带6xHis标签的密码子适应性人乙醛脱氢酶2 cDNA在毕赤酵母中的高效表达

YuFeng Zhao, MingKe Lei, YuanXin Wu, ZiSheng Zhang, CunWen Wang
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引用次数: 2

摘要

人线粒体乙醛脱氢酶2 (ALDH2)催化乙醛氧化为乙酸。因此,ALDH2在乙醛解毒方面具有治疗潜力。此外,在心绞痛、心肌梗死和心力衰竭的治疗中,ALDH2催化硝化甘油生成硝酸盐和1,2 -硝酸甘油。潜在的临床实践需要大量的ALDH2。在本研究中,毕赤酵母作为表达人ALDH2的平台。以ALDH2*1 cDNA序列为基础,通过选择P. pastoris的首选密码子,降低G + C含量水平,设计ALDH2 cDNA。采用重叠延伸PCR法合成该序列。将cDNA和6xHis标签亚克隆到质粒pPIC9K中。重组蛋白在P. pastoris GS115中表达,采用Ni(2+)-Sepharose亲和层析纯化。摇瓶培养的泌蛋白量为80 mg/L,高密度生物反应器发酵的泌蛋白量为260 mg/L。用Ni(2+)-Sepharose亲和层析法可很容易地从培养上清中纯化分泌的ALDH2。经发酵上清纯化后,酶的比活性为1.2 U/mg蛋白。在含有原人ALDH2*1 cDNA的pastoris GS115摇瓶培养中,产量约为16 mg/L。
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Efficient expression of codon-adapted human acetaldehyde dehydrogenase 2 cDNA with 6xHis tag in Pichia pastoris.

Human mitochondrial acetaldehyde dehydrogenase 2 (ALDH2) catalyzes the oxidation of acetaldehyde to acetic acid. Therefore, ALDH2 has therapeutic potential in detoxification of acetaldehyde. Furthermore, ALDH2 catalyzes nitroglycerin to nitrate and 1, 2-glyceryldinitrate during therapy for angina pectoris, myocardial infarction, and heart failure. Large quantities of ALDH2 will be needed for potential clinical practice. In this study, Pichia pastoris was used as a platform for expression of human ALDH2. Based on the ALDH2*1 cDNA sequence, we designed ALDH2 cDNA by choosing the P. pastoris preferred codons and by decreasing the G + C content level. The sequence was synthesized using the overlap extension PCR method. The cDNA and 6xHis tags were subcloned into the plasmid pPIC9K. The recombinant protein was expressed in P. pastoris GS115 and purified using Ni(2+)-Sepharose affinity chromatography. The amount of secreted protein in the culture was 80 mg/L in shake-flask cultivation and 260 mg/L in high-density bioreactor fermentation. Secreted ALDH2 was easily purified from the culture supernatant by using Ni(2+)-Sepharose affinity chromatography. After purification of the fermentation supernatant, the enzyme had a specific activity of 1.2 U/mg protein. The yield was about 16 mg/L in a shake flask culture of P. pastoris GS115 which contained the original human ALDH2*1 cDNA.

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