Prenatal diagnosis of a skeletal disorder characterized by rhizomelic shortening of limbs caused by compound heterozygous variants in the PKDCC gene: Case report and literature review.

IF 1.5 4区 医学 Q4 GENETICS & HEREDITY
Jing Wang, Huijun Yu, Xiaoying Zhang, Xiuyun Zhou, Ya Tan, Zhi Li, Ying Gu, Li Lin
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引用次数: 0

Abstract

Background: The protein kinase domain containing cytoplasmic (PKDCC) gene (OMIM#618821) is associated with bone development. Biallelic variants in the PKDCC gene can cause rhizomelic limb shortening with dysmorphic features.

Case report: A fetus was found to be rhizomelic limb shortening at 16 weeks of gestation and amniocentesis was performed at 19 weeks of gestation. Genomic DNA extracted from the amniotic fluid was subjected to chromosomal microarray analysis (CMA), and Trio-total whole-exome sequencing (Trio-WES). Sanger sequencing was used to verify the candidate pathogenic variants. CMA was normal, while Trio-WES identified two compound heterozygous variants in the PKDCC gene, namely c.417_c.423delCGGCGCG insTCATGGGCTCAGTACAC(p.G140fs*35) and c.345G>A (p.W115*,379). Then the fetus was aborted and the development of its bone cells were compared with that of a normal fetus of similar gestational age by histopathological examination. Clinical findings of the fetus were shortening humerus and femur, synophrys, much hair on the side face, simian line on the right palm, etc. Histopathological examination showed that the affected fetus had increased proliferative chondrocytes, widened proliferative bands, and delayed bone mineralization.

Conclusions: We reported a prenatal case of rhizomelic shortening of limbs caused by compound heterozygous variants in the PKDCC gene, which emphasized the important role of Trio-WES for diagnosis of skeletal dysplasia in fetuses.

由 PKDCC 基因复合杂合子变异引起的以根瘤性四肢短小为特征的骨骼疾病的产前诊断:病例报告和文献综述。
背景:含细胞质蛋白激酶域(PKDCC)基因(OMIM#618821)与骨骼发育有关。PKDCC 基因的双倍变异可导致肢体根状短缩,并伴有畸形特征:病例报告:一名胎儿在妊娠 16 周时被发现患有根状肢短小症,并于妊娠 19 周时进行了羊膜腔穿刺术。从羊水中提取的基因组 DNA 进行了染色体微阵列分析(CMA)和 Trio-total 全外显子组测序(Trio-WES)。桑格测序用于验证候选致病变体。CMA结果正常,而Trio-WES在PKDCC基因中发现了两个复合杂合变异,即c.417_c.423delCGGCGCG insTCATGGGCTCAGTACAC(p.G140fs*35)和c.345G>A(p.W115*,379)。然后将胎儿流产,并通过组织病理学检查将其骨细胞的发育情况与孕龄相近的正常胎儿进行比较。胎儿的临床表现为肱骨和股骨缩短、滑膜炎、侧颜多毛、右掌有猿纹等。组织病理学检查显示,患儿的软骨细胞增生增多,增生带增宽,骨矿化延迟:我们报告了一例由 PKDCC 基因复合杂合子变异引起的产前肢体根状短缩病例,强调了 Trio-WES 在诊断胎儿骨骼发育不良中的重要作用。
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来源期刊
Molecular Genetics & Genomic Medicine
Molecular Genetics & Genomic Medicine Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
4.20
自引率
0.00%
发文量
241
审稿时长
14 weeks
期刊介绍: Molecular Genetics & Genomic Medicine is a peer-reviewed journal for rapid dissemination of quality research related to the dynamically developing areas of human, molecular and medical genetics. The journal publishes original research articles covering findings in phenotypic, molecular, biological, and genomic aspects of genomic variation, inherited disorders and birth defects. The broad publishing spectrum of Molecular Genetics & Genomic Medicine includes rare and common disorders from diagnosis to treatment. Examples of appropriate articles include reports of novel disease genes, functional studies of genetic variants, in-depth genotype-phenotype studies, genomic analysis of inherited disorders, molecular diagnostic methods, medical bioinformatics, ethical, legal, and social implications (ELSI), and approaches to clinical diagnosis. Molecular Genetics & Genomic Medicine provides a scientific home for next generation sequencing studies of rare and common disorders, which will make research in this fascinating area easily and rapidly accessible to the scientific community. This will serve as the basis for translating next generation sequencing studies into individualized diagnostics and therapeutics, for day-to-day medical care. Molecular Genetics & Genomic Medicine publishes original research articles, reviews, and research methods papers, along with invited editorials and commentaries. Original research papers must report well-conducted research with conclusions supported by the data presented.
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