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Binary recombinase systems for high-resolution conditional mutagenesis

机译:用于高分辨率条件诱变的二元重组酶系统

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摘要

Conditional mutagenesis using Cre recombinase expressed from tissue specific promoters facilitates analyses of gene function and cell lineage tracing. Here, we describe two novel dual-promoter-driven conditional mutagenesis systems designed for greater accuracy and optimal efficiency of recombination. Co-Driver employs a recombinase cascade of Dre and Dre-respondent Cre, which processes loxP-flanked alleles only when both recombinases are expressed in a predetermined temporal sequence. This unique property makes Co-Driver ideal for sequential lineage tracing studies aimed at unraveling the relationships between cellular precursors and mature cell types. Co-InCre was designed for highly efficient intersectional conditional transgenesis. It relies on highly active trans-splicing inteins and promoters with simultaneous transcriptional activity to reconstitute Cre recombinase from two inactive precursor fragments. By generating native Cre, Co-InCre attains recombination rates that exceed all other binary SSR systems evaluated in this study. Both Co-Driver and Co-InCre significantly extend the utility of existing Cre-responsive alleles
机译:使用从组织特异性启动子表达的Cre重组酶进行条件诱变,有助于分析基因功能和细胞谱系追踪。在这里,我们描述了两个新颖的双启动子驱动条件诱变系统,旨在提高重组的准确性和效率。协同驱动程序采用Dre和Dre响应Cre的重组酶级联,仅当两种重组酶均以预定的时间序列表达时才处理loxP侧翼等位基因。这种独特的特性使Co-Driver非常适合于顺序谱系追踪研究,旨在揭示细胞前体细胞与成熟细胞类型之间的关系。 Co-InCre设计用于高效的交叉条件条件转基因。它依赖于高活性的反式内含蛋白和启动子,同时具有转录活性,可以从两个无活性的前体片段中重组Cre重组酶。通过生成天然Cre,Co-InCre的重组率超过了本研究中评估的所有其他二进制SSR系统。 Co-Driver和Co-InCre都大大扩展了现有Cre反应性等位基因的用途

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