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Improving production of Streptomyces griseus trypsin for enzymatic processing of insulin precursor

机译:改善胰岛素前体酶促加工链霉菌胰蛋白酶的生产

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Trypsin has many applications in food and pharmaceutical manufacturing. Although commercial trypsin is usually extracted from porcine pancreas, this source carries the risks of infectivity and immunogenicity. Microbial Streptomyces griseus trypsin (SGT) is a prime alternative because it possesses efficient hydrolysis activity without such risks. However, the remarkable hydrolysis efficiency of SGT causes autolysis, and five autolysis sites, R21, R32, K122, R153, and R201, were identified from its autolysate. The tbcf (K101A, R201V) mutant was screened by a directed selection approach for improved activity in flask culture (60.85?±?3.42 U mL?1, increased 1.5-fold). From the molecular dynamics simulation, in the K101A/R201V mutant the distance between the catalytical residues D102 and H57 was shortened to 6.5 ? vs 7.0 ? in the wild type, which afforded the improved specific activity of 1527.96?±?62.81 U mg?1. Furthermore, the production of trypsin was increased by 302.8% (689.47?±?6.78 U mL?1) in a 3-L bioreactor, with co-overexpression of chaperones SSO2 and UBC1 in Pichia pastoris. SGT protein could be a good source of trypsin for insulin production. As a result of the hydrolysates analysis and direct selection, the activity of the tbcf (K101A, R201V) mutant increased 1.5-fold. Furthermore, the production of trypsin was improved threefold by overexpressing chaperone protein in Pichia pastoris. Future studies should investigate the application of SGT to insulin and pharmaceutical manufacturing.
机译:胰蛋白酶在食品和药物制造中有许多应用。虽然商业胰蛋白酶通常从猪胰腺中提取,但该源具有感染性和免疫原性的风险。微生物链霉菌Griseus胰蛋白酶(SGT)是一种替代品,因为它具有无需这种风险的有效水解活性。然而,从其自水晶酸酯中鉴定出SGT的显着水解效率,并且五个自分解位点,R21,R32,K122,R153和R201鉴定。通过针对烧瓶培养物(60.85Ωα≤3.42umlα1,增加1.5倍)改善活性的TBCF(K101a,R201v)突变体进行筛选的选择方法。从分子动力学模拟中,在K101A / R201V突变体中,催化残基D102和H57之间的距离缩短至6.5? VS 7.0?在野生型中,它得到了改善的特定活性为1527.96?±62.81 u mg?1。此外,在3 -L生物反应器中,胰蛋白酶的生产增加了302.8%(689.47→α≤6.78umlα1),在Pichia Pastoris的共同表达伴侣SSO2和UBC1。 SGT蛋白可能是胰岛素生产胰蛋白酶的良好来源。由于水解产物分析和直接选择,TBCF(K101A,R201V)突变体的活性增加1.5倍。此外,通过在Pichia Pastoris中过表达伴随伴侣蛋白来提高胰蛋白酶的产量。未来的研究应该调查SGT对胰岛素和药物制造的应用。

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