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在双鞭甲藻(Phaeodactylum tricornutum)中的凝血酶活性:生物技术的见解。

In vivo thrombin activity in the diatom Phaeodactylum tricornutum: biotechnological insights.

机构信息

Department of Chemistry, Biochemistry and Physics, Université du Québec À Trois-Rivières, Trois-Rivières, QC, Canada.

Plant Biology Research Group, Université du Québec À Trois-Rivières, Trois-Rivières, QC, Canada.

出版信息

Appl Microbiol Biotechnol. 2024 Oct 8;108(1):481. doi: 10.1007/s00253-024-13322-z.

Abstract

Diatoms are responsible for 20% of global carbon dioxide fixation and have significant potential in various biotechnological and industrial applications. Recently, the pennate diatom Phaeodactylum tricornutum has emerged as a prominent platform organism for metabolic engineering and synthetic biology. The availability of its genome sequence has facilitated the development of new bioengineering tools. In this study, we used in silico analyses to identify sequences potentially encoding thrombin-like proteins, which are involved in recognizing and cleaving the thrombin sequence LVPRGS in P. tricornutum. Protein structure prediction and docking studies indicated a similar active site and ligand positioning compared to characterized human and bovine thrombin. The evidence and efficiency of the cleavage were determined in vivo using two fusion-protein constructs that included YFP to measure expression, protein accumulation, and cleavage. Western blot analysis revealed 50-100% cleavage between YFP and N-terminal fusion proteins. Our findings suggest the existence of a novel thrombin-like protease in P. tricornutum. This study advances the application of diatoms for the synthesis and production of complex proteins and enhances our understanding of the functional role of these putative thrombin sequences in diatom physiology. KEY POINTS: • Protein structure predictions reveal thrombin-like active sites in P. tricornutum. • Validated cleavage efficiency of thrombin-like protease on fusion proteins in vivo. • Study advances bioengineering tools for diatom-based biotechnological applications.

摘要

硅藻负责全球 20%的二氧化碳固定,在各种生物技术和工业应用中有巨大的潜力。最近,舟形藻属的有角硅藻已成为代谢工程和合成生物学的突出平台生物。其基因组序列的可用性促进了新的生物工程工具的发展。在这项研究中,我们使用计算机分析来鉴定潜在编码凝血酶样蛋白的序列,这些蛋白参与识别和切割有角硅藻中的凝血酶序列 LVPRGS。蛋白结构预测和对接研究表明,与已鉴定的人和牛凝血酶相比,其具有相似的活性位点和配体定位。通过两种融合蛋白构建体(包括 YFP 来测量表达、蛋白积累和切割)在体内确定切割的证据和效率。Western blot 分析显示 YFP 和 N 端融合蛋白之间有 50-100%的切割。我们的发现表明有角硅藻中存在一种新的凝血酶样蛋白酶。这项研究推进了利用硅藻合成和生产复杂蛋白的应用,并增强了我们对这些假定的凝血酶序列在硅藻生理学中功能作用的理解。关键点:• 蛋白结构预测揭示了有角硅藻中的凝血酶样活性位点。• 在体内验证了凝血酶样蛋白酶对融合蛋白的有效切割。• 该研究推进了基于硅藻的生物技术应用的生物工程工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f34/11461642/276d93da3154/253_2024_13322_Fig1_HTML.jpg

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