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代谢物转运使酵母能够分泌不透膜的萜类化合物。

Metabolite trafficking enables membrane-impermeable-terpene secretion by yeast.

机构信息

Research Center for Bio-based Chemistry, Korea Research Institute of Chemical Technology (KRICT), 406-30, Jongga-ro, Jung-gu, Ulsan, 44429, Republic of Korea.

School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology (POSTECH), Pohang, Gyeongbuk, 37673, Republic of Korea.

出版信息

Nat Commun. 2022 May 11;13(1):2605. doi: 10.1038/s41467-022-30312-9.

Abstract

Metabolites are often unable to permeate cell membranes and are thus accumulated inside cells. We investigate whether engineered microbes can exclusively secrete intracellular metabolites because sustainable metabolite secretion holds a great potential for mass-production of high-value chemicals in an efficient and continuous manner. In this study, we demonstrate a synthetic pathway for a metabolite trafficking system that enables lipophilic terpene secretion by yeast cells. When metabolite-binding proteins are tagged with signal peptides, metabolite trafficking is highly achievable; loaded metabolites can be precisely delivered to a desired location within or outside the cell. As a proof of concept, we systematically couple a terpene-binding protein with an export signal peptide and subsequently demonstrate efficient, yet selective terpene secretion by yeast (~225 mg/L for squalene and ~1.6 mg/L for β-carotene). Other carrier proteins can also be readily fused with desired signal peptides, thereby tailoring different metabolite trafficking pathways in different microbes. To the best of our knowledge, this is the most efficient cognate pathway for metabolite secretion by microorganisms.

摘要

代谢物通常无法穿透细胞膜,因此在细胞内积累。我们研究了工程微生物是否可以专门分泌细胞内代谢物,因为可持续的代谢物分泌在高效、连续地大规模生产高价值化学品方面具有巨大潜力。在这项研究中,我们展示了一种代谢物运输系统的合成途径,该途径使酵母细胞能够分泌脂溶性萜烯。当代谢物结合蛋白被标记上信号肽时,代谢物运输就变得非常可行;负载的代谢物可以精确地输送到细胞内或细胞外的预期位置。作为概念验证,我们系统地将萜烯结合蛋白与一个外排信号肽偶联,随后通过酵母实现了高效但选择性的萜烯分泌(角鲨烯约 225mg/L,β-胡萝卜素约 1.6mg/L)。其他载体蛋白也可以很容易地与所需的信号肽融合,从而在不同的微生物中定制不同的代谢物运输途径。据我们所知,这是微生物分泌代谢物最有效的同源途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cea0/9095633/066c60f36f0b/41467_2022_30312_Fig1_HTML.jpg

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