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新型叶绿体中表达多种蛋白质的合成操纵子载体。

New Synthetic Operon Vectors for Expressing Multiple Proteins in the Chloroplast.

机构信息

Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

Department of Biology, School of Science, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand.

出版信息

Genes (Basel). 2023 Jan 31;14(2):368. doi: 10.3390/genes14020368.

Abstract

Microalgae are a promising platform for generating valuable commercial products, including proteins that may not express well in more traditional cell culture systems. In the model green alga , transgenic proteins can be expressed from either the nuclear or chloroplast genome. Expression in the chloroplast has several advantages, but technology is not yet well developed for expressing multiple transgenic proteins simultaneously. Here, we developed new synthetic operon vectors to express multiple proteins from a single chloroplast transcription unit. We modified an existing chloroplast expression vector to contain intercistronic elements derived from cyanobacterial and tobacco operons and tested the ability of the resulting operon vectors to express two or three different proteins at a time. All operons containing two of the coding sequences (for and ) expressed the products of those genes, but operons containing the other two coding sequences ( and the synthetic camelid antibody gene ) did not. These results expand the repertoire of intercistronic spacers that can function in the chloroplast, but they also suggest that some coding sequences do not function well in the context of synthetic operons in this alga.

摘要

微藻是一个很有前途的平台,可以用来生产有价值的商业产品,包括在更传统的细胞培养系统中表达不佳的蛋白质。在模式绿藻中,转基因蛋白可以从核基因组或叶绿体基因组中表达。在叶绿体中表达有几个优点,但同时表达多个转基因蛋白的技术还不够完善。在这里,我们开发了新的合成操纵子载体,可以从单个叶绿体转录单元表达多个蛋白。我们修改了一个现有的叶绿体表达载体,使其包含来源于蓝细菌和烟草操纵子的内含子元件,并测试了由此产生的操纵子载体同时表达两种或三种不同蛋白的能力。所有包含两个编码序列(和)的操纵子都表达了这些基因的产物,但包含其他两个编码序列(和合成的骆驼抗体基因)的操纵子则没有。这些结果扩展了可以在 叶绿体中发挥作用的内含子间隔序列的范围,但也表明在这种藻类中,一些编码序列在合成操纵子的情况下不能很好地发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2b1/9956277/db6fe4b6afe8/genes-14-00368-g001.jpg

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