首页> 美国卫生研究院文献>Frontiers in Cell and Developmental Biology >Inactivation of Sonic Hedgehog Signaling and Polydactyly in Limbs of Hereditary Multiple Malformation a Novel Type of Talpid Mutant
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Inactivation of Sonic Hedgehog Signaling and Polydactyly in Limbs of Hereditary Multiple Malformation a Novel Type of Talpid Mutant

机译:声波刺猬信号的灭活和遗传多样性的新型遗传突变的肢体中的多指。

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摘要

Hereditary Multiple Malformation (HMM) is a naturally occurring, autosomal recessive, homozygous lethal mutation found in Japanese quail. Homozygote embryos (hmm−/−) show polydactyly similar to talpid2 and talpid3 mutants. Here we characterize the molecular profile of the hmm−/− limb bud and identify the cellular mechanisms that cause its polydactyly. The hmm−/− limb bud shows a severe lack of sonic hedgehog (SHH) signaling, and the autopod has 4 to 11 unidentifiable digits with syn-, poly-, and brachydactyly. The Zone of Polarizing Activity (ZPA) of the hmm−/− limb bud does not show polarizing activity regardless of the presence of SHH protein, indicating that either the secretion pathway of SHH is defective or the SHH protein is dysfunctional. Furthermore, mesenchymal cells in the hmm−/− limb bud do not respond to ZPA transplanted from the normal limb bud, suggesting that signal transduction downstream of SHH is also defective. Since primary cilia are present in the hmm−/− limb bud, the causal gene must be different from talpid2 and talpid3. In the hmm−/− limb bud, a high amount of GLI3A protein is expressed and GLI3 protein is localized to the nucleus. Our results suggest that the regulatory mechanism of GLI3 is disorganized in the hmm−/− limb bud.
机译:遗传性多重畸形(HMM)是在日本鹌鹑中发现的一种自然发生的常染色体隐性纯合致命突变。纯合子胚胎(hmm -/-)显示出与talpid 2 和talpid 3 突变体多态相似。在这里,我们表征了hmm -/-肢芽的分子特征,并确定了导致其多态性的细胞机制。 hmm -/-肢芽显示严重缺乏声波刺猬(SHH)信号,并且autopod具有4-11个无法识别的数字,具有同义,多义和近距指法。无论是否存在SHH蛋白,hmm -/-肢芽的极化活性区(ZPA)都不显示极化活性,这表明SHH的分泌途径有缺陷或SHH蛋白是功能失调的。此外,hmm -/-肢芽中的间充质细胞对正常肢芽中移植的ZPA没有反应,这表明SHH下游的信号转导也存在缺陷。由于原始纤毛存在于hmm -/-肢芽中,因此,致病基因必须不同于talpid 2 和talpid 3 。在hmm -/-肢芽中,表达了大量的GLI3A蛋白,而GLI3蛋白则位于细胞核中。我们的结果表明,GLI3的调控机制在hmm -/-肢芽中杂乱无章。

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