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基于α因子交配分泌信号设计改进的通用信号肽用于酵母中酶的生产。

Design of an improved universal signal peptide based on the α-factor mating secretion signal for enzyme production in yeast.

机构信息

Centro de Investigaciones Biológicas Margarita Salas, CSIC, Ramiro de Maeztu 9, 28040, Madrid, Spain.

出版信息

Cell Mol Life Sci. 2021 Apr;78(7):3691-3707. doi: 10.1007/s00018-021-03793-y. Epub 2021 Mar 9.

Abstract

Saccharomyces cerevisiae plays an important role in the heterologous expression of an array of proteins due to its easy manipulation, low requirements and ability for protein post-translational modifications. The implementation of the preproleader secretion signal of the α-factor mating pheromone from this yeast contributes to increase the production yields by targeting the foreign protein to the extracellular environment. The use of this signal peptide combined with enzyme-directed evolution allowed us to achieve the otherwise difficult functional expression of fungal laccases in S. cerevisiae, obtaining different evolved α-factor preproleader sequences that enhance laccase secretion. However, the design of a universal signal peptide to enhance the production of heterologous proteins in S. cerevisiae is a pending challenge. We describe here the optimisation of the α-factor preproleader to improve recombinant enzyme production in S. cerevisiae through two parallel engineering strategies: a bottom-up design over the native α-factor preproleader (α) and a top-down design over the fittest evolved signal peptide obtained in our lab (α leader). The goal was to analyse the effect of mutations accumulated in the signal sequence throughout iterations of directed evolution, or of other reported mutations, and their possible epistatic interactions. Both approaches agreed in the positive synergism of four mutations (Aα9D, Aα20T, Lα42S, Dα83E) contained in the final optimised leader (α), which notably enhanced the secretion of several fungal oxidoreductases and hydrolases. Additionally, we suggest a guideline to further drive the heterologous production of a particular enzyme based on combinatorial saturation mutagenesis of positions 86th and 87th of the α leader fused to the target protein.

摘要

酿酒酵母由于其易于操作、要求低以及能够进行蛋白质翻译后修饰等特点,在多种蛋白质的异源表达中发挥着重要作用。该酵母的α-因子交配信息素的前导肽序列的实施有助于通过将外源蛋白靶向到细胞外环境来提高生产产量。该信号肽的使用与酶定向进化相结合,使我们能够在酿酒酵母中实现真菌漆酶的功能表达,获得不同的进化α-因子前导肽序列,从而增强漆酶的分泌。然而,设计一种通用的信号肽来提高酿酒酵母中异源蛋白的生产仍然是一个待解决的挑战。我们在这里描述了通过两种平行的工程策略优化α-因子前导肽,以提高酿酒酵母中重组酶的生产:对天然α-因子前导肽(α)进行自下而上的设计和对我们实验室中获得的最佳进化信号肽(α 前导肽)进行自上而下的设计。目标是分析在定向进化的迭代过程中信号序列中积累的突变或其他报道的突变的影响,以及它们可能的上位性相互作用。这两种方法都同意四个突变(Aα9D、Aα20T、Lα42S、Dα83E)在最终优化的前导肽(α)中的积极协同作用,这显著增强了几种真菌氧化还原酶和水解酶的分泌。此外,我们建议了一种基于融合到目标蛋白的α 前导肽的第 86 位和第 87 位的组合饱和突变的指南,以进一步推动特定酶的异源生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe99/11072820/1187383aa0e8/18_2021_3793_Fig1_HTML.jpg

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