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用于乳酸乳球菌中异源蛋白分泌的信号肽和前肽优化

Signal peptide and propeptide optimization for heterologous protein secretion in Lactococcus lactis.

作者信息

Le Loir Y, Nouaille S, Commissaire J, Brétigny L, Gruss A, Langella P

机构信息

Laboratoire de Génétique Appliquée, Unité de Recherches Laitières et de Génétique Appliquée, Institut National de la Recherche Agronomique, Domaine de Vilvert, 78352 Jouy en Josas Cedex, France.

出版信息

Appl Environ Microbiol. 2001 Sep;67(9):4119-27. doi: 10.1128/AEM.67.9.4119-4127.2001.

Abstract

Lactic acid bacteria are food-grade microorganisms that are potentially good candidates for production of heterologous proteins of therapeutical or technological interest. We developed a model for heterologous protein secretion in Lactococcus lactis using the staphylococcal nuclease (Nuc). The effects on protein secretion of alterations in either (i) signal peptide or (ii) propeptide sequences were examined. (i) Replacement of the native Nuc signal peptide (SP(Nuc)) by that of L. lactis protein Usp45 (SP(Usp)) resulted in greatly improved secretion efficiency (SE). Pulse-chase experiments showed that Nuc secretion kinetics was better when directed by SP(Usp) than when directed by SP(Nuc). This SP(Usp) effect on Nuc secretion is not due to a better antifolding activity, since SP(Usp):Nuc precursor proteins display enzymatic activity in vitro, while SP(Nuc):Nuc precursor proteins do not. (ii) Deletion of the native Nuc propeptide dramatically reduces Nuc SE, regardless of which SP is used. We previously reported that a synthetic propeptide, LEISSTCDA, could efficiently replace the native Nuc propeptide to promote heterologous protein secretion in L. lactis (Y. Le Loir, A. Gruss, S. D. Ehrlich, and P. Langella, J. Bacteriol. 180:1895-1903, 1998). To determine whether the LEISSTCDA effect is due to its acidic residues, specific substitutions were introduced, resulting in neutral or basic propeptides. Effects of these two new propeptides and of a different acidic synthetic propeptide were tested. Acidic and neutral propeptides were equally effective in enhancing Nuc SE and also increased Nuc yields. In contrast, the basic propeptide strongly reduced both SE and the quantity of secreted Nuc. We have shown that the combination of the native SP(Usp) and a neutral or acidic synthetic propeptide leads to a significant improvement in SE and in the quantity of synthesized Nuc. These observations will be valuable in the production of heterologous proteins in L. lactis.

摘要

乳酸菌是食品级微生物,对于生产具有治疗或技术意义的异源蛋白而言,它们可能是很好的候选对象。我们利用葡萄球菌核酸酶(Nuc)开发了一种用于乳酸乳球菌中异源蛋白分泌的模型。研究了(i)信号肽或(ii)前肽序列的改变对蛋白分泌的影响。(i)用乳酸乳球菌蛋白Usp45的信号肽(SP(Usp))替换天然的Nuc信号肽(SP(Nuc)),分泌效率(SE)得到了极大提高。脉冲追踪实验表明,由SP(Usp)引导时Nuc的分泌动力学比由SP(Nuc)引导时更好。SP(Usp)对Nuc分泌的这种作用并非由于更好的抗折叠活性,因为SP(Usp):Nuc前体蛋白在体外具有酶活性,而SP(Nuc):Nuc前体蛋白则没有。(ii)无论使用哪种信号肽,删除天然的Nuc前肽都会显著降低Nuc的SE。我们之前报道过,一种合成前肽LEISSTCDA可以有效地替代天然的Nuc前肽,以促进乳酸乳球菌中异源蛋白的分泌(Y. Le Loir、A. Gruss、S. D. Ehrlich和P. Langella,《细菌学杂志》180:1895 - 1903,199)。为了确定LEISSTCDA的作用是否归因于其酸性残基,引入了特定的替换,得到了中性或碱性前肽。测试了这两种新前肽以及一种不同的酸性合成前肽的作用。酸性和中性前肽在提高Nuc SE方面同样有效,并且还提高了Nuc产量。相比之下,碱性前肽强烈降低了SE以及分泌的Nuc量。我们已经表明,天然的SP(Usp)与中性或酸性合成前肽的组合会导致SE以及合成的Nuc量显著提高。这些观察结果对于乳酸乳球菌中异源蛋白的生产将具有重要价值。

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