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Droplet-based microfluidic high-throughput screening of heterologous enzymes secreted by the yeast Yarrowia lipolytica

机译:基于液滴的微流控高通量筛选酵母解脂耶氏酵母分泌的异源酶

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Background Droplet-based microfluidics is becoming an increasingly attractive alternative to microtiter plate techniques for enzymatic high-throughput screening (HTS), especially for exploring large diversities with lower time and cost footprint. In this case, the assayed enzyme has to be accessible to the substrate within the water-in-oil droplet by being ideally extracellular or displayed at the cell surface. However, most of the enzymes screened to date are expressed within the cytoplasm of Escherichia coli cells, which means that a lysis step must take place inside the droplets for enzyme activity to be assayed. Here, we take advantage of the excellent secretion abilities of the yeast Yarrowia lipolytica to describe a highly efficient expression system particularly suitable for the droplet-based microfluidic HTS. Results Five hydrolytic genes from Aspergillus niger genome were chosen and the corresponding five Yarrowia lipolytica producing strains were constructed. Each enzyme (endo- β -1,4-xylanase B and C; 1,4- β -cellobiohydrolase A; endoglucanase A; aspartic protease) was successfully overexpressed and secreted in an active form in the crude supernatant. A droplet-based microfluidic HTS system was developed to (a) encapsulate single yeast cells; (b) grow yeast in droplets; (c) inject the relevant enzymatic substrate; (d) incubate droplets on chip; (e) detect enzymatic activity; and (f) sort droplets based on enzymatic activity. Combining this integrated microfluidic platform with gene expression in Y. lipolytica results in remarkably low variability in the enzymatic activity at the single cell level within a given monoclonal population (Conclusions Yarrowia lipolytica was used to express fungal genes encoding hydrolytic enzymes of interest. We developed a successful droplet-based microfluidic platform for the high-throughput screening (105 strains/h) of Y. lipolytica based on enzyme secretion and activity. This approach provides highly efficient tools for the HTS of recombinant enzymatic activities. This should be extremely useful for discovering new biocatalysts via directed evolution or protein engineering approaches and should lead to major advances in microbial cell factory development.
机译:背景技术基于小滴的微流体技术正在成为酶促高通量筛选(HTS)的微量滴定板技术的一种越来越有吸引力的替代方法,特别是用于以较低的时间和成本足迹探索大型多样性。在这种情况下,被测定的酶必须通过理想地在细胞外或在细胞表面展示,而对油包水液滴内的底物具有可及性。然而,迄今为止筛选的大多数酶在大肠杆菌细胞的细胞质内表达,这意味着必须在液滴内部进行裂解步骤才能测定酶的活性。在这里,我们利用酵母解脂耶氏酵母的出色分泌能力来描述特别适用于基于液滴的微流控HTS的高效表达系统。结果从黑曲霉基因组中选出5个水解基因,构建了5个产解脂耶氏酵母的菌株。每种酶(内-β-1,4-木聚糖酶B和C;1,4-β-纤维二糖水解酶A;内切葡聚糖酶A;天冬氨酸蛋白酶)均成功地过表达并以活性形式分泌在粗上清液中。开发了基于液滴的微流体HTS系统,以(a)封装单个酵母细胞; (b)以液滴形式生长酵母; (c)注入相关的酶促底物; (d)孵育芯片上的液滴; (e)检测酶活性; (f)基于酶活性对液滴进行分类。将这种整合的微流体平台与解脂耶氏酵母中的基因表达相结合,可以在给定的单克隆种群中在单细胞水平上显着降低酶活性的变异性(结论解脂耶氏酵母被用于表达编码目的水解酶的真菌基因。成功的基于液滴的微流控平台,用于基于酶分泌和活性的解脂耶氏酵母的高通量筛选(10 5 菌株/ h),该方法为HTS重组酶活性的提供了高效工具这对于通过定向进化或蛋白质工程方法发现新的生物催化剂非常有用,并应导致微生物细胞工厂发展的重大进展。

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