Service de Médecine Génomique des Maladies Rares, APHP-Centre, Hôpital Necker-Enfants Malades, Paris, France.
Faculté de Médecine, Sorbonne Université, Paris, France.
Prenat Diagn. 2022 Jan;42(1):118-135. doi: 10.1002/pd.6074. Epub 2021 Dec 11.
Terminal 6q deletion is a rare genetic condition associated with a neurodevelopmental disorder characterized by intellectual disability and structural brain anomalies. Interestingly, a similar phenotype is observed in patients harboring pathogenic variants in the DLL1 gene. Our study aimed to further characterize the prenatal phenotype of this syndrome as well as to attempt to establish phenotype-genotype correlations.
We collected ultrasound findings from 22 fetuses diagnosed with a pure 6qter deletion. We reviewed the literature and compared our 22 cases with 14 fetuses previously reported as well as with patients with heterozygous DLL1 pathogenic variants.
Brain structural alterations were observed in all fetuses. The most common findings (>70%) were cerebellar hypoplasia, ventriculomegaly, and corpus callosum abnormalities. Gyration abnormalities were observed in 46% of cases. Occasional findings included cerebral heterotopia, aqueductal stenosis, vertebral malformations, dysmorphic features, and kidney abnormalities.
This is the first series of fetuses diagnosed with pure terminal 6q deletion. Based on our findings, we emphasize the prenatal sonographic anomalies, which may suggest the syndrome. Furthermore, this study highlights the importance of chromosomal microarray analysis to search for submicroscopic deletions of the 6q27 region involving the DLL1 gene in fetuses with these malformations.
6q 末端缺失是一种罕见的遗传病症,与以智力障碍和结构性脑异常为特征的神经发育障碍有关。有趣的是,携带 DLL1 基因致病性变异的患者也表现出类似的表型。我们的研究旨在进一步描述该综合征的产前表型,并尝试建立表型-基因型相关性。
我们收集了 22 例经诊断为单纯 6qter 缺失的胎儿的超声检查结果。我们回顾了文献,并将我们的 22 例病例与之前报道的 14 例胎儿以及携带杂合性 DLL1 致病性变异的患者进行了比较。
所有胎儿均观察到脑结构改变。最常见的发现(>70%)为小脑发育不良、脑室扩大和胼胝体异常。旋转变异在 46%的病例中观察到。偶尔的发现包括脑异位、导水管狭窄、椎体畸形、畸形特征和肾脏异常。
这是首例诊断为单纯 6q 末端缺失的胎儿系列。基于我们的发现,我们强调了可能提示该综合征的产前超声异常。此外,本研究强调了染色体微阵列分析的重要性,以便在有这些畸形的胎儿中寻找涉及 DLL1 基因的 6q27 区域的亚微观缺失。