Seth Gargi, Ozturk Mustafa, Hu Wei-Shou
Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Avenue SE, Minneapolis, Minnesota, USA.
Biotechnol Bioeng. 2006 Mar 5;93(4):820-7. doi: 10.1002/bit.20720.
NS0 is a cholesterol-requiring mouse myeloma cell line widely used in the production of recombinant antibodies. We have previously reported that the deficiency of 17beta-hydroxysteroid dehydrogenase type7 (Hsd17b7) is responsible for the cholesterol auxotrophy of NS0 cells. Here we demonstrate DNA methylation to be the mechanism underlying transcriptional suppression of Hsd17b7 in cholesterol dependent NS0 cells. Analysis of the DNA methylation pattern revealed methylation of the CpG-rich region upstream of the Hsd17b7 transcription start site in NS0 cells. This is in contrast to the unmethylated status of this sequence in a naturally isolated cholesterol independent revertant cell population (NS0_r). This transcriptional repression was relieved after treating cells with the demethylating drug, 5-azacytidine. Drug treatment also gave rise to high frequency cholesterol-independent variants. Characterization of revertants revealed substantially elevated transcript level of 17beta-hydroxysteroid dehydrogenase type7 (Hsd17b7) gene along with hypomethylation of the CpG-rich region. These results affirm that deficiency of Hsd17b7 causes cholesterol dependence of NS0 cells. Furthermore, induction of cholesterol independence by altering DNA methylation pattern alludes to the role of epigenetics in the metabolic adaptation of NS0 cells. With the widespread use of NS0 cells, this finding will have a significant impact on the optimization of recombinant antibody production processes.
NS0是一种需要胆固醇的小鼠骨髓瘤细胞系,广泛用于重组抗体的生产。我们之前报道过,7型17β-羟基类固醇脱氢酶(Hsd17b7)的缺陷是NS0细胞胆固醇营养缺陷的原因。在此,我们证明DNA甲基化是胆固醇依赖性NS0细胞中Hsd17b7转录抑制的潜在机制。对DNA甲基化模式的分析揭示了NS0细胞中Hsd17b7转录起始位点上游富含CpG区域的甲基化。这与天然分离的胆固醇非依赖性回复细胞群体(NS0_r)中该序列的未甲基化状态形成对比。在用去甲基化药物5-氮杂胞苷处理细胞后,这种转录抑制得以缓解。药物处理还产生了高频胆固醇非依赖性变体。对回复体的表征显示,7型17β-羟基类固醇脱氢酶(Hsd17b7)基因的转录水平大幅升高,同时富含CpG的区域发生低甲基化。这些结果证实,Hsd17b7的缺陷导致NS0细胞对胆固醇的依赖性。此外,通过改变DNA甲基化模式诱导胆固醇非依赖性暗示了表观遗传学在NS0细胞代谢适应中的作用。随着NS0细胞的广泛使用,这一发现将对重组抗体生产工艺的优化产生重大影响。