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首页> 外文期刊>Haemophilia: the official journal of the World Federation of Hemophilia >Review of molecular mechanisms at distal Xq28 leading to balanced or unbalanced genomic rearrangements and their phenotypic impacts on hemophilia
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Review of molecular mechanisms at distal Xq28 leading to balanced or unbalanced genomic rearrangements and their phenotypic impacts on hemophilia

机译:回顾在远端中Xq28分子机制导致平衡或不平衡的基因组重组及其表型的影响血友病

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摘要

The distal Xq28 region is very gene‐rich, comprising a relatively large number of low‐copy repeats ( LCR s) predisposing to genomic rearrangements. The best‐known rearrangement at this locus is the F8 intron 22 inversion, responsible for up to 45% of severe hemophilia A ( HA ) cases. An additional inversion of intron 1 of F8 has more recently been described, affecting 2%‐5% of patients with severe HA . These “balanced” rearrangements are mediated by intrachromosomal homologous recombination between inversely oriented LCR s located in intron 1 or 22 and other extragenic copies positioned more telomerically outside the F8 gene. The successive innovations of semi‐quantitative technologies like multiplex ligation‐dependent probe amplification ( MLPA ) and array comparative genomic hybridization (array CGH ) have rendered it possible to highlight a significant number of “unbalanced” rearrangements associated or not with these inversions. Some rearrangements are generated by the non‐allelic homologous recombination ( NAHR ) pathway between directly oriented LCR s. Others are probably the result of unequal crossing‐over or U‐loop exchanges during female meiosis. This review sought to provide an overview of the mechanisms underlying rearrangements at the distal Xq28 locus and discuss their clinical impacts other than HA , such as risks of developing high inhibitor levels and spontaneous abortion, as well as other pathologies like cardiovascular disease or potentially X‐linked intellectual disease.
机译:远端中Xq28区域非常基因量丰富,组成一个相对大量的低拷贝重复(LCR)诱发基因重组。这个轨迹F8基因内区22反转,负责45%的严重血友病(HA)病例。F8最近被描述,影响2%还是5%的患者有严重哈。重组是由“平衡”染色体内之间的同源重组反向的电感电容电阻测量年代位于内含子1或22日和其他基因外定位更多的副本telomerically F8外基因。创新的半定量技术像多路复用结扎所致相关调查放大(MLPA)和数组的比较基因组杂交(全息阵列)强调大量成为可能“不平衡”重组与否有关与这些反演。生成的非等位基因的同源直接复合(NAHR)之间的通路面向电感电容电阻测量年代。其他可能的结果不平等跨越地理或者U循环期间交流女性减数分裂。机制的概述在远端中Xq28轨迹和重组讨论他们的临床影响以外的哈,如发展抑制剂水平高的风险和自然流产,以及其他如心血管疾病或病理特征潜在的X的疾病相关知识。

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