Schönherr Nadine, Meyer Esther, Roos Andreas, Schmidt Angela, Wollmann Hartmut A, Eggermann Thomas
Institute of Human Genetics, Pauwelsstr 30, D-52074 Aachen, Germany.
J Med Genet. 2007 Jan;44(1):59-63. doi: 10.1136/jmg.2006.044370. Epub 2006 Sep 8.
Silver-Russell syndrome (SRS) is a heterogeneous disorder characterised by severe intrauterine and postnatal growth retardation, limb and body asymmetry, a typical facial appearance and less common dysmorphisms. Recently, epimutations and maternal duplications affecting the short arm of chromosome 11 have been shown to have a crucial role in the aetiology of the disease. Disturbances in the same genomic region cause the overgrowth disorder Beckwith-Wiedemann syndrome (BWS). In BWS, mutations in the telomeric as well as in the centromeric imprinting centres (ICR1 and ICR2) in 11p15 can be observed. In SRS, methylation defects in the imprinted region in 11p15 were considered to be restricted to the telomeric ICR1. They can be detected in about 30% of patients. This article reports on the first patient with SRS with a cryptic duplication restricted to the centromeric ICR2 domain in 11p15. The maternally inherited duplication in this patient included a region of 0.76-1 Mbp and affected the genes regulated by the ICR2, among them CDKN1C and LIT1. This study provides evidence for a role for this imprinting centre in the aetiology of SRS and shows that SRS presents a picture genetically opposite to that of BWS.
Silver-Russell综合征(SRS)是一种异质性疾病,其特征为严重的宫内和出生后生长迟缓、肢体和身体不对称、典型的面部外观以及较少见的畸形。最近研究表明,影响11号染色体短臂的表观突变和母源重复在该疾病的病因学中起关键作用。同一基因组区域的紊乱会导致过度生长疾病Beckwith-Wiedemann综合征(BWS)。在BWS中,可观察到11p15端粒以及着丝粒印记中心(ICR1和ICR2)的突变。在SRS中,11p15印记区域的甲基化缺陷被认为仅限于端粒ICR1。约30%的患者可检测到这种缺陷。本文报道了首例SRS患者,其存在局限于11p15着丝粒ICR2结构域的隐匿性重复。该患者母源遗传的重复区域为0.76 - 1 Mbp,影响了由ICR2调控的基因,其中包括CDKN1C和LIT1。本研究为该印记中心在SRS病因学中的作用提供了证据,并表明SRS呈现出与BWS在遗传方面相反的情况。