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碱性植酸酶在细胞外的表达:信号肽、启动子和生长培养基的影响

Extracellular expression of alkaline phytase in : Influence of signal peptides, promoters and growth medium.

作者信息

Yang Mimi, Teymorian Sasha, Olivares Philip, Murthy Pushpalatha P N

机构信息

Department of Chemistry, Michigan Technological University, 1400 Townsend Drive, Houghton, MI 49931, USA.

出版信息

Biotechnol Rep (Amst). 2015 Mar 26;6:112-118. doi: 10.1016/j.btre.2015.03.005. eCollection 2015 Jun.

Abstract

Alkaline phytase isolated from pollen grains of (LlALP) possesses unique catalytic and thermal stability properties that suggest it has the potential to be used as a feed supplement. However, substantial amounts of active enzymes are needed for animal feed studies and endogenous levels of LlALP in lily pollen are too low to provide the required amounts. Active rLlALP2 (coded by , one of two isoforms of alkaline phytase cDNA identified in lily pollen) has been successfully expressed in intracellular compartments of , however enzyme yields have been modest (25-30 mg/L) and purification of the enzyme has been challenging. Expression of foreign proteins to the extracellular medium of greatly simplifies protein purification because low levels of endogenous proteins are secreted by the yeast. In this paper, we first describe the generation of strains that will secrete rLlALP2 to the extracellular medium. Data presented here indicates that deletion of native signal peptides at the N- and C-termini of rLlALP2 enhanced α-mating factor (α-MF)-driven secretion by four-fold; chicken egg white lysozyme signal peptide was ineffective in the extracellular secretion of rLlALP2. Second, we describe our efforts to increase expression levels by employing a constitutive promoter from the glyceraldehyde-3-phosphate dehydrogenase gene (P) in place of the strong, tightly controlled promoter of alcohol oxidase 1 gene (P. P enhanced the extracellular expression levels of rLlALP2 compared to P. Finally, we report on the optimization of the culture medium to enhance yields of rLlALP2. The strength of P varies depending on the carbon source available for cell growth; secreted expression of rLlALP2 was highest when glycerol was the carbon source. The addition of histidine and Triton X-100 also enhanced extracellular expression. Taken together, the employment of P under optimized culture conditions resulted in approximately eight-fold (75-80 mg/L) increase in extracellular activity compared to P (8-10 mg/L). The expression system can be employed as a source of active alkaline phytase for animal feed studies.

摘要

从百合花粉粒中分离出的碱性植酸酶(LlALP)具有独特的催化和热稳定性特性,这表明它有潜力用作饲料添加剂。然而,动物饲料研究需要大量的活性酶,而百合花粉中LlALP的内源性水平过低,无法提供所需的量。活性rLlALP2(由百合花粉中鉴定出的碱性植酸酶cDNA的两种同工型之一编码)已在毕赤酵母的细胞内区室中成功表达,然而酶产量适中(25 - 30 mg/L),且酶的纯化具有挑战性。将外源蛋白表达至毕赤酵母的细胞外培养基中极大地简化了蛋白质纯化,因为酵母分泌的内源性蛋白水平较低。在本文中,我们首先描述了构建能将rLlALP2分泌至细胞外培养基的毕赤酵母菌株。此处呈现的数据表明,去除rLlALP2 N端和C端的天然信号肽可使α-交配因子(α-MF)驱动的分泌增加四倍;鸡卵清溶菌酶信号肽在rLlALP2的细胞外分泌中无效。其次,我们描述了通过使用甘油醛-3-磷酸脱氢酶基因的组成型启动子(P)代替酒精氧化酶1基因的强且严格调控的启动子(P)来提高表达水平的努力。与P相比,P提高了rLlALP2的细胞外表达水平。最后,我们报告了优化培养基以提高rLlALP2产量的情况。P的强度因细胞生长可用的碳源而异;当甘油作为碳源时,rLlALP2的分泌表达最高。添加组氨酸和 Triton X-100也增强了细胞外表达。综上所述,在优化的培养条件下使用P导致细胞外活性比P(8 - 10 mg/L)增加约八倍(75 - 80 mg/L)。毕赤酵母表达系统可作为用于动物饲料研究的活性碱性植酸酶的来源。

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