School of Biochemistry and Cell Biology, University College Cork, Cork T12 YN60, Ireland.
AMBER Centre, Environmental Research Institute, University College Cork, Cork T23 XE10, Ireland.
ACS Synth Biol. 2024 Apr 19;13(4):1246-1258. doi: 10.1021/acssynbio.3c00743. Epub 2024 Mar 14.
is an attractive host for the expression of secreted proteins in a biotechnology context. Unfortunately, many heterologous proteins fail to enter, or efficiently progress through, the secretory pathway, resulting in poor yields. Similarly, yeast surface display has become a widely used technique in protein engineering but achieving sufficient levels of surface expression of recombinant proteins is often challenging. Signal peptides (SPs) and translational fusion partners (TFPs) can be used to direct heterologous proteins through the yeast secretory pathway, however, selection of the optimal secretion promoting sequence is largely a process of trial and error. The yeast modular cloning (MoClo) toolkit utilizes type IIS restriction enzymes to facilitate an efficient assembly of expression vectors from standardized parts. We have expanded this toolkit to enable the efficient incorporation of a panel of 16 well-characterized SPs and TFPs and five surface display anchor proteins into expression cassettes. The secretion promoting signals are validated by using five different proteins of interest. Comparison of intracellular and secreted protein levels reveals the optimal secretion promoting sequence for each individual protein. Large, protein of interest-specific variations in secretion efficiency are observed. SP sequences are also used with the five surface display anchors, and the combination of SP and anchor protein proves critical for efficient surface display. These observations highlight the value of the described panel of MoClo compatible parts to allow facile screening of SPs and TFPs and anchor proteins for optimal secretion and/or surface display of a given protein of interest in .
是生物技术领域中表达分泌蛋白的理想宿主。遗憾的是,许多异源蛋白无法进入或有效地通过分泌途径,导致产量低下。同样,酵母表面展示已成为蛋白质工程中广泛使用的技术,但实现重组蛋白的足够表面表达水平常常具有挑战性。信号肽 (SPs) 和翻译融合伴侣 (TFPs) 可用于引导异源蛋白通过酵母分泌途径,但选择最佳的分泌促进序列在很大程度上是一个反复试验的过程。酵母模块化克隆 (MoClo) 工具包利用 II 型限制性内切酶来促进表达载体从标准化部件的高效组装。我们已经扩展了这个工具包,使其能够将一组 16 种经过充分表征的 SPs 和 TFPs 以及 5 种表面展示锚蛋白有效地整合到表达盒中。通过使用 5 种不同的感兴趣的蛋白质来验证分泌促进信号。比较细胞内和分泌蛋白水平揭示了每种蛋白质的最佳分泌促进序列。观察到蛋白质分泌效率的大的、特定于蛋白质的变化。SP 序列也与五个表面展示锚蛋白一起使用,并且 SP 和锚蛋白的组合对于高效表面展示至关重要。这些观察结果突出了所描述的 MoClo 兼容部件面板的价值,该面板允许方便地筛选 SPs 和 TFPs 以及锚蛋白,以优化给定感兴趣的蛋白质在 中的分泌和/或表面展示。