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Published on: February 3, 2011
Differential display identifies genes in Chinese hamster ovary cells sensitive to elevated ammonium
1Department of Chemical and Biomolecular Engineering, Clemson University, 125 Earle Hall, Clemson, SC 29634-0909, USA.
Abstract:
Ammonium is a toxic waste product that has been reported to negatively inhibit cell growth and recombinant glycosylation in Chinese hamster ovary (CHO) cells; however, the effect of this toxicity on intracellular gene expression has received only limited investigation. We used a differential display method to identify genes in CHO cells that were affected by ammonium stress. Eight genes whose mRNA levels significantly changed in response to elevated ammonium were isolated and identified. Five of the genes were identified as having lower expression under the ammonium stress, whereas three genes were identified as having higher expression. Sequence homology with other mammalian organisms was used to attribute function to these newly identified genes. The identified ammonium-sensitive genes were grouped into three broad functional groups: cellular processes, energy metabolism, and genetic-information processing. The three cellular process-related genes had lower expression (anaphase-promoting complex subunit 5, eukaryotic initiation factor 5A II, KIAA1091 protein). The two energy-related genes had higher expression under ammonium stress (adenosine triphosphate synthase subunit C and mitofusin 1). Both of the genetic information-processing genes (endoplasmic reticulum [ER]-resident protein ERdj5 and structure-specific recognition protein 1) had lower expression under the ammonium stress, whereas the 26S proteasome subunit adenosine triphosphatase 3 gene had higher expression. These preliminary results indicate that ammonium stress lowers expression of genes controlling cell cycle, protein folding, and quality and raises genes that control energy metabolism and degradation. Our findings demonstrate the usefulness of mRNA differential-display techniques for the detection of CHO cell genes affected by ammonium stress.
Insights
Ammonium stress impacts Chinese hamster ovary (CHO) cells by altering gene expression. Key genes involved in cell cycle, protein folding, energy metabolism, and degradation show significant changes under ammonium toxicity.
Area of Science:
- Biotechnology
- Cell Biology
- Biochemistry
Background:
- Ammonium is a toxic byproduct affecting cell growth and glycosylation in Chinese hamster ovary (CHO) cells.
- Limited research exists on ammonium's impact on intracellular gene expression in CHO cells.
Purpose of the Study:
- To identify genes in CHO cells affected by ammonium stress using a differential display method.
- To understand the functional implications of ammonium-induced gene expression changes.
Main Methods:
- Differential display technique to screen for gene expression changes.
- Sequence homology analysis to identify gene functions in mammalian organisms.
Main Results:
- Eight genes showed significant mRNA level changes due to ammonium stress.
- Five genes exhibited lower expression (cell cycle, protein folding/quality), while three showed higher expression (energy metabolism, degradation).
- Specific genes identified include those related to anaphase-promoting complex, eukaryotic initiation factor, ATP synthase, mitofusin 1, ERdj5, and 26S proteasome subunit.
Conclusions:
- Ammonium stress alters gene expression, downregulating cell cycle and protein processing genes while upregulating energy metabolism and degradation pathways.
- mRNA differential display is effective for detecting ammonium-affected genes in CHO cells.

