5号染色体上遗传性出血性毛细血管扩张(HHT)3位点的精细定位排除了VE-Cadherin-2、Sprouty4和其他间隔基因。

Fatima S Govani, Claire L Shovlin
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引用次数: 15

摘要

背景:人们对遗传性出血性毛细血管扩张症(HHT)的新基因位点非常感兴趣,因为已知的疾病基因编码参与血管转化生长因子(TGF)- β信号通路的蛋白质,并且在人和动物模型中,这种疾病的表型似乎是由血管生成引起的。在之前的研究中,我们在5号染色体5.7 Mb的区域定位了一个新的HHT位点(HHT3)。使用的一些多态性标记在关键重组个体中没有信息,留下两个潜在的排除区域,其中一个包含编码VE Cadherin-2, Sprouty4和FGF1的有吸引力的候选基因的位点,这些基因与血管生成有关。方法:利用候选基因测序中发现的信息基因组序列变体,对间隔定义谱系进行扩展分析。这些变异通过聚合酶链反应扩增;在ABI 3730xl上测序,并使用FinchTV V1.4.0软件进行分析。结果:信息性基因组序列变异用于构建单倍型,允许更精确地引用重组断点。这些方法将无信息的着丝粒区从141.2- 144mb减少到141.9-142.6 Mb之间,将无信息的端粒区从145.2-146.9 Mb减少到146.1-146.4 Mb之间。结论:5号染色体上的HHT3间隔减少到4.5 Mb,不包括原始HHT3间隔中30%的编码基因。强候选VE-cadherin-2和Sprouty4不可能是ht3。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Fine mapping of the hereditary haemorrhagic telangiectasia (HHT)3 locus on chromosome 5 excludes VE-Cadherin-2, Sprouty4 and other interval genes.

Background: There is significant interest in new loci for the inherited condition hereditary haemorrhagic telangiectasia (HHT) because the known disease genes encode proteins involved in vascular transforming growth factor (TGF)-beta signalling pathways, and the disease phenotype appears to be unmasked or provoked by angiogenesis in man and animal models. In a previous study, we mapped a new locus for HHT (HHT3) to a 5.7 Mb region of chromosome 5. Some of the polymorphic markers used had been uninformative in key recombinant individuals, leaving two potentially excludable regions, one of which contained loci for attractive candidate genes encoding VE Cadherin-2, Sprouty4 and FGF1, proteins involved in angiogenesis.

Methods: Extended analyses in the interval-defining pedigree were performed using informative genomic sequence variants identified during candidate gene sequencing. These variants were amplified by polymerase chain reaction; sequenced on an ABI 3730xl, and analysed using FinchTV V1.4.0 software.

Results: Informative genomic sequence variants were used to construct haplotypes permitting more precise citing of recombination breakpoints. These reduced the uninformative centromeric region from 141.2-144 Mb to between 141.9-142.6 Mb, and the uninformative telomeric region from 145.2-146.9 Mb to between 146.1-146.4 Mb.

Conclusions: The HHT3 interval on chromosome 5 was reduced to 4.5 Mb excluding 30% of the coding genes in the original HHT3 interval. Strong candidates VE-cadherin-2 and Sprouty4 cannot be HHT3.

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