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比较使用设计的信号肽通过 Sec 和 Tat 分泌途径在重组神经生长因子蛋白分泌中的效率。

Comparison of the efficiency of the Sec and Tat secretory pathways in the secretion of recombinant neurturin protein using designed signal peptides.

机构信息

Faculty of Life Science Engineering, College of interdisciplinary science and technologies, University of Tehran, Tehran, Iran.

出版信息

Prep Biochem Biotechnol. 2024 Oct;54(9):1157-1169. doi: 10.1080/10826068.2024.2331203. Epub 2024 Mar 21.

Abstract

Since cytoplasmic expression of heterologous proteins with disulfide bonds leads to the formation of inclusion bodies in , periplasmic production is preferable. The N-terminal signal peptide attached to the secreted protein determines the type of secretory pathway through which the target protein is secreted; Sec, Tat, or SRP. The aim of this study was to design and compare two novel signal peptides for the secretion of recombinant neurturin (as a model) via the Sec and Tat pathways. For this purpose, we aligned the natural signal peptides from and to identify the conserved amino acids and those with the highest repetition. The SignalP4.1 and TatP1.0 software were used to determine the secretion efficiency of the new signal peptides. The efficiency of new signal peptides was then evaluated and compared experimentally with two naturally used signal peptides. Quantitative analysis of Western blot bands showed that approximately 80% of the expressed neurturin was secreted into the periplasmic space by new signal peptides. Circular dichroism spectroscopy also confirmed the correct secondary structure of the secreted neurturin. In conclusion, these novel signal peptides can be used to secrete any other recombinant proteins to the periplasmic space of efficiently.

摘要

由于带有二硫键的异源蛋白的细胞质表达会导致包涵体的形成,因此优先选择周质生产。附着在分泌蛋白上的 N 端信号肽决定了靶蛋白通过哪种分泌途径进行分泌;Sec、Tat 或 SRP。本研究旨在设计和比较两种新型信号肽,用于通过 Sec 和 Tat 途径分泌重组神经生长因子(作为模型)。为此,我们对 和 中的天然信号肽进行了比对,以确定保守氨基酸和重复频率最高的氨基酸。使用 SignalP4.1 和 TatP1.0 软件来确定新信号肽的分泌效率。然后通过实验评估和比较新信号肽与两种天然使用的信号肽的效率。Western blot 条带的定量分析表明,约 80%的表达神经生长因子通过新信号肽分泌到周质空间。圆二色性光谱也证实了分泌的神经生长因子的正确二级结构。总之,这些新型信号肽可用于有效地将任何其他重组蛋白分泌到 的周质空间。

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