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氮源对毕赤酵母中表达的人胱抑素C突变体产量和糖基化的影响。

The effect of nitrogen source on yield and glycosylation of a human cystatin C mutant expressed in Pichia pastoris.

作者信息

Pritchett Jason, Baldwin Susan A

机构信息

Chemical and Biological Engineering, University of British Columbia, 2357 Main Mall, Vancouver, BC, V6T 1Z4, Canada.

出版信息

J Ind Microbiol Biotechnol. 2004 Dec;31(12):553-8. doi: 10.1007/s10295-004-0181-2. Epub 2004 Nov 18.

Abstract

Human cystatin C is a cysteine proteinase inhibitor with potential applications as an anti-viral agent, cancer tumor growth inhibitor, and in prevention of proteolysis during food processing. A glycosylated cystatin C mutant with increased temperature stability was developed for the latter application [Nakamura et al. (1998) FEBS Lett 427:252-254]. A recombinant variant of cystatin C [Nakamura et al. (2000) International patent no. PLTCA99/00717] with two potential sites for N-linked glycosylation was expressed in Pichia pastoris Mut(s). Little of the cystatin C produced was in the glycosylated form under fermentation conditions of pH 6, temperature 28 degrees C, methanol only feed, and ammonium hydroxide as a nitrogen source. Thus, the effect of addition of complex nitrogen sources, peptone and amino acid supplements, on the yield and glycosylation of this mutant cystatin C were investigated. A full factorial design experiment using 2-l fermenters was performed with three factors: ammonium hydroxide, peptone, and an amino acid mix, at two levels, absent or present. Peptone addition was found to have a positive, and the most significant, effect on cell specific cystatin C yield. A maximum mutant cystatin C yield of 0.82 mumol (g-dry cell weight)(-1) min(-1) was obtained when all three nitrogen sources were used together. However, under these conditions only 16% of protein was in the glycosylated form since ammonia was found to have a significant negative effect on glycosylation extent. The maximum extent of glycosylation was 30% when peptone and amino acid mix were the only nitrogen sources added.

摘要

人胱抑素C是一种半胱氨酸蛋白酶抑制剂,具有作为抗病毒剂、癌症肿瘤生长抑制剂以及在食品加工过程中防止蛋白水解的潜在应用。为了后一种应用,开发了一种具有更高热稳定性的糖基化胱抑素C突变体[中村等人(1998年),《欧洲生物化学学会联合会快报》427:252 - 254]。一种具有两个潜在N - 糖基化位点的胱抑素C重组变体[中村等人(2000年),国际专利号PLTCA99/00717]在毕赤酵母Mut(s)中表达。在pH 6、温度28摄氏度、仅以甲醇为进料且以氢氧化铵作为氮源的发酵条件下,产生的胱抑素C很少以糖基化形式存在。因此,研究了添加复合氮源、蛋白胨和氨基酸补充剂对这种突变型胱抑素C产量和糖基化的影响。使用2升发酵罐进行了一项全因子设计实验,有三个因素:氢氧化铵、蛋白胨和氨基酸混合物,各有两个水平,即不存在或存在。发现添加蛋白胨对细胞特异性胱抑素C产量有积极且最显著的影响。当三种氮源一起使用时,突变型胱抑素C的最大产量为0.82微摩尔/(克干细胞重量)(-1)分钟(-1)。然而,在这些条件下,只有16%的蛋白质是糖基化形式,因为发现氨对糖基化程度有显著负面影响。当仅添加蛋白胨和氨基酸混合物作为氮源时,糖基化的最大程度为30%。

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