在毕赤酵母GS115表达系统中从鲎产生密码子优化的因子C片段用于内毒素检测。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal, genetic engineering & biotechnology Pub Date : 2023-10-17 DOI:10.1186/s43141-023-00557-y
Zubaidi Bachtiar, Apon Zaenal Mustopa, Rika Indri Astuti, Fauziyah Fauziyah, Fatimah Fatimah, Rozirwan Rozirwan, Tuah Nanda Merlia Wulandari, Dina Permata Wijaya, Fitri Agustriani, Arwansyah Arwansyah, Herman Irawan, Jendri Mamangkey
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引用次数: 0

摘要

背景:因子C(FC)被广泛用作内毒素检查的标准物质。它作为一种产酶丝氨酸蛋白酶发挥作用,并作为检测脂多糖的生物传感器。先前涉及FC的分子对接和分子动力学模拟的研究表明,C型凝集素结构域(CLECT)和配体脂多糖(脂质A)之间存在相互作用。在本研究中,我们的目的是使用蛋白质建模方法、分子对接、分子动力学模拟和pPIC9K表达载体中的基因构建来评估片段FC和脂质A配体之间相互作用的稳定性。方法和结果:采用在线工具对FC结构进行建模。在这种情况下,分子对接和MD模拟都被应用于鉴定蛋白质和配体(脂质A)之间的相互作用,包括其复合物的稳定性。根据Ramachandran地块研究,使用三个建模网站的FC结构模型具有不同的价值。与其他模型相比,AlphaFold服务器建模产生了最好的Ramachandran发现,最有利区域的残基为88.3%,其次是ERRAT值为89.83%,3D Verify为71.93%,Kdo2脂质A可以通过与受体区域结合形成配体-受体复合物而成为FC蛋白的活化剂。对所有三种配合物进行MD模拟,以评估它们在水溶剂中的稳定性,表明所有配合物在模拟过程中都是稳定的。通过评估OD值和蛋白酶活性来优化重组蛋白在毕赤酵母中的表达。在BMMY培养基中使用1%(v/v)甲醇在30°C下诱导72小时。结论:因子C的蛋白质片段已被证明可检测内毒素,并可作为潜在的生物标志物。采用分子对接模拟和分子动力学模拟研究了蛋白质片段FC与配体的复合物形成。通过异源表达成功地实现了FC片段的表达。我们建议通过在30°C下用1%甲醇诱导FC片段并孵育72小时来优化FC片段的表达。这些优化的条件非常适合使用生物反应器扩大重组FC片段的生产规模。
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Production of codon-optimized Factor C fragment from Tachypleus gigas in the Pichia pastoris GS115 expression system for endotoxin detection.

Background: Factor C (FC) is widely used as a standard material for endotoxin testing. It functions as a zymogenic serine protease and serve as a biosensor that detects lipopolysaccharides. Prior investigations involving molecular docking and molecular dynamics simulations of FC demonstrated an interaction between the C-type lectin domain (CLECT) and the ligand lipopolysaccharide (lipid A). In this study, our aim was to assess the stability of the interaction between fragment FC and the lipid A ligand using protein modeling approaches, molecular docking, molecular dynamics simulation, and gene construction into the pPIC9K expression vector.

Methods and results: The FC structure was modelled by online tools. In this case, both molecular docking and MD simulations were applied to identify the interaction between protein and ligand (lipid A) including its complex stability. The FC structure model using three modeling websites has varied values, according to a Ramachandran plot study. When compared to other models, AlphaFold server modeling produced the best Ramachandran findings, with residues in the most advantageous area at 88.3%, followed by ERRAT values at 89.83% and 3D Verify at 71.93%. From the docking simulation of FC fragments with three ligands including diphosphoryl lipid A, FC-Core lipid A, and Kdo2 lipid A can be an activator of FC protein by binding to receptor regions to form ligand-receptor complexes. MD simulations were performed on all three complexes to assess their stability in water solvents showing that all complexes were stable during the simulation. The optimization of recombinant protein expression in Pichia pastoris was conducted by assessing the OD value and protease activity. Induction was carried out using 1% (v/v) methanol in BMMY media at 30°C for 72 h.

Conclusions: Protein fragments of Factor C has been proven to detect endotoxins and serve as a potential biomarker. Molecular docking simulation and MD simulation were employed to study the complex formation of protein fragments FC with ligands. The expression of FC fragments was successfully achieved through heterologous expression. We propose optimizing the expression of FC fragments by inducing them with 1% methanol at 30°C and incubating them for 72 h. These optimized conditions are well-suited for upscaling the production of recombinant FC fragments using a bioreactor.

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