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Proximo-distal positional information encoded by an Fgf-regulated gradient of homeodomain transcription factors in the vertebrate limb

机译:由FGF调节的脊椎动物肢体转录因子的FGF调节梯度编码的近端位置信息

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The positional information theory proposes that a coordinate system provides information to embryonic cells about their position and orientation along a patterning axis. Cells interpret this information to produce the appropriate pattern. During development, morphogens and interpreter transcription factors provide this information. We report a gradient of Meis homeodomain transcription factors along the mouse limb bud proximo-distal (PD) axis antiparallel to and shaped by the inhibitory action of distal fibroblast growth factor (FGF). Elimination of Meis results in premature limb distalization and HoxA expression, proximalization of PD segmental borders, and phocomelia. Our results show that Meis transcription factors interpret FGF signaling to convey positional information along the limb bud PD axis. These findings establish a new model for the generation of PD identities in the vertebrate limb and provide a molecular basis for the interpretation of FGF signal gradients during axial patterning.
机译:位置信息理论提出了坐标系向常规和沿图案化轴线的位置和取向提供信息。细胞解释此信息以产生适当的模式。在开发期间,变质酚和翻译转录因子提供了这些信息。我们沿着小鼠肢体芽面远端(Pd)轴的Meis Homeodomain转录因子的梯度反向并通过远端成纤维细胞生长因子(FGF)的抑制作用而形成。消除MEIS导致过早的肢体远端和HOXA表达,PD节段边界的近代化和敏素。我们的结果表明,MEIS转录因子将FGF信号传送以沿着肢体芽PD轴传送位置信息。这些发现建立了一种用于在脊椎动物肢体中产生PD标识的新模型,并为轴向图案化期间解释FGF信号梯度的分子基础。

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