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通过全外显子组测序鉴定与川崎病相关的罕见编码变异

Identification of rare coding variants associated with Kawasaki disease by whole exome sequencing.

作者信息

Kim Jae-Jung, Hong Young Mi, Yun Sin Weon, Lee Kyung-Yil, Yoon Kyung Lim, Han Myung-Ki, Kim Gi Beom, Kil Hong-Ryang, Song Min Seob, Lee Hyoung Doo, Ha Kee Soo, Jun Hyun Ok, Choi Byung-Ok, Oh Yeon-Mok, Yu Jeong Jin, Jang Gi Young, Lee Jong-Keuk

机构信息

Asan Institute for Life Sciences, Asan Medical Center, University of Ulsan College of Medicine, Seoul 05505, Korea.

Department of Pediatrics, Ewha Womans University Hospital, Seoul 07985, Korea.

出版信息

Genomics Inform. 2021 Dec;19(4):e38. doi: 10.5808/gi.21046. Epub 2021 Dec 31.

Abstract

Kawasaki disease (KD) is an acute pediatric vasculitis that affects genetically susceptible infants and children. To identify coding variants that influence susceptibility to KD, we conducted whole exome sequencing of 159 patients with KD and 902 controls, and performed a replication study in an independent 586 cases and 732 controls. We identified five rare coding variants in five genes (FCRLA, PTGER4, IL17F, CARD11, and SIGLEC10) associated with KD (odds ratio [OR], 1.18 to 4.41; p = 0.0027-0.031). We also performed association analysis in 26 KD patients with coronary artery aneurysms (CAAs; diameter > 5 mm) and 124 patients without CAAs (diameter < 3 mm), and identified another five rare coding variants in five genes (FGFR4, IL31RA, FNDC1, MMP8, and FOXN1), which may be associated with CAA (OR, 3.89 to 37.3; p = 0.0058-0.0261). These results provide insights into new candidate genes and genetic variants potentially involved in the development of KD and CAA.

摘要

川崎病(KD)是一种影响具有遗传易感性的婴幼儿的急性儿科血管炎。为了鉴定影响KD易感性的编码变异,我们对159例KD患者和902例对照进行了全外显子组测序,并在一个独立的586例病例和732例对照中进行了重复研究。我们在五个基因(FCRLA、PTGER4、IL17F、CARD11和SIGLEC10)中鉴定出五个与KD相关的罕见编码变异(比值比[OR],1.18至4.41;p = 0.0027 - 0.031)。我们还对26例患有冠状动脉瘤(CAA;直径>5 mm)的KD患者和124例无CAA(直径<3 mm)的患者进行了关联分析,并在五个基因(FGFR4、IL31RA、FNDC1、MMP8和FOXN1)中鉴定出另外五个罕见编码变异,这些变异可能与CAA相关(OR,3.89至37.3;p = 0.0058 - 0.0261)。这些结果为可能参与KD和CAA发生发展的新候选基因和遗传变异提供了见解。

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