为肝细胞癌武装 GPC3 CAR-T 细胞:多少才足够,下一步是什么?
Armouring GPC3 CAR T cells for hepatocellular carcinoma: how much is enough and what comes next?
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineering back-splicing-like sites for enhanced linear RNA expression.
Engineering back-splicing-like sites for enhanced linear RNA expression.
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前体RNA形成线性RNA和circRNA是一个竞争过程。决定形成哪种类型RNA分子的因素包括pre-mRNA的序列、调控元件的存在以及RNA结合蛋白的活性。
在本研究中,通过将Luc表达载体或体外转录的Luc RNA导入三种不同的细胞系——HepG2、BmN和CIK细胞——形成了多种circRNA。这些模型广泛用于研究肝细胞癌、家蚕分子生物学以及草鱼-病原体相互作用。通过逆转录PCR、Sanger测序和逆转录滚环扩增验证了Luc来源circRNA的存在。对circRNA连接位点的序列分析表明,这些Luc-circRNA的反向剪接样(BSL)位点不同于经典剪接位点。BSL位点的突变可显著降低Luc来源circRNA的表达水平,并增加细胞中Luc mRNA的表达水平。
此外,在BSL位点突变转染的细胞中,荧光素酶活性显著增加。另外,在感染带有BSL位点突变的重组杆状病毒的细胞中,circRNA形成效率降低,相应RNA增加。
进一步地,沉默circRNA形成相关蛋白基因可显著降低Luc来源circRNA的表达效率,并显著增加Luc的表达水平。这些研究为BSL介导的基因表达调控提供了有价值的见解,并有助于开发更高效、更有针对性的基因表达系统。关键点:• 进入培养细胞的外源基因可以被剪接。• 改变外源基因的BSL位点可以改善其表达。• BSL位点的调控可用于开发高效基因表达的方法。
The formation of linear RNAs and circRNAs from pre-RNAs is a competitive process. The factors that determine which type of RNA molecule is formed include the sequence of the pre-mRNA, the presence of regulatory elements, and the activity of RNA-binding proteins. In this study, multiple circRNAs were formed by introducing a Luc expression vector or in vitro transcribed Luc RNAs into three different cell lines: HepG2, BmN, and CIK cells. These models are widely used for studying hepatocellular carcinoma, silkworm molecular biology, and Ctenopharyngodon idellus-pathogen interactions.
The existence of Luc-derived circRNAs was verified via reverse transcription‒PCR, Sanger sequencing, and reverse transcription‒rolling circle amplification. Sequence analysis of the circRNA junction sites revealed that the back splicing-like (BSL) sites of these Luc-circRNAs were different from the canonical splice sites. Mutations at BSL sites can significantly reduce the expression levels of Luc-derived circRNAs and increase the expression levels of Luc mRNA in cells.
Furthermore, luciferase activity was significantly increased in BSL site mutation-transfected cells.
In addition, the efficiency of circRNA formation was reduced, and the corresponding RNAs were increased in cells infected with recombinant baculoviruses with BSL site mutations.
Furthermore, the silencing of circRNA formation-related protein genes significantly reduced the expression efficiency of Luc-derived circRNAs and significantly increased the expression level of Luc. These studies provide valuable insights into the regulation of BSL-mediated gene expression and contribute to the development of more efficient and targeted gene expression systems.
KEY POINTS: • Exogenous genes that enter cultured cells can be spliced. • A change in the BSL site of an exogenous gene could improve its expression. • The regulation of BSL sites could be used to develop a method for efficient gene expression.
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