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使用改良慢病毒转移载体进行功能性启动子检测。

Functional promoter testing using a modified lentiviral transfer vector.

作者信息

Geller Scott F, Ge Phillip S, Visel Meike, Greenberg Kenneth P, Flannery John G

机构信息

Helen Wills Neuroscience Institute, University of California, Berkeley, CA 94720-3190, USA.

出版信息

Mol Vis. 2007 May 17;13:730-9.

Abstract

PURPOSE

The importance of retinal glial cells in the maintenance of retinal health and in retinal degenerations has not been fully explored. Several groups have suggested that secretion of neurotrophic proteins from the retina's primary glial cell type, the Müller cell, holds promise for treating retinal degenerations. Tight regulation of transgene expression in Müller cells is likely to be critical to the efficacy of long-term neuroprotective therapies, due to the genetic heterogeneity and progressive nature of retinal disease. To this end, we developed a modified lentiviral (LV) transfer vector (pFTMGW) to accelerate the testing and evaluation of novel transcriptional regulatory elements. This vector facilitates identification and characterization of regulatory elements in terms of size, cell specificity and ability to control transgene expression levels.

METHODS

A synthetic multiple cloning site (MCS) which can accept up to five directionally cloned DNA regulatory elements was inserted immediately upstream of an enhanced green fluorescent protein (eGFP) reporter. A cytomegalovirus (CMV) promoter, required for tat-independent viral packaging, is located around 2 kb upstream of the eGFP reporter and is capable of directing transgene expression. A synthetic transcription blocker (TB) was inserted to insulate the MCS/eGFP from the CMV promoter. We evaluated eGFP expression from pFTMGW and control constructs using flow cytometry and quantitative reverse transcriptase polymerase chain reaction (RT-PCR). We also tested and compared the activity and cell specificity of a computationally identified promoter fragment from the rat vimentin gene (Vim409) in transfection and lentiviral infection experiments using fluorescence microscopy.

RESULTS

Transfection data, quantitative RT-PCR, and flow cytometry show that around 85% of expression from the CMV promoter was blocked by the TB element, allowing direct evaluation of expression from the Vim409 candidate promoter cloned into the MCS. Lentiviruses generated from this construct containing the Vim409 promoter (without the TB element) drove robust eGFP expression in Müller cells in vitro and in vivo.

CONCLUSIONS

The TB element efficiently prevented eGFP expression by the upstream CMV promoter and the novel MCS facilitated testing of an evolutionarily conserved regulatory element. Additional sites allow for combinatorial testing of additional promoter, enhancer, and/or repressor elements in various configurations. This modified LV transfer vector is an effective tool for expediting functional analysis of gene regulatory elements in Müller glia, and should prove useful for promoter analyses in other cell types and tissues.

摘要

目的

视网膜神经胶质细胞在维持视网膜健康及视网膜变性过程中的重要性尚未得到充分研究。多个研究小组指出,视网膜主要神经胶质细胞类型即 Müller 细胞分泌的神经营养蛋白有望用于治疗视网膜变性。由于视网膜疾病具有遗传异质性和渐进性,Müller 细胞中转基因表达的严格调控可能对长期神经保护疗法的疗效至关重要。为此,我们开发了一种改良的慢病毒(LV)转移载体(pFTMGW),以加速新型转录调控元件的测试和评估。该载体有助于从大小、细胞特异性和控制转基因表达水平的能力等方面对调控元件进行鉴定和表征。

方法

在增强型绿色荧光蛋白(eGFP)报告基因的紧邻上游插入一个合成多克隆位点(MCS),该位点可接受多达五个定向克隆的 DNA 调控元件。用于非 tat 依赖性病毒包装所需的巨细胞病毒(CMV)启动子位于 eGFP 报告基因上游约 2 kb 处,能够指导转基因表达。插入一个合成转录阻断剂(TB),以使 MCS/eGFP 与 CMV 启动子隔离。我们使用流式细胞术和定量逆转录聚合酶链反应(RT-PCR)评估了 pFTMGW 和对照构建体中 eGFP 的表达。我们还在转染和慢病毒感染实验中使用荧光显微镜测试并比较了从大鼠波形蛋白基因(Vim409)经计算鉴定的启动子片段的活性和细胞特异性。

结果

转染数据、定量 RT-PCR 和流式细胞术表明,TB 元件阻断了约 85%来自 CMV 启动子的表达,从而能够直接评估克隆到 MCS 中的 Vim409 候选启动子的表达。由含有 Vim409 启动子(无 TB 元件)的该构建体制备的慢病毒在体外和体内的 Müller 细胞中驱动了强劲的 eGFP 表达。

结论

TB 元件有效地阻止了上游 CMV 启动子介导的 eGFP 表达,新型 MCS 有助于对进化保守调控元件进行测试。额外的位点允许以各种配置对额外的启动子、增强子和/或阻遏元件进行组合测试。这种改良的 LV 转移载体是加速 Müller 胶质细胞中基因调控元件功能分析的有效工具,并且应该被证明对其他细胞类型和组织中的启动子分析有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b029/2765473/271bd5418936/mv-v13-730-f1.jpg

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