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用于在烟草中高水平生产重组蛋白的人工转录系统的设计()。 (注:括号里的内容原文缺失,无法准确完整翻译这部分)

Design of an artificial transcriptional system for production of high levels of recombinant proteins in tobacco ().

作者信息

Yun Areum, Kang Joohyun, Lee Juhun, Song Shi-Jian, Hwang Inhwan

机构信息

Department of Life Sciences, Pohang University of Science and Technology, Pohang, Republic of Korea.

出版信息

Front Plant Sci. 2023 Feb 23;14:1138089. doi: 10.3389/fpls.2023.1138089. eCollection 2023.

Abstract

Plants have recently received much attention as a means of producing recombinant proteins because they are easy to grow at a low cost and at a large scale. Although many plant protein expression systems have been developed, there remains a need for improved systems that deliver high yields of recombinant proteins. Transcription of the recombinant gene is a key step in increasing the yield of recombinant proteins. However, revealed strong promoters, terminators, and transcription factors that have been identified do not necessarily lead to high level production of recombinant proteins. Thus, in this study, a robust expression system was designed to produce high levels of recombinant protein consisting of a novel hybrid promoter, FM'M-UD, coupled with an artificial terminator, 3PRt. FM'M-UD contained fragments from three viral promoters (the promoters of mosaic caulimovirus (MMV) full-length transcript, the MMV subgenomic transcript, and figwort mosaic virus subgenomic transcript) and two types of -acting elements (four GAL4 binding sites and two zinc finger binding sites). The artificial terminator, 3PRt, consisted of the PINII and 35S terminators plus RB7, a matrix attachment region. The FM'M-UD promoter increased protein levels of reporters GFP, RBD : SD1 (part of S protein from SARS-CoV-2), and human interleukin-6 (hIL6) by 4-6-fold, 2-fold, and 6-fold, respectively, relative to those of the same reporters driven by the CaMV 35S promoter. Furthermore, when the FM'M-UD/3PRt expression cassette was expressed together with GAL4/TAC3d2, an artificial transcription factor that bound the GAL4 binding sites in FM'M-UD, levels of hIL6 increased by 10.7-fold, relative to those obtained from the CaMV 35S promoter plus the RD29B terminator. Thus, this novel expression system led to the production of a large amount of recombinant protein in plants.

摘要

植物作为生产重组蛋白的一种手段最近备受关注,因为它们易于低成本大规模种植。尽管已经开发了许多植物蛋白表达系统,但仍需要改进的系统来实现重组蛋白的高产。重组基因的转录是提高重组蛋白产量的关键步骤。然而,已鉴定出的强启动子、终止子和转录因子并不一定能导致重组蛋白的高水平表达。因此,在本研究中,设计了一种强大的表达系统来高水平生产重组蛋白,该系统由一个新型杂交启动子FM'M-UD和一个人工终止子3PRt组成。FM'M-UD包含来自三个病毒启动子(花椰菜花叶病毒(MMV)全长转录本的启动子、MMV亚基因组转录本的启动子和玄参花叶病毒亚基因组转录本的启动子)的片段以及两种顺式作用元件(四个GAL4结合位点和两个锌指结合位点)。人工终止子3PRt由PINII和35S终止子加上基质附着区域RB7组成。相对于由花椰菜花叶病毒35S启动子驱动的相同报告基因,FM'M-UD启动子使报告基因绿色荧光蛋白(GFP)、RBD:SD1(严重急性呼吸综合征冠状病毒2(SARS-CoV-2)S蛋白的一部分)和人白细胞介素-6(hIL6)的蛋白水平分别提高了4至6倍、2倍和6倍。此外,当FM'M-UD/3PRt表达盒与GAL4/TAC3d2(一种结合FM'M-UD中GAL4结合位点的人工转录因子)一起表达时,hIL6的水平相对于由花椰菜花叶病毒35S启动子加RD29B终止子获得的水平提高了10.7倍。因此, 这种新型表达系统能够在植物中大量生产重组蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfd5/9995837/def11d2c7352/fpls-14-1138089-g001.jpg

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