首页> 外文期刊>Journal of Medical Genetics >A microduplication of the long range SHH limb regulator (ZRS) is associated with triphalangeal thumb-polysyndactyly syndrome.
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A microduplication of the long range SHH limb regulator (ZRS) is associated with triphalangeal thumb-polysyndactyly syndrome.

机译:远距离SHH肢体调节器(ZRS)的微复制与三足趾拇指多指综合征有关。

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BACKGROUND: Sonic hedgehog (SHH) plays an important role in defining the anterior-posterior axis in the developing limbs. A highly conserved non-coding sequence about approximately 1 Mb upstream from the sonic hedgehog gene (SHH) was shown to be a long range regulator for SHH expression in the limb bud. Point mutations within this non-coding regulatory region designated ZRS lead to ectopic expression of Shh in the anterior margin of the limb bud, as shown in mice, and cause the human triphalangeal thumb and polysyndactyly (TPT-PS) phenotype. Even though this association is well established, its molecular mechanism remains unclear. METHODS AND RESULTS: We investigated a large pedigree with variable TPT-PS. A single nucleotide exchange within the SHH limb regulator sequence was excluded, but locus specific microsatellite marker analyses confirmed a linkage to this region. Subsequently, array comparative genomic hybridisation (array CGH) was carried out using a submegabase whole human genome tiling path bacterial artificial chromosome (BAC) array revealing a microduplication in 7q36.3 in affected individuals. A duplicated region of 588,819 bp comprising the ZRS was identified by quantitative real-time polymerase chain reaction (qPCR) and direct sequencing. CONCLUSION: A novel microduplication in 7q36.3 results in a similar TPT-PS phenotype as caused by single nucleotide alterations in the ZRS, the limb specific SHH regulatory element. Duplications can be added to the growing list of mechanisms that cause abnormalities of long range transcriptional control.
机译:背景:声波刺猬(SHH)在确定发育中肢体的前后轴方面起着重要作用。高度保守的非编码序列大约在音猬因子基因(SHH)上游约1 Mb处,是肢芽中SHH表达的长程调节剂。如小鼠所示,在这个称为ZRS的非编码调控区域内的点突变导致Shh在肢芽前缘的异位表达,并导致人三趾和多指(TPT-PS)表型。尽管这种联系已经建立,但其分子机制仍不清楚。方法和结果:我们调查了一个大的家系,并带有可变的TPT-PS。 SHH肢体调节序列内的单个核苷酸交换被排除在外,但基因座特异性微卫星标记分析证实了与该区域的联系。随后,使用亚超碱基全人类基因组平铺路径细菌人工染色体(BAC)阵列进行了阵列比较基因组杂交(阵列CGH),揭示了受影响个体中7q36.3的微复制。通过定量实时聚合酶链反应(qPCR)和直接测序鉴定了包含ZRS的588,819 bp的重复区域。结论:7q36.3中的新型微复制导致类似的TPT-PS表型,这是由肢体特异性SHH调节元件ZRS中的单核苷酸改变引起的。可以将重复复制添加到引起远程转录控制异常的不断增加的机制列表中。

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