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Activation Kinetics and Off-Target Effects of Thymus-Initiated Cre Transgenes

机译:胸腺启动的Cre转基因的激活动力学和脱靶效应

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The bacteriophage enzyme Cre is a site-specific recombinase widely used to delete loxP-flanked DNA sequences in lineage-specific fashion. Several mouse lines that direct Cre expression to lymphoid progenitors in the thymus have been established, but a side-by-side comparison of when they first become active, and/or their relative efficiency at various developmental stages, has been lacking. In this study, we evaluated these in four common Cre transgenic strains with thymus-initiated promoters (Lck, Cd2, or Cd4). We found that while all of them eventually labeled nearly all thymocytes, their kinetics were dramatically different, and other than Cd4[Cre], did not faithfully recapitulate the expression pattern of the corresponding endogenous gene. Perhaps even more importantly, while thymuses from some strains compared favorably to thymuses from control (Cre-negative) mice, we found that Cre expression could also result in off-target effects, including moderate to severe decreases in thymic cellularity. These effects occurred in the absence of loxP-flanked DNA target genes, and were dose and copy number dependent. Loss of cellularity was attributable to a specific decrease in CD4+8+ immature cells, and corresponds to an increased rate of programmed cell death. In addition to a comprehensive analysis of activation kinetics in thymus-initiated Cre transgenes, our data show that Cre is toxic to CD4+8+ cells in a dose-dependent fashion, and emphasize that the choice of thymus-initiated Cre strain is critically important for minimizing off-target effects of Cre.
机译:噬菌体酶Cre是一种位点特异性重组酶,广泛用于以谱系特异性方式删除loxP侧翼DNA序列。已经建立了几种将Cre表达引导到胸腺中淋巴样祖细胞的小鼠品系,但是缺乏它们何时开始活跃和/或它们在各个发育阶段的相对效率的并排比较。在这项研究中,我们在具有胸腺启动子(Lck,Cd2或Cd4)的四个常见Cre转基因菌株中评估了这些基因。我们发现,尽管它们全部最终标记了几乎所有的胸腺细胞,但它们的动力学却大不相同,除了Cd4 [Cre]之外,它们并未如实地概括相应内源基因的表达模式。也许甚至更重要的是,尽管某些品系的胸腺比对照(Cre阴性)小鼠的胸腺好,但我们发现Cre表达也可能导致脱靶效应,包括胸腺细胞性的中度至严重降低。这些效应在不存在loxP侧翼的DNA靶基因的情况下发生,并且受剂量和拷贝数的影响。细胞性的丧失可归因于CD4 + 8 +未成熟细胞的特定减少,并且与程序性细胞死亡的速率增加相对应。除了全面分析胸腺启动的Cre转基因的激活动力学外,我们的数据还显示Cre以剂量依赖性方式对CD4 + 8 +细胞具有毒性,并强调选择胸腺启动的Cre菌株至关重要。用于最小化Cre的脱靶效应。

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