Gene transfer and expression in mammalian cells /
| Other Authors: | |
|---|---|
| Format: | Book |
| Language: | English |
| Published: |
Amsterdam ; Boston :
Elsevier,
2003.
|
| Series: | New comprehensive biochemistry ;
v. 38. |
| Subjects: |
Table of Contents:
- Why choose mammalian cells for protein production?
- Vectors for gene expression in mammalian cells
- Virus-based vectors for gene expression in mammalian cells : Herpes simplex virus
- Virus-based vectors for gene expression in mammalian cells : Epstein-Barr virus
- Virus-based vectors for gene expression in mammalian cells : SV40
- Virus-based vectors for gene expression in mammalian cells : Adeno-associated virus
- Virus-based vectors for gene expression in mammalian cells : Adenovirus
- Virus-based vectors for gene expression in mammalian cells : Vaccinia virus
- Virus-based vectors for gene expression in mammalina cells : Baculovirus
- Virus-based vectors for gene expression in mammalian cells : Coronavirus
- Virus-based vectors for gene espression in mammalian cells : Poliovirus
- Virus-based vectors for gene expression in mammalian cells : Sindbis virus
- Virus-based vectors for gene expression in mammalian cells : Semliki Forest virus
- Virus-based vectors for gene expression in mammalian cells : Retrovirus
- Virus-based vectors for gene expression in mammalian cells : Lentiviruses
- Methods for DNA introduction into mammalian cells
- Lipid reagents for DNA transfer into mammalian cells
- Reporter genes for monitoring gene expression in mammalian cells
- Gene transfer and gene amplification in mammalian cells
- Co-transfer of multiple plasmids/viruses as an attractive method to introduce several genes in mammalian cells
- Optimization of plasmid backbone for gene expression in mammalian cells
- Use of scaffold/matrix-attachment regions for protein production
- Chromatin insulators and position effects
- Locus control regions
- Protein synthesis, folding, modification, and secretion in mammalian cells
- Pathways and functions of mammalian protein glycosylation
- Metabolic engineering of mammalian cells for higher protein yield
- Translation regulation in mammalian cells
- Pathways of mammalian messenger RNA degradation
- Pathways of mammalian protein degradation
- Stabilization of proteasomal substrates by viral repeats
- Architecture and utilization of highly expressed genomic sites
- Intracellular targeting of antibodies in mammalian cells
- Inducible gene expression in mammalian cells
- Protein production by large-scale mammalian cell culture
- Protein production in transgenic animals
- Strategies for the purification of recombinant proteins