Applied Cellular Physiology and Metabolic Engineering
Effect of sodium butyrate on autophagy and apoptosis in Chinese hamster ovary cells
Article first published online: 4 JAN 2012
DOI: 10.1002/btpr.1512
Copyright © 2012 American Institute of Chemical Engineers (AIChE)
Additional Information
How to Cite
Seong Lee, J. and Lee, G. M. (2012), Effect of sodium butyrate on autophagy and apoptosis in Chinese hamster ovary cells. Biotechnol Progress, 28: 349–357. doi: 10.1002/btpr.1512
Publication History
- Issue published online: 10 APR 2012
- Article first published online: 4 JAN 2012
- Accepted manuscript online: 19 DEC 2011 10:37AM EST
- Manuscript Revised: 8 DEC 2011
- Manuscript Received: 14 SEP 2011
Funded by
- Brain Korea 21 and WCU programs through the National Research Foundation (NRF) funded by the MEST. Grant Number: R31-2008-000-10071-0
Keywords:
- apoptosis;
- autophagy;
- Chinese hamster ovary cells;
- sodium butyrate
Abstract
Sodium butyrate (NaBu), which is widely used in recombinant Chinese hamster ovary cell (rCHO) cultures for high-level expression of therapeutic proteins, is known to induce apoptosis in a dose-dependent manner. Lately, the significance of autophagy has increased in the field of CHO cell culture due to the fact that autophagy is related to the programmed cell death mechanism. To determine the effect of NaBu on autophagy as well as apoptosis of rCHO cells, rCHO cells producing erythropoietin were subjected to NaBu treatment. NaBu treatment up to 5 mM increased cleaved forms of PARP, caspase-3, and Annexin V positive population, confirming the previous results that NaBu induces apoptosis. Concurrently, NaBu treatment increased the level of accumulation of the autophagic marker, LC3-II, independently of nutrient depletion, suggesting that NaBu induces autophagy. To elucidate the potential role of autophagy induced by NaBu, a representative autophagy inducer (rapamycin) or an inhibitor (bafilomycin A1) was added to cultures together with NaBu. It was found that autophagy had the potential role of a positive cell survival mechanism under NaBu treatment. Furthermore, gradual reduction in mitochondrial membrane potential/mass and recruitment of a mitophagy protein, Parkin, to the mitochondria were observed under NaBu treatment, suggesting that this positive function of autophagy might be mediated by the autophagic removal of damaged mitochondria. Taken together, autophagy was observed in rCHO cell culture under NaBu treatments and the results obtained here support the positive effects of autophagy induced by NaBu treatments. © 2012 American Institute of Chemical Engineers Biotechnol. Prog., 2012

1520-6033/asset/BTPR_left.gif?v=1&s=a5be2ff5a0fe6ccdaad74a6d128c142e5f71a8da)
1520-6033/asset/BTPR_right.gif?v=1&s=992d113a3e61fc9d3571812359165df86cf830e4)
