Boonen Susanne Eriksen, Freschi Andrea, Christensen Rikke, Valente Federica Maria, Lildballe Dorte Launholt, Perone Lucia, Palumbo Orazio, Carella Massimo, Uldbjerg Niels, Sparago Angela, Riccio Andrea, Cerrato Flavia
Department of Clinical Genetics, Aarhus University Hospital, 8200 Aarhus N, Denmark.
Dipartimento di Scienze e Tecnologie Ambientali Biologiche e Farmaceutiche, Seconda Università degli Studi di Napoli, Caserta, Italy.
Clin Epigenetics. 2016 Jun 16;8:69. doi: 10.1186/s13148-016-0236-z. eCollection 2016.
The overgrowth-associated Beckwith-Wiedemann syndrome (BWS) and the undergrowth-associated Silver-Russell syndrome (SRS) are characterized by heterogeneous molecular defects affecting a large imprinted gene cluster at chromosome 11p15.5-p15.4. While maternal and paternal duplications of the entire cluster consistently result in SRS and BWS, respectively, the phenotypes associated with smaller duplications are difficult to predict due to the complexity of imprinting regulation. Here, we describe two cases with novel inherited partial duplications of the centromeric domain on chromosome 11p15 associated with contrasting growth phenotypes.
In a male patient affected by intrauterine growth restriction and postnatal short stature, we identified an in cis maternally inherited duplication of 0.88 Mb including the CDKN1C gene that was significantly up-regulated. The duplication did not include the long non-coding RNA KCNQ1OT1 nor the imprinting control region of the centromeric domain (KCNQ1OT1:TSS-DMR or ICR2) in which methylation was normal. In the mother, also referring a growth restriction phenotype in her infancy, the duplication was de novo and present on her paternal chromosome. A different in cis maternal duplication, 1.13 Mb long and including the abovementioned duplication, was observed in a child affected by Tetralogy of Fallot but with normal growth. In this case, the rearrangement also included most of the KCNQ1OT1 gene and resulted in ICR2 loss of methylation (LOM). In this second family, the mother carried the duplication on her paternal chromosome and showed a normal growth phenotype as well.
We report two novel in cis microduplications encompassing part of the centromeric domain of the 11p15.5-p15.4 imprinted gene cluster and both including the growth inhibitor CDKN1C gene. Likely, as a consequence of the differential involvement of the regulatory KCNQ1OT1 RNA and ICR2, the smaller duplication is associated with growth restriction on both maternal and paternal transmissions, while the larger duplication, although it includes the smaller one, does not result in any growth anomaly. Our study provides further insights into the phenotypes associated with imprinted gene alterations and highlights the importance of carefully evaluating the affected genes and regulatory elements for accurate genetic counselling of the 11p15 chromosomal rearrangements.
与过度生长相关的贝克威思-维德曼综合征(BWS)和与生长不足相关的西尔弗-拉塞尔综合征(SRS)的特征是分子缺陷异质性,影响染色体11p15.5 - p15.4上一个大的印记基因簇。虽然整个基因簇的母源和父源重复分别一致导致SRS和BWS,但由于印记调控的复杂性,与较小重复相关的表型难以预测。在此,我们描述了两例与生长表型相反相关的11号染色体p15着丝粒区域新的遗传性部分重复病例。
在一名受宫内生长受限和出生后身材矮小影响的男性患者中,我们鉴定出一个顺式母源遗传的0.88 Mb重复,包括显著上调的CDKN1C基因。该重复不包括长链非编码RNA KCNQ1OT1,也不包括着丝粒区域的印记控制区(KCNQ1OT1:TSS - DMR或ICR2),其中甲基化正常。在母亲中,她在婴儿期也有生长受限表型,该重复是新发的,存在于她的父源染色体上。在一名患有法洛四联症但生长正常的儿童中观察到另一个顺式母源重复,长1.13 Mb,包括上述重复。在这种情况下,重排还包括大部分KCNQ1OT1基因,并导致ICR2甲基化缺失(LOM)。在第二个家庭中,母亲在其父源染色体上携带该重复,并且也表现出正常的生长表型。
我们报告了两个新的顺式微重复,涵盖11p15.5 - p15.4印记基因簇着丝粒区域的一部分,并且都包括生长抑制基因CDKN1C。可能由于调控性KCNQ1OT1 RNA和ICR2的不同参与,较小的重复在母源和父源传递中都与生长受限相关,而较大的重复虽然包括较小的重复,但并未导致任何生长异常。我们的研究为与印记基因改变相关的表型提供了进一步的见解,并强调了仔细评估受影响基因和调控元件对于11p15染色体重排准确遗传咨询的重要性。