Departments of Genetics, Yale School of Medicine, New Haven, CT, USA.
Biomedical Translational Research Institute, Jinan University, Guangzhou, China.
Genet Med. 2021 Mar;23(3):435-442. doi: 10.1038/s41436-020-01008-6. Epub 2020 Oct 26.
Pregnancy loss ranging from spontaneous abortion (SAB) to stillbirth can result from monogenic causes of Mendelian inheritance. This study evaluated the clinical application of exome sequencing (ES) in identifying the genetic etiology for pregnancy loss.
A cohort of 102 specimens from products of conception (POC) with normal karyotype and absence of pathogenic copy-number variants were selected for ES. Abnormality detection rate (ADR) and variants of diagnostic value correlated with SAB and stillbirth were evaluated.
ES detected 6 pathogenic variants, 16 likely pathogenic variants, and 17 variants of uncertain significance favor pathogenic (VUSfp) from this cohort. The ADR for pathogenic and likely pathogenic variants was 22% and reached 35% with the inclusion of VUSfp. The ADRs of SAB and stillbirth were 36% and 33%, respectively. Affected genes included those associated with multisystem abnormalities, neurodevelopmental disorders, cardiac anomalies, skeletal dysplasia, metabolic disorders, and renal diseases.
These results supported the clinical utility of ES for detecting monogenic etiology of pregnancy loss. The identification of disease-associated variants provided information for follow-up genetic counseling of recurrence risk and management of subsequent pregnancies. Discovery of novel variants could provide insight for underlying molecular mechanisms causing fetal death.
由孟德尔遗传方式的单基因引起的妊娠丢失,范围从自然流产(SAB)到死胎。本研究评估了外显子组测序(ES)在识别妊娠丢失遗传病因中的临床应用。
从正常核型且不存在致病性拷贝数变异的妊娠产物(POC)中选择了 102 个标本进行 ES。评估了异常检出率(ADR)和与 SAB 和死胎相关的具有诊断价值的变异。
ES 从该队列中检测到 6 个致病性变异、16 个可能致病性变异和 17 个可能致病性的不确定意义变异(VUSfp)。致病性和可能致病性变异的 ADR 为 22%,包含 VUSfp 后达到 35%。SAB 和死胎的 ADR 分别为 36%和 33%。受影响的基因包括与多系统异常、神经发育障碍、心脏异常、骨骼发育不良、代谢紊乱和肾脏疾病相关的基因。
这些结果支持 ES 用于检测妊娠丢失的单基因病因的临床实用性。疾病相关变异的鉴定为复发风险的后续遗传咨询和后续妊娠的管理提供了信息。新变异的发现可为导致胎儿死亡的潜在分子机制提供见解。