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Modifying inter-cistronic sequence significantly enhances IRES dependent second gene expression in bicistronic vector: Construction of optimised cassette for gene therapy of familial hypercholesterolemia

机译:修饰顺反子间序列显着增强双顺反子载体中IRES依赖性第二基因的表达:家族性高胆固醇血症基因治疗优化盒的构建

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摘要

Internal ribosome entry site (IRES) sequences have become a valuable tool in the construction of gene transfer and therapeutic vectors for multi-cistronic gene expression from a single mRNA transcript. The optimal conditions for effective use of this sequence to construct a functional expression vector are not precisely defined but it is generally assumed that the internal ribosome entry site dependent expression of the second gene in such as cassette is less efficient than the cap-dependent expression of the first gene. Mainly tailoring inter-cistronic sequence significantly enhances IRES dependent second gene expression in bicistronic vector further in construction of optimised cassette for gene therapy of familial hypercholesterolemia. We tailored the size of the inter-cistronic spacer sequence at the 5′ region of the internal ribosome entry site sequence using sequential deletions and demonstrated that the expression of the 3′ gene can be significantly increased to similar levels as the cap-dependent expression of the 5’ gene. Maximum expression efficiency of the downstream gene was obtained when the spacer is composed of 18–141 base pairs. In this case a single mRNA transcriptional unit containing both the first and the second Cistron was detected. Whilst constructs with spacer sequences of 216 bp or longer generate a single transcriptional unit containing only the first Cistron. This suggests that long spacers may affect transcription termination. When the spacer is 188 bp, both transcripts were produced simultaneously in most transfected cells, while a fraction of them expressed only the first but not the second gene. Expression analyses of vectors containing optimised cassettes clearly confirm that efficiency of gene transfer and biological activity of the expressed transgenic proteins in the transduced cells can be achieved. Furthermore, Computational analysis was carried out by molecular dynamics (MD) simulation to determine the most emerges as viable containing specific binding site and bridging of 5′ and 3′ ends involving direct RNA-RNA contacts and RNA-protein interactions. These results provide a mechanistic basis for translation stimulation and RNA resembling for the synergistic stimulation of cap-dependent translation.
机译:内部核糖体进入位点(IRES)序列已成为构建基因转移和用于从单个mRNA转录本表达多顺反子基因的治疗性载体的重要工具。有效使用该序列构建功能性表达载体的最佳条件尚不确定,但通常认为第二个基因在内部的核糖体进入位点依赖性表达,如盒式表达,其效率不如cap的帽依赖性表达有效。第一个基因。主要地,剪裁顺反子间序列显着增强了双顺反子载体中的IRES依赖性第二基因表达,进一步构建了用于家族性高胆固醇血症的基因治疗的优化盒。我们使用顺序缺失对内部核糖体进入位点序列5'区域的顺反子间隔子序列的大小进行了剪裁,并证明3'基因的表达可以显着增加至与Cap依赖的Cap依赖表达相似的水平。 5'基因。当间隔区由18-141个碱基对组成时,可获得下游基因的最大表达效率。在这种情况下,检测到同时包含第一个和第二个Cistron的单个mRNA转录单位。虽然具有216bp或更长的间隔序列的构建体产生仅包含第一个Cistron的单个转录单位。这表明长间隔子可能影响转录终止。当间隔子为188 bp时,两个转录物在大多数转染的细胞中同时产生,而其中的一部分仅表达第一个基因,而不表达第二个基因。含有优化盒的载体的表达分析清楚地证实,可以在转导的细胞中实现基因转移的效率和表达的转基因蛋白的生物学活性。此外,通过分子动力学(MD)模拟进行了计算分析,以确定最有活力的,含有特异性结合位点和5'和3'末端桥接的RNA,涉及直接的RNA-RNA接触和RNA-蛋白质相互作用。这些结果为翻译刺激和类似于帽依赖性翻译的协同刺激的RNA提供了机械基础。

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