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Preaxial polydactyly/triphalangeal thumb is associated with changed transcription factor-binding affinity in a family with a novel point mutation in the long-range cis-regulatory element ZRS

机译:前轴多指/三趾拇指与长距离顺式调控元件ZRS中具有新点突变的家族中的转录因子结合亲和力改变相关

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摘要

A cis-regulatory sequence also known as zone of polarizing activity (ZPA) regulatory sequence (ZRS) located in intron 5 of LMBR1 is essential for expression of sonic hedgehog (SHH) in the developing posterior limb bud mesenchyme. Even though many point mutations causing preaxial duplication defects have been reported in ZRS, the underlying regulatory mechanism is still unknown. In this study, we analyzed the effect on transcription factor binding of a novel ZRS point mutation (463T>G) in a Pakistani family with preaxial polydactyly and triphalangeal thumb. Electrophoretical mobility shift assay demonstrated a marked difference between wild-type and the mutant probe, which uniquely bound one or several transcription factors extracted from Caco-2 cells. This finding supports a model in which ectopic anterior SHH expression in the developing limb results from abnormal binding of one or more transcription factors to the mutant sequence.
机译:位于LMBR1内含子5的顺式调节序列(也称为极化活性区(ZPA)调节序列(ZRS))对于在发育中的后肢芽间充质细胞中表达声波刺猬(SHH)至关重要。尽管在ZRS中已报道了许多引起前轴重复缺陷的点突变,但其潜在的调控机制仍是未知的。在这项研究中,我们分析了巴基斯坦家庭中具有前轴多指和三足趾拇指的新型ZRS点突变(463T> G)对转录因子结合的影响。电泳迁移率迁移分析表明野生型和突变型探针之间存在显着差异,该突变型探针独特地结合了从Caco-2细胞提取的一种或几种转录因子。这一发现支持了一种模型,其中发育中肢体中的异位前SHH表达是由于一种或多种转录因子与突变序列的异常结合而产生的。

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