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在……中使用两阶段自动诱导细胞自溶和DNA/RNA自动水解进行简单可扩展的蛋白质表达和提取

Simple Scalable Protein Expression and Extraction Using Two-stage Autoinducible Cell Autolysis and DNA/RNA Autohydrolysis in .

作者信息

Menacho-Melgar Romel, Lynch Michael D

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC, USA.

出版信息

Bio Protoc. 2022 Jan 20;12(2):e4297. doi: 10.21769/BioProtoc.4297.

Abstract

Recombinant protein expression is extensively used in biological research. Despite this, current protein expression and extraction methods are not readily scalable or amenable for high-throughput applications. Optimization of protein expression conditions using traditional methods, reliant on growth-associated induction, is non-trivial. Similarly, protein extraction methods are predominantly restricted to chemical methods, and mechanical methods reliant on expensive specialized equipment more tuned for large-scale applications. In this article, we outline detailed protocols for the use of an engineered autolysis/autohydrolysis strain, in two-stage fermentations in shake-flasks. This two-stage fermentation protocol does not require optimization of expression conditions and results in high protein titers. Cell lysis in an engineered strain is tightly controlled and only triggered post-culture by addition of a 0.1% detergent solution. Upon cell lysis, a nuclease digests contaminating host oligonucleotides, which facilitates sample handling. This method has been validated for use at different scales, from microtiter plates to instrumented bioreactors. Graphic abstract: Reprinted with permission from Menacho-Melgar (2020a). Copyright 2020 John Wiley and Sons.

摘要

重组蛋白表达在生物学研究中被广泛应用。尽管如此,目前的蛋白质表达和提取方法不易扩展或适用于高通量应用。使用依赖生长相关诱导的传统方法优化蛋白质表达条件并非易事。同样,蛋白质提取方法主要局限于化学方法,而机械方法则依赖于更适合大规模应用的昂贵专业设备。在本文中,我们概述了在摇瓶中使用工程自溶/自水解菌株进行两阶段发酵的详细方案。这种两阶段发酵方案不需要优化表达条件,并且能产生高蛋白滴度。工程菌株中的细胞裂解受到严格控制,仅在培养后通过添加0.1%的去污剂溶液触发。细胞裂解后,核酸酶消化污染的宿主寡核苷酸,这有助于样品处理。该方法已在从微量滴定板到仪器化生物反应器的不同规模上得到验证。图形摘要:经Menacho-Melgar(2020a)许可转载。版权所有2020约翰威立父子公司。

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