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Published on: June 2, 2022
EST sequencing for gene discovery in Chinese hamster ovary cells
Katie Fraass Wlaschin1, Peter Morin Nissom, Marcela de Leon Gatti
1University of Minnesota Department of Chemical Engineering and Materials Science, 421 Washington Avenue SE, Minneapolis, Minnesota 55455-0132, USA.
Abstract:
Chinese hamster ovary (CHO) cells are one of the most important cell lines in biological research, and are the most widely used host for industrial production of recombinant therapeutic proteins. Despite their extensive applications, little sequence information is available for molecular based research. To facilitate gene discovery and genetic engineering, two cDNA libraries were constructed from three CHO cell lines grown under various conditions. The average insert size for both libraries is approximately 800-850 bp, and each library has comparable redundancy levels of 36%-38% for the sequences isolated. Random sequencing of 4,608 ESTs yielded 2,602 unique assemblies, 76% of which were annotated as orthologs of sequences in the GenBank database. A high abundance of mitochondrial genome transcripts facilitated the assembly of the complete mitochondrial genome by PCR walking. Comparative analysis of sequences from both mitochondrial and nuclear genomes with orthologous genes from other species shows that CHO sequences are generally most similar to mouse; however, examples with highest similarity to rat or human are common. A cDNA microarray, including all 4,608 ESTs, was constructed. The microarray results reveal a high level of consistency between transcript abundance in the libraries and fluorescence intensities. Inclusion of redundant clones in the microarray, additionally, allows small changes in abundant mRNAs to be discerned with a high degree of confidence. The information and tools generated provide access to genomic technology for this important cell line.
Insights
Researchers developed new genomic tools for Chinese hamster ovary (CHO) cells, crucial for biopharmaceutical production. This enhanced gene discovery and genetic engineering capabilities for this vital cell line.
Area of Science:
- Cell biology
- Genomics
- Biotechnology
Background:
- Chinese hamster ovary (CHO) cells are critical for biological research and recombinant protein production.
- Limited sequence information hinders molecular research and genetic engineering in CHO cells.
Purpose of the Study:
- To create genomic resources for CHO cells to facilitate gene discovery and engineering.
- To develop a cDNA microarray for analyzing gene expression in CHO cells.
Main Methods:
- Construction of two cDNA libraries from three CHO cell lines.
- Expressed Sequence Tag (EST) sequencing and assembly.
- Polymerase Chain Reaction (PCR) walking for mitochondrial genome assembly.
- Development and application of a cDNA microarray.
Main Results:
- Generated 2,602 unique assemblies from 4,608 ESTs, with 76% annotated.
- Assembled the complete mitochondrial genome.
- Comparative genomic analysis indicated CHO sequences are most similar to mouse, rat, or human.
- Microarray demonstrated high consistency between transcript abundance and fluorescence intensity.
Conclusions:
- The generated genomic information and tools provide essential resources for CHO cell research and development.
- The study enhances genomic technology accessibility for this important cell line.
- The developed microarray is a reliable tool for discerning gene expression changes.
