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鉴定首个 ATRIP 缺陷患者和 ATR 中的新突变,为 ATR-ATRIP 型 Seckel 综合征定义了临床谱。

Identification of the first ATRIP-deficient patient and novel mutations in ATR define a clinical spectrum for ATR-ATRIP Seckel Syndrome.

机构信息

Nagasaki University Research Centre for Genomic Instability and Carcinogenesis, Nagasaki University, Sakamoto, Nagasaki, Japan.

出版信息

PLoS Genet. 2012;8(11):e1002945. doi: 10.1371/journal.pgen.1002945. Epub 2012 Nov 8.

Abstract

A homozygous mutational change in the Ataxia-Telangiectasia and RAD3 related (ATR) gene was previously reported in two related families displaying Seckel Syndrome (SS). Here, we provide the first identification of a Seckel Syndrome patient with mutations in ATRIP, the gene encoding ATR-Interacting Protein (ATRIP), the partner protein of ATR required for ATR stability and recruitment to the site of DNA damage. The patient has compound heterozygous mutations in ATRIP resulting in reduced ATRIP and ATR expression. A nonsense mutational change in one ATRIP allele results in a C-terminal truncated protein, which impairs ATR-ATRIP interaction; the other allele is abnormally spliced. We additionally describe two further unrelated patients native to the UK with the same novel, heterozygous mutations in ATR, which cause dramatically reduced ATR expression. All patient-derived cells showed defective DNA damage responses that can be attributed to impaired ATR-ATRIP function. Seckel Syndrome is characterised by microcephaly and growth delay, features also displayed by several related disorders including Majewski (microcephalic) osteodysplastic primordial dwarfism (MOPD) type II and Meier-Gorlin Syndrome (MGS). The identification of an ATRIP-deficient patient provides a novel genetic defect for Seckel Syndrome. Coupled with the identification of further ATR-deficient patients, our findings allow a spectrum of clinical features that can be ascribed to the ATR-ATRIP deficient sub-class of Seckel Syndrome. ATR-ATRIP patients are characterised by extremely severe microcephaly and growth delay, microtia (small ears), micrognathia (small and receding chin), and dental crowding. While aberrant bone development was mild in the original ATR-SS patient, some of the patients described here display skeletal abnormalities including, in one patient, small patellae, a feature characteristically observed in Meier-Gorlin Syndrome. Collectively, our analysis exposes an overlapping clinical manifestation between the disorders but allows an expanded spectrum of clinical features for ATR-ATRIP Seckel Syndrome to be defined.

摘要

先前曾有报道称,在两个表现出 Seckel 综合征(SS)的相关家族中,存在 Ataxia-Telangiectasia 和 RAD3 相关(ATR)基因的纯合突变。在这里,我们首次发现了一名 Seckel 综合征患者存在 ATRIP 基因突变,该基因编码 ATR 相互作用蛋白(ATRIP),ATRIP 是 ATR 的结合蛋白,对于 ATR 的稳定性和募集到 DNA 损伤部位是必需的。该患者在 ATRIP 基因上存在复合杂合突变,导致 ATRIP 和 ATR 的表达减少。一个 ATRIP 等位基因上的无义突变导致 C 端截短蛋白,从而损害 ATR-ATRIP 相互作用;另一个等位基因发生异常剪接。我们还描述了另外两名来自英国的无关患者,他们在 ATR 上具有相同的新型杂合突变,这导致 ATR 的表达显著减少。所有患者来源的细胞均显示出 DNA 损伤反应缺陷,这可归因于 ATR-ATRIP 功能受损。Seckel 综合征的特征是小头畸形和生长迟缓,其他相关疾病也具有这些特征,包括 Majewski(小头)骨发育不良性原基性侏儒症(MOPD)II 型和 Meier-Gorlin 综合征(MGS)。ATRIP 缺陷患者的鉴定为 Seckel 综合征提供了一种新的遗传缺陷。结合进一步的 ATR 缺陷患者的鉴定,我们的研究结果可以将其归因于 ATR-ATRIP 缺陷型 Seckel 综合征的一类临床特征。ATR-ATRIP 患者的特征是严重的小头畸形和生长迟缓、小耳、小下颌、牙齿拥挤。尽管原始 ATR-SS 患者的骨骼发育异常轻微,但这里描述的一些患者表现出骨骼异常,包括一名患者的小髌骨,这是 Meier-Gorlin 综合征的典型特征。总之,我们的分析揭示了这些疾病之间存在重叠的临床表现,但同时也定义了 ATR-ATRIP Seckel 综合征的扩展的临床特征谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e43/3493446/64ca29e1ed4e/pgen.1002945.g001.jpg

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