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CRISPRi 介导的关键基因调控可作为一种直接酶活性评估与测定 (DEPEND) 系统。

CRISPRi-mediated programming essential gene can as a Direct Enzymatic Performance Evaluation & Determination (DEPEND) system.

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.

出版信息

Biotechnol Bioeng. 2020 Sep;117(9):2842-2851. doi: 10.1002/bit.27443. Epub 2020 Jun 19.

DOI:10.1002/bit.27443
PMID:32458463
Abstract

Harnessing enzyme expression for production of target chemicals is a critical and multifarious process, where screening of different genes by inspection of enzymatic activity plays an imperative role. Here, we conceived an idea to improve the time-consuming and labor-intensive process of enzyme screening. Controlling cell growth was achieved by the Cluster Regularly Interspaced Short Palindromic Repeat (CRISPRi) system with different single guide RNA targeting the essential gene can (CRISPRi::CA) that encodes a carbonic anhydrase for CO uptake. CRISPRi::CA comprises a whole-cell biosensor to monitor CO concentration, ranging from 1% to 5%. On the basis of CRISPRi::CA, an effective and simple Direct Enzymatic Performance Evaluation & Determination (DEPEND) system was developed by a single step of plasmid transformation for targeted enzymes. As a result, the activity of different carbonic anhydrases corresponded to the colony-forming units. Furthermore, the enzymatic performance of 5-aminolevulinic acid synthetase (ALAS), which converts glycine and succinate-CoA to release a molecule of CO , has also been distinguished, and the effect of the chaperone GroELS on ALAS enzyme folding was successfully identified in the DEPEND system. We provide a highly feasible, time-saving, and flexible technology for the screening and inspection of high-performance enzymes, which may accelerate protein engineering in the future.

摘要

利用酶表达生产目标化学品是一个关键且多样化的过程,其中通过酶活性检测筛选不同的基因起着至关重要的作用。在这里,我们想到了一个改进酶筛选这一耗时耗力过程的方法。通过靶向必需基因的不同单指导 RNA 的 Cluster Regularly Interspaced Short Palindromic Repeat (CRISPRi) 系统来控制细胞生长,该基因(CRISPRi::CA)编码碳酸酐酶以摄取 CO。CRISPRi::CA 包含一个全细胞生物传感器,可监测 CO 浓度范围为 1%至 5%。基于 CRISPRi::CA,通过一步质粒转化,为目标酶开发了一种有效且简单的直接酶性能评估和测定 (DEPEND) 系统。结果,不同碳酸酐酶的活性与集落形成单位相对应。此外,还区分了 5-氨基酮戊酸合酶 (ALAS) 的酶性能,该酶将甘氨酸和琥珀酰辅酶 A 转化为释放 CO 的分子,并且在 DEPEND 系统中成功确定了伴侣蛋白 GroELS 对 ALAS 酶折叠的影响。我们提供了一种高度可行、省时且灵活的技术,用于筛选和检查高性能酶,这可能会加速未来的蛋白质工程。

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