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先天性角化不良中的突变:它们对端粒长度的影响及临床表现的多样性。

Mutations in dyskeratosis congenita: their impact on telomere length and the diversity of clinical presentation.

作者信息

Vulliamy Tom J, Marrone Anna, Knight Stuart W, Walne Amanda, Mason Philip J, Dokal Inderjeet

机构信息

Department of Haematology, Hammersmith Hospital, Du Cane Rd, London, W12 ONN, United Kingdom.

出版信息

Blood. 2006 Apr 1;107(7):2680-5. doi: 10.1182/blood-2005-07-2622. Epub 2005 Dec 6.

Abstract

The two genes mutated in the bone marrow failure syndrome dyskeratosis congenita (DC) both encode components of the telomerase complex responsible for maintaining the ends of chromosomes in stem cells and in the germ line. In reviewing the mutation profile that is found in DC, we describe 9 novel mutations in the DKC1 gene and 3 novel TERC mutations responsible for the X-linked and autosomal dominant forms of the disease, respectively, but find that two thirds of the families do not have mutations in either of these genes. In a significant subset of these uncharacterized families, the index case presents with severe disease previously defined as the Hoyeraal Hreidarsson (HH) syndrome. The diverse clinical phenotype seen in patients with X-linked DC is not explained by the different amino acid substitutions: Presentation of the recurrent A353V substitution ranges from classic DC to the severe HH variant. However, we do see that patients with HH have significantly shorter telomeres than those with a relatively mild presentation. In the new families described with TERC mutations, there is further evidence of disease anticipation associated with shorter telomeres in the younger generations. This study highlights the considerable genetic and phenotypic diversity of DC.

摘要

在骨髓衰竭综合征先天性角化不良(DC)中发生突变的两个基因,均编码端粒酶复合物的组成部分,该复合物负责维持干细胞和生殖系中染色体的末端。在回顾DC中发现的突变谱时,我们描述了DKC1基因中的9个新突变和分别导致该疾病X连锁和常染色体显性形式的3个新的TERC突变,但发现三分之二的家族在这两个基因中均无突变。在这些未明确特征的家族的一个重要子集中,索引病例表现为先前定义的霍耶拉尔·赫雷达尔松(HH)综合征的严重疾病。X连锁DC患者中所见的多样临床表型无法用不同的氨基酸替代来解释:复发性A353V替代的表现范围从经典DC到严重的HH变异型。然而,我们确实看到HH患者的端粒明显短于表现相对较轻的患者。在描述有TERC突变的新家族中,有进一步的证据表明疾病早发与年轻一代中较短的端粒有关。这项研究突出了DC相当大的遗传和表型多样性。

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