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首页> 外文期刊>Cellular & molecular biology letters. >Missense mutations in IHH impair Indian Hedgehog signaling in C3H10T1/2 cells: Implications for brachydactyly type A1, and new targets for Hedgehog signaling.
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Missense mutations in IHH impair Indian Hedgehog signaling in C3H10T1/2 cells: Implications for brachydactyly type A1, and new targets for Hedgehog signaling.

机译:IHH中的错义突变会破坏C3H10T1 / 2细胞中的印度刺猬信号:对近距离A1型的影响以及刺猬信号的新靶标。

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Heterozygous missense mutations in IHH result in Brachydactyly type A1 (BDA1; OMIM 112500), a condition characterized by the shortening of digits due to hypoplasia/aplasia of the middle phalanx. Indian Hedgehog signaling regulates the proliferation and differentiation of chondrocytes and is essential for endochondral bone formation. Analyses of activated IHH signaling in C3H10T1/2 cells showed that three BDA1-associated mutations (p.E95K, p.D100E and p.E131K) severely impaired the induction of targets such as Ptch1 and Gli1. However, this was not a complete loss of function, suggesting that these mutations may affect the interaction with the receptor PTCH1 or its partners, with an impact on the induction potency. From comparative microarray expression analyses and quantitative real-time PCR, we identified three additional targets, Sostdc1, Penk1 and Igfbp5, which were also severely affected. Penk1 and Igfbp5 were confirmed to be regulated by GLI1, while the induction of Sostdc1 by IHH is independent of GLI1. SOSTDC1 is a BMP antagonist, and altered BMP signaling is known to affect digit formation. The role of Penk1 and Igfbp5 in skeletogenesis is not known. However, we have shown that both Penk1 and Igfbp5 are expressed in the interzone region of the developing joint of mouse digits, providing another link for a role for IHH signaling in the formation of the distal digits.
机译:IHH的杂合错义突变导致近足指型A1(BDA1; OMIM 112500),其特征是由于趾骨中部发育不全/过低引起的手指缩短。印度刺猬信号调节软骨细胞的增殖和分化,对软骨内骨形成至关重要。对C3H10T1 / 2细胞中激活的IHH信号的分析表明,三个与BDA1相关的突变(p.E95K,p.D100E和p.E131K)严重损害了对靶标(如Ptch1和Gli1)的诱导。但是,这并不是功能的完全丧失,这表明这些突变可能影响与受体PTCH1或其伴侣的相互作用,从而影响诱导能力。通过比较性芯片表达分析和定量实时PCR,我们确定了另外三个靶标Sostdc1,Penk1和Igfbp5,它们也受到了严重影响。确认Penk1和Igfbp5受GLI1调控,而IHH对Sostdc1的诱导独立于GLI1。 SOSTDC1是BMP拮抗剂,已知BMP信号改变会影响手指的形成。 Penk1和Igfbp5在骨骼生成中的作用尚不清楚。但是,我们已经显示Penk1和Igfbp5都在小鼠指骨发育关节的区域间区域表达,为IHH信号在远端指骨形成中的作用提供了另一个链接。

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