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外显子组测序在不明原因小头畸形患者中对神经发育障碍的诊断率和新候选基因的研究。

Diagnostic yield and novel candidate genes for neurodevelopmental disorders by exome sequencing in an unselected cohort with microcephaly.

机构信息

Nanjing Key Laboratory of Pediatrics, Children's Hospital of Nanjing Medical University, Nanjing, China.

Department of Neurosurgery, Children's Hospital of Nanjing Medical University, Nanjing, China.

出版信息

BMC Genomics. 2023 Jul 27;24(1):422. doi: 10.1186/s12864-023-09505-z.

Abstract

OBJECTIVES

Microcephaly is caused by reduced brain volume and most usually associated with a variety of neurodevelopmental disorders (NDDs). To provide an overview of the diagnostic yield of whole exome sequencing (WES) and promote novel candidates in genetically unsolved families, we studied the clinical and genetic landscape of an unselected Chinese cohort of patients with microcephaly.

METHODS

We performed WES in an unselected cohort of 103 NDDs patients with microcephaly as one of the features. Full evaluation of potential novel candidate genes was applied in genetically undiagnosed families. Functional validations of selected variants were conducted in cultured cells. To augment the discovery of novel candidates, we queried our genomic sequencing data repository for additional likely disease-causing variants in the identified candidate genes.

RESULTS

In 65 families (63.1%), causative sequence variants (SVs) and clinically relevant copy number variants (CNVs) with a pathogenic or likely pathogenic (P/LP) level were identified. By incorporating coverage analysis to WES, a pathogenic or likely pathogenic CNV was detected in 15 families (16/103, 15.5%). In another eight families (8/103, 7.8%), we identified variants in newly reported gene (CCND2) and potential novel neurodevelopmental disorders /microcephaly candidate genes, which involved in cell cycle and division (PWP2, CCND2), CDC42/RAC signaling related actin cytoskeletal organization (DOCK9, RHOF), neurogenesis (ELAVL3, PPP1R9B, KCNH3) and transcription regulation (IRF2BP1). By looking into our data repository of 5066 families with NDDs, we identified additional two cases with variants in DOCK9 and PPP1R9B, respectively.

CONCLUSION

Our results expand the morbid genome of monogenic neurodevelopmental disorders and support the adoption of WES as a first-tier test for individuals with microcephaly.

摘要

目的

小头症是由脑容量减少引起的,通常与多种神经发育障碍(NDD)有关。为了全面了解全外显子组测序(WES)的诊断效果,并为遗传上未解决的家族中发现新的候选基因,我们研究了一组未经选择的中国小头症患者的临床和遗传特征。

方法

我们对 103 名 NDD 伴小头症患者进行了 WES 检测,这些患者均具有小头症这一特征。对遗传上未确诊的患者家族进行了全外显子组候选基因的全面评估。在培养的细胞中对选定变异进行了功能验证。为了增加新候选基因的发现,我们在我们的基因组测序数据存储库中查询了鉴定出的候选基因中可能导致疾病的其他变体。

结果

在 65 个家族(63.1%)中,确定了具有致病性或可能致病性(P/LP)水平的致病序列变异(SV)和临床相关拷贝数变异(CNV)。通过将覆盖分析纳入 WES,在 15 个家族(16/103,15.5%)中检测到致病性或可能致病性的 CNV。在另外 8 个家族(8/103,7.8%)中,我们鉴定了新报告基因(CCND2)和潜在新的神经发育障碍/小头症候选基因中的变异,这些基因涉及细胞周期和分裂(PWP2、CCND2)、CDC42/RAC 信号相关肌动蛋白细胞骨架组织(DOCK9、RHOF)、神经发生(ELAVL3、PPP1R9B、KCNH3)和转录调节(IRF2BP1)。通过研究我们 5066 个 NDD 家族的数据库,我们分别在 DOCK9 和 PPP1R9B 中发现了另外两例变异。

结论

我们的结果扩展了单基因神经发育障碍的致病基因组,并支持将 WES 作为小头症患者的一线检测方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46e0/10373276/ad1185fa18d5/12864_2023_9505_Fig1_HTML.jpg

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