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多泛素 C 启动子驱动的无土拨鼠转录后调控元件和中央多嘧啶区的慢病毒载体产生低水平和短寿命的报告基因表达。

Lentivirus vector driven by polybiquitin C promoter without woodchuck posttranscriptional regulatory element and central polypurine tract generates low level and short-lived reporter gene expression.

机构信息

Medical Genetics Laboratory, Clinical Genetics Unit, Faculty of Medicine & Health Sciences, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.

出版信息

Gene. 2012 May 1;498(2):231-6. doi: 10.1016/j.gene.2012.01.071. Epub 2012 Feb 16.

DOI:10.1016/j.gene.2012.01.071
PMID:22366305
Abstract

Lentivirus (LV) encoding woodchuck posttranscriptional regulatory element (WPRE) and central polypurine tract (cPPT) driven by CMV promoter have been proven to act synergistically to increase both transduction efficiency and gene expression. However, the inclusion of WPRE and cPPT in a lentiviral construct may pose safety risks when administered to human. A simple lentiviral construct driven by an alternative promoter with proven extended duration of gene expression without the two regulatory elements would be free from the risks. In a non-viral gene delivery context, gene expression driven by human polybiquitin C (UbC) promoter resulted in higher and more persistent expression in mouse as compared to cytomegalovirus (CMV) promoter. In this study, we measured the efficiency and persistency of green fluorescent protein (GFP) reporter gene expression in cells transduced with LV driven by UbC (LV/UbC/GFP) devoid of the WPRE and cPPT in comparison to the established LV construct encoding WPRE and cPPT, driven by CMV promoter (LV/CMV/GFP). However, we found that LV/UbC/GFP was inferior to LV/CMV/GFP in many aspects: (i) the titer of virus produced; (ii) the levels of reporter gene expression when MOI value was standardized; and (iii) the transduction efficiency in different cell types. The duration of reporter gene expression in selected cell lines was also determined. While the GFP expression in cells transduced with LV/CMV/GFP persisted throughout the experimental period of 14 days, expression in cells transduced with LV/UbC/GFP declined by day 2 post-transduction. In summary, the LV driven by the UbC promoter without the WPRE and cPPT does not exhibit enhanced or durable transgene expression.

摘要

慢病毒(LV)编码受 CMV 启动子驱动的伍德乔克转录后调控元件(WPRE)和中央多嘧啶序列(cPPT)已被证明可协同作用,提高转导效率和基因表达。然而,当将 WPRE 和 cPPT 包含在慢病毒构建体中时,在给予人类时可能会带来安全风险。由替代启动子驱动的简单慢病毒构建体,具有经过验证的延长基因表达持续时间,而没有这两个调节元件,将不会带来风险。在非病毒基因传递的背景下,与细胞巨化病毒(CMV)启动子相比,受人多泛素 C(UbC)启动子驱动的基因表达导致在小鼠中产生更高和更持久的表达。在这项研究中,我们测量了转导细胞中绿色荧光蛋白(GFP)报告基因表达的效率和持久性,这些细胞是由 UbC 驱动的 LV(LV/UbC/GFP),不含有 WPRE 和 cPPT,与编码 WPRE 和 cPPT 的已建立的 LV 构建体相比,该构建体由 CMV 启动子驱动(LV/CMV/GFP)。然而,我们发现 LV/UbC/GFP 在许多方面劣于 LV/CMV/GFP:(i)病毒产生的效价;(ii)当 MOI 值标准化时报告基因表达的水平;(iii)不同细胞类型的转导效率。还确定了选定细胞系中报告基因表达的持续时间。虽然用 LV/CMV/GFP 转导的细胞中的 GFP 表达在 14 天的实验期间持续存在,但用 LV/UbC/GFP 转导的细胞中的表达在转导后第 2 天下降。总之,没有 WPRE 和 cPPT 的 UbC 启动子驱动的 LV 不会表现出增强或持久的转基因表达。

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