Sheshukova Kseniya A, Wilken Lisa R
Dept. of Biological & Agricultural Engineering, Kansas State University, Manhattan, KS, 66506.
Biotechnol Prog. 2018 May;34(3):681-691. doi: 10.1002/btpr.2609. Epub 2018 Feb 2.
Transgenic plant systems have successfully been used to express recombinant proteins, including rice seed-expressed recombinant human serum albumin (rHSA), without the risk of contamination of human pathogens. Developing an efficient extraction process is critical as the step determines recombinant protein concentration and purity, quantity of impurities, and process volume. This article evaluates the effect of pH and time on the extraction and stability of rHSA. The amount of rHSA in clarified extract after 60 min of solubilization increased with pH from 0.9 mg/g (pH 3.5) to 9.6 mg/g (pH 6.0), but not over time as 10 min was sufficient for solubilization. Total soluble protein in extracts also increased with pH from 3.9 mg/g (pH 3.5) to 19.7 mg/g (pH 6.0) in clarified extract. Extraction conditions that maximized rHSA purity were not optimal for rHSA stability and yield. Extraction at pH 3.5 resulted in high purity (78%), however, rHSA degraded over time. Similar purities (78%) were observed in pH 4.0 extracts yet rHSA remained stable. rHSA degradation was not observed in pH 4.5 and 6.0 extracts but higher native protein concentrations decreased purity. Strategies such as pH and temperature adjustment were effective for reducing rHSA degradation in pH 3.5 rice extracts. Low temperature pH 3.5 extraction retained high purity (97%) and rHSA stability. While seed-expressed recombinant proteins are known to be stable for up to 3 years, the degradation of rHSA was notably extensive (56% within 60 min) when extracted at low pH. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:681-691, 2018.
转基因植物系统已成功用于表达重组蛋白,包括水稻种子表达的重组人血清白蛋白(rHSA),且不存在人类病原体污染风险。开发高效提取工艺至关重要,因为该步骤决定了重组蛋白的浓度和纯度、杂质数量以及工艺规模。本文评估了pH值和时间对rHSA提取及稳定性的影响。溶解60分钟后澄清提取物中rHSA的含量随pH值升高而增加,从0.9毫克/克(pH 3.5)增至9.6毫克/克(pH 6.0),但溶解时间超过10分钟后含量不再增加,因为10分钟足以完成溶解。澄清提取物中提取物的总可溶性蛋白也随pH值升高而增加,从3.9毫克/克(pH 3.5)增至19.7毫克/克(pH 6.0)。使rHSA纯度最大化的提取条件对rHSA稳定性和产量并非最佳。在pH 3.5下提取可得到高纯度(78%),然而,rHSA会随时间降解。在pH 4.0提取物中观察到类似的纯度(78%),但rHSA保持稳定。在pH 4.5和6.0提取物中未观察到rHSA降解,但较高的天然蛋白浓度会降低纯度。诸如调节pH值和温度等策略对于减少pH 3.5水稻提取物中rHSA的降解有效。低温pH 3.5提取可保持高纯度(97%)和rHSA稳定性。虽然已知种子表达的重组蛋白可稳定保存长达3年,但在低pH值下提取时,rHSA的降解非常显著(60分钟内降解56%)。© 2018美国化学工程师学会生物技术进展,34:681 - 691,2018。