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建立在绿藻莱茵衣藻中的基于 RNA 的瞬时表达系统。

Establishment of an RNA-based transient expression system in the green alga Chlamydomonas reinhardtii.

机构信息

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, Hubei 430072, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, Hubei 430072, China.

出版信息

N Biotechnol. 2024 Nov 25;83:175-187. doi: 10.1016/j.nbt.2024.08.501. Epub 2024 Aug 15.

Abstract

Chlamydomonas reinhardtii, a unicellular green alga, is a prominent model for green biotechnology and for studying organelles' function and biogenesis, such as chloroplasts and cilia. However, the stable expression of foreign genes from the nuclear genome in C. reinhardtii faces several limitations, including low expression levels and significant differences between clones due to genome position effects, epigenetic silencing, and time-consuming procedures. We developed a robust transient expression system in C. reinhardtii to overcome these limitations. We demonstrated efficient entry of in vitro-transcribed mRNA into wall-less cells and enzymatically dewalled wild-type cells via electroporation. The endogenous or exogenous elements can facilitate efficient transient expression of mRNA in C. reinhardtii, including the 5' UTR of PsaD and the well-characterized Kozak sequence derived from the Chromochloris zofingiensis. In the optimized system, mRNA expression was detectable in 120 h with a peak around 4 h after transformation. Fluorescently tagged proteins were successfully transiently expressed, enabling organelle labeling and real-time determination of protein sub-cellular localization. Remarkably, transiently expressed IFT46 compensated for the ift46-1 mutant phenotype, indicating the correct protein folding and function of IFT46 within the cells. Additionally, we demonstrated the feasibility of our system for studying protein-protein interactions in living cells using bimolecular fluorescence complementation. In summary, the established transient expression system provides a powerful tool for investigating protein localization, function, and interactions in C. reinhardtii within a relatively short timeframe, which will significantly facilitate the study of gene function, genome structure, and green biomanufacturing in C. reinhardtii and potentially in other algae.

摘要

莱茵衣藻是一种单细胞绿藻,是绿色生物技术和研究细胞器功能和生物发生的重要模式生物,如叶绿体和纤毛。然而,将核基因组中外源基因在莱茵衣藻中稳定表达面临着一些限制,包括由于基因组位置效应、表观遗传沉默和耗时的程序导致的低表达水平和克隆间的显著差异。我们开发了一种在莱茵衣藻中稳健的瞬时表达系统来克服这些限制。我们通过电穿孔证明了体外转录的 mRNA 可以有效地进入无壁细胞和酶去壁的野生型细胞。内源性或外源性元件可以促进 mRNA 在莱茵衣藻中的高效瞬时表达,包括 PsaD 的 5'UTR 和源自 Chromochloris zofingiensis 的经过充分表征的 Kozak 序列。在优化的系统中,mRNA 表达在 120 小时内可检测到,在转化后约 4 小时达到峰值。荧光标记的蛋白质可以成功地瞬时表达,从而可以对细胞器进行标记并实时确定蛋白质的亚细胞定位。值得注意的是,瞬时表达的 IFT46 补偿了 ift46-1 突变体的表型,表明 IFT46 在细胞内的正确蛋白质折叠和功能。此外,我们还证明了我们的系统在使用双分子荧光互补研究活细胞中蛋白质-蛋白质相互作用的可行性。总之,所建立的瞬时表达系统为在相对较短的时间内研究莱茵衣藻中蛋白质的定位、功能和相互作用提供了有力的工具,这将极大地促进对莱茵衣藻基因功能、基因组结构和绿色生物制造的研究,并可能在其他藻类中也具有应用前景。

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