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A synthetic system for expression of components of a bacterial microcompartment

机译:一种合成系统,用于表达细菌微型组分

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In general, prokaryotes are considered to be single-celled organisms that lack internal membrane-bound organelles. However, many bacteria produce proteinaceous microcompartments that serve a similar purpose, i.e. to concentrate specific enzymic reactions together or to shield the wider cytoplasm from toxic metabolic intermediates. In this paper, a synthetic operon encoding the key structural components of a microcompartment was designed based on the genes for the Salmonella propanediol utilization (Pdu) microcompartment. The genes chosen included pduA, -B, -J, -K, -N, -T and -U, and each was shown to produce protein in an Escherichia coli chassis. In parallel, a set of compatible vectors designed to express non-native cargo proteins was also designed and tested. Engineered hexa-His tags allowed isolation of the components of the microcompartments together with co-expressed, untagged, cargo proteins. Finally, an in vivo protease accessibility assay suggested that a PduD–GFP fusion could be protected from proteolysis when co-expressed with the synthetic microcompartment operon. This work gives encouragement that it may be possible to harness the genes encoding a non-native microcompartment for future biotechnological applications.
机译:通常,原核生物被认为是缺乏内膜结合细胞器的单细胞生物。然而,许多细菌产生蛋白质微型组分,即用于类似目的的蛋白质微型组分,即将特定的酶反应集中在一起或保护较宽的细胞质免受毒性代谢中间体。在本文中,基于Salmonella PrineDiol利用(PDU)微量组分的基因设计了一种编码微型组分的合成式操纵子。所选择的基因包括PDUA,-B,-J,-K,-N,-T和-U,各自显示在大肠杆菌底盘中产生蛋白质。并行地,设计并测试了一组设计用于表达非本地货物蛋白的兼容载体。工程的六草 - 他的标签允许将微量组分分离在一起与共同表达的,未标记的货物蛋白一起分离。最后,体内蛋白酶可替代性测定表明,在用合成微型组分操纵子共同表达时可以保护PDUD-GFP融合免受蛋白水解。这项工作引发了鼓励,可以利用编码非本地微量组分的基因以进行未来的生物技术应用。

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