Department of Pathology, Showa University Fujigaoka Hospital, Fujigaoka 1-30, Aoba-Ku, Yokohama, 227-8501, Japan.
Med Mol Morphol. 2021 Sep;54(3):275-280. doi: 10.1007/s00795-021-00287-5. Epub 2021 May 18.
Randomization of left-right body asymmetry, situs viscerum inversus (heterotaxy), is commonly associated with primary ciliary dyskinesia (PCD) resulting from an abnormal ciliary structure, with approximately 50% of PCD patients exhibiting organ laterality defects. I herein report an intrauterine fetal death case, in which an autopsy revealed two lobes of the bilateral lungs as well as heterotaxy of abdominal organs (right-sided spleen and inversion of the alimentary and biliary organs). Whole-exome sequencing (WES) identified a heterozygous single-nucleotide change (c.12775T>C) in exon 68 of the DNAH9 gene, which is a rare single-nucleotide polymorphism (SNP) of rs746081639 and results in the amino acid change of p.C4259R. WES also identified a rare SNP of rs763089682 (c.121G>A) in the RSPH1 gene that causes a heterozygous amino acid alteration of p.G41R. The frequencies of both SNPs, C in rs746081639 and A in rs763089682, are 0.00000824, and a polyphen-2 analysis predicted these amino acid changes to be probably damaging, with a score of 1.000. The combination of extremely rare SNPs in DNAH9 and RSPH1 genes might have been the possible mechanism underlying the development of the laterality defect in the present case.
随机化的左右身体不对称、内脏转位(异构)通常与原发性纤毛运动障碍(PCD)相关,这是由于纤毛结构异常引起的,约 50%的 PCD 患者存在器官侧位缺陷。本文报告了一例宫内胎儿死亡病例,尸检显示双侧肺有两个叶以及腹部器官异构(右侧脾和消化道及胆道器官反转)。全外显子组测序(WES)在 DNAH9 基因的第 68 外显子中发现了一个杂合单核苷酸变化(c.12775T>C),这是 rs746081639 的罕见单核苷酸多态性(SNP),导致氨基酸变化为 p.C4259R。WES 还在 RSPH1 基因中发现了一个罕见的 SNP rs763089682(c.121G>A),导致 p.G41R 的杂合氨基酸改变。这两个 SNP 的频率,rs746081639 中的 C 和 rs763089682 中的 A,均为 0.00000824,多态性分析预测这些氨基酸变化可能具有破坏性,得分 1.000。DNAH9 和 RSPH1 基因中极罕见 SNP 的组合可能是导致本病例侧位缺陷发展的可能机制。