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首页> 外文期刊>Metabolic engineering >Improving recombinant bone morphogenetic protein-4 (BMP-4) production by autoregulatory feedback loop removal using BMP receptor-knockout CHO cell lines
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Improving recombinant bone morphogenetic protein-4 (BMP-4) production by autoregulatory feedback loop removal using BMP receptor-knockout CHO cell lines

机译:通过使用BMP受体敲除CHO细胞系通过自身调节反馈回路除去重组骨形态发生蛋白-4(BMP-4)生产

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A Chinese hamster ovary (CHO) cell line producing recombinant human bone morphogenetic protein-4 (rhBMP-4) (CHO-BMP-4), which expresses essential components of BMP signal transduction, underwent autocrine BMP-4 signaling. RNA seq analysis on CHO host cells (DG44) treated with rhBMP-4 (20 mu g/mL) suggested that rhBMP-4 induced signaling in CHO cells could be a critical factor in limiting rhBMP-4 production and should be removed to improve rhBMP-4 production in recombinant CHO (rCHO) cells. The inhibition of autocrine BMP signaling in CHO-BMP-4 cells by the addition of LDN-193189, a chemical inhibitor of BMP receptor type I, significantly increased the mRNA expression levels of rhBMP-4. To establish BMP signaling-free host cells, a BMP receptor, the BMPRIA or BMPRII gene in DG44 cells, was knocked out using CRISPR/Cas9 gene-editing technology. Using three different knockout (KO) host cell lines as well as a DG44 wild-type (wt) cell line, rCHO cell clones producing rhBMP-4 were generated by a stepwise selection with increasing methotrexate concentrations. KO-derived clones showed a significantly higher maximum rhBMP-4 concentration than wt-derived clones in both batch and fed-batch cultures. Unlike wt-derived clones, KO-derived cell clones were able to produce higher amounts of hBMP-4 transcripts and proteins in the stationary phase of growth and did not experience growth inhibition induced by rhBMP-4. The mean maximum rhBMP-4 concentration of KO host-derived clones was approximately 2.4-fold higher than that of wt-derived clones (P 0.05). Taken together, the disruption of BMP signaling in CHO cells by knocking out the BMP receptor significantly improved rhBMP-4 production.
机译:一种中国仓鼠卵巢(CHO)细胞系产生重组人骨形态发生蛋白-4(RHBMP-4)(CHO-BMP-4),其表达BMP信号转导的基本组分,接受了自分泌BMP-4信号传导。 CHO宿主细胞(DG44)的RNA SEQ分析(20μg/ ml)处理的CHO宿主细胞(DG44)表明CHO细胞中的RHBMP-4诱导的信号传导可能是限制RHBMP-4产生的关键因素,并且应该被移除以改善RHBMP -4重组CHO(RCHO)细胞的生产。通过添加LDN-193189,通过添加LDN-193189,抑制CHO-BMP-4细胞中的抑制BMP受体I型化学抑制剂,显着增加了RHBMP-4的mRNA表达水平。为了建立无BMP信号宿主细胞,使用CRISPR / CAS9基因编辑技术敲除了DG44细胞中的BMP受体,BMPRIA或BMPRII基因。使用三种不同的敲除(KO)宿主细胞系以及DG44野生型(WT)细胞系,通过增加甲氨蝶呤浓度的逐步选择产生RCHO细胞克隆。 KO衍生的克隆显示出比分批和补料分批培养物中的WT衍生的克隆显着更高的最大RHBMP-4浓度。与WT衍生的克隆不同,KO衍生的细胞克隆能够在生长的固定阶段生产较高量的HBMP-4转录物和蛋白质,并且没有经历RHBMP-4诱导的生长抑制。 KO宿主衍生的克隆的平均最大RHBMP-4浓度比WT衍生的克隆高约2.4倍(P <0.05)。在一起,通过敲出BMP受体的CHO细胞中BMP信号传导的破坏显着改善了RHBMP-4生产。

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