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通过构建和筛选全面的诱变文库对来自[具体来源未给出]的III型分泌系统针状单体进行表征与工程改造。

Characterization and Engineering of the Type 3 Secretion System Needle Monomer from Through the Construction and Screening of a Comprehensive Mutagenesis Library.

作者信息

Burdette Lisa Ann, Leach Samuel Alexander, Kennedy Nolan, Ikwuagwu Bon C, Summers Jordan S, Tullman-Ercek Danielle

出版信息

bioRxiv. 2024 May 5:2024.05.02.592225. doi: 10.1101/2024.05.02.592225.

Abstract

UNLABELLED

Protein production strategies in bacteria are often limited due to the need for cell lysis and complicated purification schemes. To avoid these challenges, researchers have developed bacterial strains capable of secreting heterologous protein products outside the cell, but secretion titers often remain too low for commercial applicability. Improved understanding of the link between secretion system structure and its secretory abilities can help overcome the barrier to engineering higher secretion titers. Here we investigated this link with the PrgI protein, the monomer of the secretory channel of the Type 3 Secretion System (T3SS) of . Despite detailed knowledge of the PrgI needle's assembly and structure, little is known about how its structure influences its secretory capabilities. To study this, we recently constructed a comprehensive codon mutagenesis library of the PrgI protein utilizing a novel one pot recombineering approach. We then screened this library for functional T3SS assembly and secretion titer by measuring the secretion of alkaline phosphatase using a high-throughput activity assay. This allowed us to construct a first-of-its-kind secretion fitness landscape (SFL) to characterize the PrgI needle's mutability at each position as well as the mutations which lead to enhanced T3SS secretion. We discovered new design rules for building a functional T3SS as well as identified hypersecreting mutants. This work can be used to increase understanding of the T3SS's assembly and identify further targets for engineering. This work also provides a blueprint for future efforts to engineer other complex protein assemblies through the construction of fitness landscapes.

IMPORTANCE

Protein secretion offers a simplified alternative method for protein purification from bacterial hosts. However, the current state-of-the-art methods for protein secretion in bacteria are still hindered by low yields relative to traditional protein purification strategies. Engineers are now seeking strategies to enhance protein secretion titers from bacterial hosts, often through genetic manipulations. In this study, we demonstrate that protein engineering strategies focused on altering the secretion apparatus can be a fruitful avenue toward this goal. Specifically, this study focuses on how changes to the PrgI needle protein from the type 3 secretion system from can impact secretion titer. We demonstrate that this complex is amenable to comprehensive mutagenesis studies and that this can yield both PrgI variants with increased secretory capabilities and insight into the normal functioning of the type 3 secretion system.

摘要

未标记

由于需要细胞裂解和复杂的纯化方案,细菌中的蛋白质生产策略往往受到限制。为了避免这些挑战,研究人员开发了能够在细胞外分泌异源蛋白质产物的细菌菌株,但分泌滴度通常仍然过低,无法用于商业应用。更好地理解分泌系统结构与其分泌能力之间的联系有助于克服提高分泌滴度的工程障碍。在这里,我们用PrgI蛋白研究了这种联系,PrgI蛋白是鼠伤寒沙门氏菌Ⅲ型分泌系统(T3SS)分泌通道的单体。尽管对PrgI针状结构的组装和结构有详细了解,但对其结构如何影响其分泌能力却知之甚少。为了研究这一点,我们最近利用一种新颖的一锅法重组工程方法构建了PrgI蛋白的全面密码子诱变文库。然后,我们通过使用高通量活性测定法测量碱性磷酸酶的分泌,筛选该文库的功能性T3SS组装和分泌滴度。这使我们能够构建首个分泌适应性景观(SFL),以表征PrgI针状结构在每个位置的可变性以及导致T3SS分泌增强的突变。我们发现了构建功能性T3SS的新设计规则,并鉴定出高分泌突变体。这项工作可用于增进对T3SS组装的理解,并确定进一步的工程靶点。这项工作还为未来通过构建适应性景观来工程化其他复杂蛋白质组装体的努力提供了蓝图。

重要性

蛋白质分泌为从细菌宿主中纯化蛋白质提供了一种简化的替代方法。然而,目前细菌中蛋白质分泌的最新方法相对于传统蛋白质纯化策略仍受低产量的阻碍。工程师们现在正在寻求提高细菌宿主蛋白质分泌滴度的策略,通常是通过基因操作。在这项研究中,我们证明专注于改变分泌装置的蛋白质工程策略可能是实现这一目标的富有成效的途径。具体而言,本研究重点关注来自鼠伤寒沙门氏菌Ⅲ型分泌系统的PrgI针状蛋白的变化如何影响分泌滴度。我们证明这种复合体适合进行全面的诱变研究,并且这可以产生具有增强分泌能力的PrgI变体,并深入了解Ⅲ型分泌系统的正常功能。

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