Varon Raymonda, Dutrannoy Véronique, Weikert Georg, Tanzarella Caterina, Antoccia Antonio, Stöckl Lars, Spadoni Emanuela, Krüger Lars-Arne, di Masi Alessandra, Sperling Karl, Digweed Martin, Maraschio Paola
Institute of Human Genetics, Charité, Humboldt University, Augustenburger Platz 1, 13353 Berlin, Germany.
Hum Mol Genet. 2006 Mar 1;15(5):679-89. doi: 10.1093/hmg/ddi482. Epub 2006 Jan 13.
Hypomorphic mutations of the NBS1 gene are responsible for Nijmegen breakage syndrome (NBS), characterized by microcephaly, chromosomal instability, radiosensitivity, immunodeficiency and high cancer predisposition. Over 90% of NBS patients are homozygous for the 657Delta5 mutation and are of Slavic origin; however, 10 further truncating mutations have been identified in patients of other ethnic origin. Partially functional proteins produced by alternative initiation of translation, and possibly diminishing the severity of the NBS phenotype, have been described for several NBS1 mutations. Here, we report a 53-year-old NBS patient, homozygous for the NBS1 mutation, 742insGG, in exon 7 and who presents with a particularly mild phenotype. In an attempt to find a potential molecular explanation for the mild phenotype observed, we carried out a conventional semi-quantitative and quantitative RT-PCR analyses which revealed two transcripts of almost equal amounts in the patient and her parents--the expected full-length transcript carrying the 742insGG mutation and a second transcript with deleted exons 6 and 7. The transcript was also observed in controls and other NBS patients, however, at quantities more than 100-fold lower than that in the patient described here. Because the skipping of exons 6 and 7 results in an internal in-frame deletion, which eliminates the truncating GG-insertion, we propose that this transcript may code for a partially functional protein of approximately 70 kDa that could be responsible for the unusually mild NBS phenotype observed in this patient. Indeed, complementation analysis of null-mutant mouse cells indicates that the alternatively spliced mRNA codes for a protein with significant functional capacity.
NBS1基因的次等位基因突变会导致尼曼-匹克氏综合征(NBS),其特征为小头畸形、染色体不稳定、放射敏感性、免疫缺陷以及患癌易感性高。超过90%的NBS患者为657Delta5突变的纯合子,且具有斯拉夫血统;然而,在其他种族的患者中还发现了另外10种截短突变。已经报道了几种NBS1突变通过翻译起始替代产生部分功能蛋白,这可能会减轻NBS表型的严重程度。在此,我们报告一名53岁的NBS患者,其外显子7的NBS1基因突变为742insGG的纯合子,表现出特别轻微的表型。为了寻找所观察到的轻微表型的潜在分子解释,我们进行了传统的半定量和定量RT-PCR分析,结果显示患者及其父母中有两种几乎等量的转录本——携带742insGG突变的预期全长转录本和缺失外显子6和7的第二种转录本。在对照和其他NBS患者中也观察到了这种转录本,但其数量比此处描述的患者低100倍以上。由于外显子6和7的跳跃导致框内内部缺失,消除了截短的GG插入,我们提出这种转录本可能编码一种约70 kDa的部分功能蛋白,该蛋白可能是导致该患者观察到异常轻微NBS表型的原因。事实上,对无突变小鼠细胞的互补分析表明,可变剪接的mRNA编码一种具有显著功能能力的蛋白质。