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基于诱变的新型包涵体标签的表征与改进

Mutagenesis-Based Characterization and Improvement of a Novel Inclusion Body Tag.

作者信息

Jong Wouter S P, Ten Hagen-Jongman Corinne M, Vikström David, Dontje Wendy, Abdallah Abdallah M, de Gier Jan-Willem, Bitter Wilbert, Luirink Joen

机构信息

Abera Bioscience AB, Solna, Sweden.

Department of Molecular Microbiology, Amsterdam Institute for Molecules Medicines and Systems (AIMMS), Vrije Universiteit, Amsterdam, Netherlands.

出版信息

Front Bioeng Biotechnol. 2020 Jan 10;7:442. doi: 10.3389/fbioe.2019.00442. eCollection 2019.

Abstract

Whereas, bacterial inclusion bodies (IBs) for long were regarded as undesirable aggregates emerging during recombinant protein production, they currently receive attention as promising nanoparticulate biomaterials with diverse applications in biotechnology and biomedicine. We previously identified ssTorA, a signal sequence that normally directs protein export via the Tat pathway in , as a tag that induces the accumulation of fused proteins into IBs under overexpression conditions. Here, we used targeted mutagenesis to identify features and motifs being either critical or dispensable for IB formation. We found that IB formation is neither related to the function of ssTorA as a Tat-signal sequence nor is it a general feature of this family of signal sequences. IB formation was inhibited by co-overexpression of ssTorA binding chaperones TorD and DnaK and by amino acid substitutions that affect the propensity of ssTorA to form an α-helix. Systematic deletion experiments identified a minimal region of ssTorA required for IB formation in the center of the signal sequence. Unbiased genetic screening of a library of randomly mutagenized ssTorA sequences for reduced aggregation properties allowed us to pinpoint residues that are critical to sustain insoluble expression. Together, the data point to possible mechanisms for the aggregation of ssTorA fusions. Additionally, they led to the design of a tag with superior IB-formation properties compared to the original ssTorA sequence.

摘要

尽管长期以来,细菌包涵体(IBs)被视为重组蛋白生产过程中出现的不良聚集体,但目前它们作为有前途的纳米颗粒生物材料受到关注,在生物技术和生物医学中有多种应用。我们之前鉴定出ssTorA,一种通常在[具体生物]中通过Tat途径指导蛋白质输出的信号序列,作为一种标签,在过表达条件下可诱导融合蛋白积累形成包涵体。在此,我们使用定点诱变来确定对包涵体形成至关重要或可有可无的特征和基序。我们发现包涵体形成既与ssTorA作为Tat信号序列的功能无关,也不是该信号序列家族的普遍特征。通过共过表达与ssTorA结合的伴侣蛋白TorD和DnaK以及影响ssTorA形成α螺旋倾向的氨基酸替换,可抑制包涵体形成。系统的缺失实验确定了信号序列中心区域形成包涵体所需的ssTorA最小区域。对随机诱变的ssTorA序列文库进行无偏差遗传筛选以降低聚集特性,使我们能够确定对维持不溶性表达至关重要的残基。总之,这些数据指出了ssTorA融合体聚集的可能机制。此外,它们还促成了一种与原始ssTorA序列相比具有更优包涵体形成特性的标签的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b69d/6965018/3cbbcefe9376/fbioe-07-00442-g0001.jpg

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