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SHH Protein Variance in the Limb Bud Is Constrained by Feedback Regulation and Correlates with Altered Digit Patterning

机译:下肢芽中的SHH蛋白差异受反馈调节的约束并与改变的数字模式相关

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摘要

mRNA variance has been proposed to play key roles in normal development, population fitness, adaptability, and disease. While variance in gene expression levels may be beneficial for certain cellular processes, for example in a cell’s ability to respond to external stimuli, variance may be detrimental for the development of some organs. In the bilaterally symmetric vertebrate limb buds, the amount of Sonic Hedgehog (SHH) protein present at specific stages of development is essential to ensure proper patterning of this structure. To our surprise, we found that SHH protein variance is present during the first 10 hr of limb development. The variance is virtually eliminated after the first 10 hr of limb development. By examining mutant animals, we determined that the ability of the limb bud apical ectodermal ridge (AER) to respond to SHH protein was required for reducing SHH variance during limb formation. One consequence of the failure to eliminate variance in SHH protein was the presence of polydactyly and an increase in digit length. These data suggest a potential novel mechanism in which alterations in SHH variance during evolution may have driven changes in limb patterning and digit length.
机译:已经提出mRNA变异在正常发育,种群适应性,适应性和疾病中起关键作用。尽管基因表达水平的差异可能对某些细胞过程有益,例如在细胞对外部刺激的反应能力方面,但差异可能对某些器官的发育有害。在双侧对称的脊椎动物肢芽中,在特定发育阶段存在的声波刺猬(SHH)蛋白的量对于确保该结构的正确构图至关重要。令我们惊讶的是,我们发现肢体发育的前10小时内存在SHH蛋白变异。在肢体发育的最初10小时后,实际上消除了差异。通过检查突变的动物,我们确定肢体芽顶外胚层(AER)响应SHH蛋白的能力是减少肢体形成过程中SHH变异所必需的。未能消除SHH蛋白差异的一个后果是多指的存在和手指长度的增加。这些数据表明了一种潜在的新颖机制,其中进化过程中SHH变化的变化可能驱动了肢体模式和指长的变化。

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