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首页> 外文期刊>Journal of Medical Genetics >Triphalangeal thumb-polysyndactyly syndrome and syndactyly type IV are caused by genomic duplications involving the long range, limb-specific SHH enhancer.
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Triphalangeal thumb-polysyndactyly syndrome and syndactyly type IV are caused by genomic duplications involving the long range, limb-specific SHH enhancer.

机译:三足角拇指多形综合征和IV型综合征是由基因组重复引起的,涉及长程,肢体特异性SHH增强子。

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BACKGROUND: The Sonic hedgehog (SHH) protein produced in the zone of polarising activity (ZPA) is a major determinant of the identity and numbers of digits in early limb development. Preaxial polydactyly types II (PPD2) and III (PPD3) have been mapped to a critical region at 7q36, and subsequently shown to be caused by point mutations in the ZPA regulatory sequence (ZRS), a long range cis-regulator for the SHH gene. Triphalangeal thumb-polysyndactyly syndrome (TPTPS) and syndactyly type IV (SD4) were also mapped to the 7q36 region but pathogenic mutations in ZRS have not yet been affirmed. METHODS AND RESULTS: We performed linkage and haplotype analysis in six Han Chinese families with TPTPS and/or SD4, and refined the disease locus to an interval of 646 kb containing ZRS. In all families, the affected individuals heterozygous at rs10254391 (a single nucleotide polymorphism within ZRS) revealed a remarkable allele imbalance on sequence chromatogram. Using real-time quantitative polymerase chain reaction (qPCR), we identified duplication of ZRS and found that this duplication segregated with the limb phenotypes in all families but was not detected in unaffected family members or in unrelated control individuals. The duplication was also confirmed by interphase fluorescence in situ hybridisation (FISH) in an affected individual. We designed 17 additional qPCR assays and defined the minimum duplications in all six families, ranging from 131kb to 398kb. CONCLUSION: Both TPTPS and SD4 are due to duplications involving ZRS, the limb specific SHH enhancer. Point mutations in the ZRS and duplications encompassing the ZRS cause distinctive limb phenotypes.
机译:背景:在极化活动区(ZPA)中产生的声波刺猬(SHH)蛋白是早期肢体发育中数字的身份和数字的主要决定因素。前轴多指类型II(PPD2)和III(PPD3)已定位到7q36的关键区域,随后显示是由ZPA调控序列(ZRS)的点突变引起的,ZPA调控序列是SHH基因的长距离顺式调控子。 Triphalangeal拇指多发性综合征(TPTPS)和IV型综合征(SD4)也被定位到7q36区域,但是ZRS中的致病性突变尚未得到证实。方法和结果:我们在六个汉族家庭中使用TPPTS和/或SD4进行了连锁和单倍型分析,并将疾病位点精炼为包含ZRS的646 kb间隔。在所有家庭中,受影响的个体在rs10254391(ZRS中的单核苷酸多态性)处杂合,在序列色谱图上显示出显着的等位基因失衡。使用实时定量聚合酶链反应(qPCR),我们鉴定了ZRS的重复,发现该重复与所有家庭的肢体表型隔离,但未在未受影响的家庭成员或不相关的对照个体中检出。在患病个体中,相间荧光原位杂交(FISH)也证实了该重复。我们设计了17种其他qPCR分析方法,并定义了所有六个家族的最小重复数,范围从131kb到398kb。结论:TPTPS和SD4均是由于涉及肢体特异性SHH增强剂ZRS的重复。 ZRS中的点突变和包含ZRS的重复导致独特的肢体表型。

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