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首页> 外文期刊>Cardiovascular Research >Functional analysis of novel TBX5 T-box mutations associated with Holt-Oram syndrome.
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Functional analysis of novel TBX5 T-box mutations associated with Holt-Oram syndrome.

机译:与Holt-Oram综合征相关的新型TBX5 T-box突变的功能分析。

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AIMS: Holt-Oram syndrome (HOS) is a heart/hand syndrome clinically characterized by upper limb and cardiac malformations. Mutations in T-box transcription factor 5 (TBX5) underlie this syndrome, the majority of which lead to premature stops. In this study, we present our functional analyses of five (novel) missense TBX5 mutations identified in HOS patients, most of whom presented with severe cardiac malformations. METHODS AND RESULTS: Functional characterization of mutant proteins shows a dramatic loss of DNA-binding capacity, as well as diminished binding to known cardiac interaction partners NKX2-5 and GATA4. The disturbance of these interactions leads to a loss of function, as measured by the reduced activation of Nppa and FGF10 in rat heart derived cells, although with variable severity. Two out of the five mutations are peculiar: one, p.H220del, is associated with additional extra-cardiac defects, perhaps by interfering with other T-box dependant pathways, and another, p.I106V, leads to limb defects only, which is supported by its normal interaction with cardiac-specific interaction partners. CONCLUSION: Overall, our data are consistent with the hypothesis that these novel missense mutations in TBX5 lead to functional haploinsufficiency and result in a reduced transcriptional activation of target genes, which is likely central to the pathogenesis of HOS.
机译:目的:Holt-Oram综合征(HOS)是临床上以上肢和心脏畸形为特征的心/手综合征。 T-box转录因子5(TBX5)的突变是该综合征的基础,其中大多数导致过早停止。在这项研究中,我们介绍了我们在居屋患者中发现的五个(新)错义TBX5突变的功能分析,其中大多数患者表现出严重的心脏畸形。方法和结果:突变蛋白的功能表征显示出DNA结合能力的巨大损失,以及与已知心脏相互作用伴侣NKX2-5和GATA4的结合减少。这些相互作用的干扰导致功能丧失,这通过大鼠心脏来源的细胞中Nppa和FGF10的激活减少来衡量,尽管严重程度有所不同。这五种突变中有两种是奇特的:一种是p.H220del,它可能与其他T-box依赖性途径有关,与其他心脏外缺陷相关;另一种是p.I106V,仅导致肢体缺陷,这是与正常心脏的互动伙伴之间的正常互动得到了支持。结论:总的来说,我们的数据与以下假设相符:TBX5中这些新的错义突变导致功能性单倍体不足,并导致靶基因的转录激活降低,这可能是HOS发病机理的中心。

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