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A re-evaluation of two key reagents for in vivo studies of Wnt signaling.

机译:对Wnt信号的体内研究的两种关键试剂的重新评估。

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Conditional mutations and transcription-based reporters are important new tools for exploring the dynamic functions of biological pathways in vivo. While studying the role of the Wnt signaling pathway in cartilage, we observed that the beta-catenin-dependent reporter TOPGAL was expressed in chondrocytes in which beta-catenin was conditionally inactivated using a Col2a1::cre driver. Here we show that in these embryos recombination is complete and full-length beta-catenin protein is absent in chondrocytes. Although a null allele in this context, the recombined beta-catenin locus produces a stable transcript that encodes a truncated protein. The truncated protein alone fails to activate TOPFLASH, but strongly potentiates reporter activity in the presence of expressed beta-catenin or Tcf4. Together, these data show that each mouse model exhibits specific undesirable properties, findings that strongly suggest the need for specific standards to ensure proper validation of this new generation of genetic tools. Developmental Dynamics 240:2060-2068, 2011. (c) 2011 Wiley-Liss, Inc.
机译:条件突变和基于转录的报告基因是探索体内生物学途径的动态功能的重要新工具。在研究Wnt信号通路在软骨中的作用时,我们观察到β-catenin依赖的报告基因TOPGAL在其中使用Col2a1 :: cre驱动程序有条件地使β-catenin失活的软骨细胞中表达。在这里,我们显示在这些胚胎中重组完全,并且软骨细胞中不存在全长β-catenin蛋白。尽管在此情况下等位基因无效,但重组的β-catenin基因座可产生编码截短蛋白的稳定转录本。单独的截短蛋白不能激活TOPFLASH,但是在表达的β-catenin或Tcf4存在的情况下,可强烈增强报道分子的活性。这些数据加在一起,表明每种小鼠模型都表现出特定的不良特性,这些发现强烈表明需要特定的标准来确保对新一代遗传工具的正确验证。 Developmental Dynamics 240:2060-2068,2011.(c)2011 Wiley-Liss,Inc.

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