on the sequencing of bacterial artificial chr...
Bacterial artificial chromosomes (BACs) have many advantages over other large-insert cloning vectors...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Gene expression studies and gene therapy require efficient gene delivery into cells. Different techn...
Most conditional expression vectors designed for mammalian cells have been valuable systems for stud...
Exactly controlled conditional gene expressing systems are crucial for genomic functional research, ...
We have developed a method for recombining bacterial artificial chromosomes (BACs) and P1 artificial...
Pronuclear microinjection of bacterial artificial chromosomes (BACs) is the preferred way to generat...
We have shown functional complementation of a genetic deficiency in human cultured cells, using arti...
Microinjection of DNA into the pronuclei of fertilized oocytes is one of the two most commonly used ...
Bacterial artifi cial chromosomes (BACs) can accommodate and stably propagate the genomes of large D...