pCMV-Tag4 Vector
Agilent TechnologiesEpitope-tagging technology provides you a powerful means to functionally analyze your protein of interest without the need for an antibody specific to each new protein under study.
Genomics, the study of genomes, includes functional genomics, evolutionary genomics and comparative genomics. There are many genomic technologies such as DNA sequencing of whole genomes, computational biology and bioinformatics. DNA and nucleic acids must be isolated and concentrated from cells for analysis with kits, automated analyzers and software. Other useful technologies for studying genomics include PCR, microarrays and electrophoresis.
Epitope-tagging technology provides you a powerful means to functionally analyze your protein of interest without the need for an antibody specific to each new protein under study.
Epitope-tagging technology provides you a powerful means to functionally analyze your protein of interest without the need for an antibody specific to each new protein under study.
The pDual Expression Vector offers high-level heterologous gene expression in both mammalian and prokaryotic systems.
The pDual Expression Vector offers high-level heterologous gene expression in both mammalian and prokaryotic systems.
To express the gene of interest, the pERV3 receptor vector and the pEGSH expression vector are part of the Complete Control Inducible Mammalian Expression System, designed to provide the tightest control of expression available in mammalian cells.
To express the gene of interest,the pERV3 receptor vector and the pEGSH expression vector are part of the Complete Control Inducible Mammalian Expression System, designed to provide the tightest control of expression available in mammalian cells.
The pESC vectors are a series of epitope-tagging vectors for expression of eukaryotic genes in the yeast S. cerevisiae.
The pESC vectors are a series of epitope-tagging vectors for expression of eukaryotic genes in the yeast S. cerevisiae.
The pET E.coli expression system is a widely used in vivo bacterial expression system due to the strong selectivity of the bacteriophage T7 RNA polymerase for its cognate promoter sequences, the high level of activity of the polymerase, and the high efficiency of translation mediated by the T7 gene. Tightly controlled T7 RNA polymerase-based gene expression in E.coli High-level expression upon induction Convenien…
The pET E.coli expression system is a widely used in vivo bacterial expression system due to the strong selectivity of the bacteriophage T7 RNA polymerase for its cognate promoter sequences, the high level of activity of the polymerase, and the high efficiency of translation mediated by the T7 gene. Tightly controlled T7 RNA polymerase-based gene expression in E.coli High-level expression upon induction Convenien…