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Molecular cytogenetic insights into the ageing syndrome Hutchinson-Gilford Progeria (HGPS)

机译:衰老综合征哈钦森-吉尔福德早衰症(HGPS)的分子细胞遗传学见解

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Hutchinson-Gilford Progeria Syndrome (HGPS) is an extremely rare genetic disorder characterized by premature ageing in childhood and serves as a valuable model for the human ageing process in general. Most recently, point mutations in the lamin A (LMNA) gene on chromosome 1q have been associated with the disease, however how these mutations relate to the complex phenotype of HGPS remains to be established. It has been shown that fibroblasts from HGPS patients are frequently resistant to immortalization with telomerase (hTERT), consistent with the idea that the loss of a dominant acting HGPS gene is a pre-requisite for immortalization. In this study we report the first detailed cytogenetic analysis of hTERT-immortalised HGPS cell lines from three patients and one corresponding primary fibroblast culture. Our results pro-vide evidence for a cytogenctic mosaicism in HGPS with a distinctive pattern of chromosome aberrations in all the HGP clones. Chromosome 11 alterations were observed at a high frequency in each immortalised HGPS cell line but were also present at a lower frequency in the corresponding primary cells. Moreover, we were able to identify the 11 q 13 -> q23 region as a potential site of breakage. Our results are therefore consistent with a role of chromosome 11 alterations in the escape from senescence observed in HGPS cells. In addition to this defined rearrangement, we consistently observed complex chromosomal rearrangements, suggesting that HGPS displays features of chromosomal instability.Copyright (c) 2005 S. KargerAG, Base.
机译:Hutchinson-Gilford早衰综合症(HGPS)是一种极为罕见的遗传性疾病,其特征是在儿童时期过早衰老,通常可作为人类衰老过程的重要模型。最近,染色体1q上的lamin A(LMNA)基因中的点突变与该疾病有关,但是这些突变与HGPS的复杂表型之间的关系尚待确定。已经显示,来自HGPS患者的成纤维细胞通常对端粒酶(hTERT)的永生化具有抗性,这与认为失去主要作用的HGPS基因是永生化的先决条件的想法一致。在这项研究中,我们报告了来自三名患者和一个相应的原代成纤维细胞培养物中hTERT无限增殖的HGPS细胞系的首次详细细胞遗传学分析。我们的研究结果为HGPS细胞遗传学上的镶嵌提供了证据,并且在所有HGP克隆中都有独特的染色体畸变模式。在每个永生化的HGPS细胞系中均以较高的频率观察到11号染色体的变化,但在相应的原代细胞中也以较低的频率出现。此外,我们能够确定11 q 13-> q23区域为潜在的断裂位点。因此,我们的结果与HGPS细胞中观察到的11号染色体改变在衰老逃逸中的作用是一致的。除此定义的重排外,我们还始终观察到复杂的染色体重排,这表明HGPS显示了染色体不稳定的特征。(c)2005 S. KargerAG,Base。

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