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由于基因中一种新的纯合子c.169C>T p.Arg57*变异导致的严重早发性肥胖和糖尿病酮症酸中毒。

Severe Early-Onset Obesity and Diabetic Ketoacidosis due to a Novel Homozygous c.169C>T p.Arg57* Variant in Gene.

作者信息

Cayir Atilla, Turkyilmaz Ayberk, Rabenstein Hannah, Guven Fadime, Karagoz Yuksel Sumeyra, Vuralli Dogus, Wabitsch Martin, Demirbilek Huseyin

机构信息

Department of Paediatric Endocrinology, Erzurum Training and Research Hospital, Erzurum, Turkey.

Department of Medical Genetics, Erzurum Training and Research Hospital, Erzurum, Turkey.

出版信息

Mol Syndromol. 2024 Mar;15(2):104-113. doi: 10.1159/000535253. Epub 2023 Dec 19.

Abstract

INTRODUCTION

Early-onset severe obesity is usually the result of an underlying genetic disorder, and several genes have recently been shown to cause syndromic and nonsyndromic forms of obesity. The " () gene encodes for a centrosomal and ciliary protein. Homozygous variants in the gene are extremely rare causes of early-onset severe monogenic obesity. Herein, we present a Turkish family with early-onset severe obesity with variable features.

METHODS

Sanger sequencing and whole-exome sequencing were performed to identify the genetic etiology in the family.

RESULTS

The index case was a 12-year-old female who presented with severe obesity (BMI of 62.7 kg/m), metabolic syndrome, and diabetic ketoacidosis. Her nonidentical twin female siblings also had early-onset severe obesity, metabolic syndrome, and diabetes. In addition, one of the affected siblings had situs inversus abdominalis, polysplenia, lumbar vertebral fusion, and abnormal lateralization. A novel homozygous nonsense (c.169C>T, p. Arg57*) pathogenic variant was detected in exon 3 of the gene in all affected members of the family. One unaffected sister and unaffected parents were heterozygous for the variant. This variant is predicted to cause a stop codon at amino acid sequence 57, leading to a truncated CEP19 protein.

DISCUSSION/CONCLUSION: Our study expands the phenotypical manifestations and variation database of variants. The findings in one of our patients reaffirm its role in the assembly and function of both motile and immotile cilia.

摘要

引言

早发性重度肥胖通常是由潜在的遗传疾病引起的,最近有几种基因被证明可导致肥胖的综合征型和非综合征型。“()基因编码一种中心体和纤毛蛋白。该基因的纯合变异是早发性重度单基因肥胖极为罕见的病因。在此,我们报告一个具有可变特征的早发性重度肥胖的土耳其家庭。

方法

进行桑格测序和全外显子组测序以确定该家庭的遗传病因。

结果

先证者是一名12岁女性,患有重度肥胖(体重指数为62.7kg/m)、代谢综合征和糖尿病酮症酸中毒。她的非同卵双胞胎女性兄弟姐妹也患有早发性重度肥胖、代谢综合征和糖尿病。此外,一名患病兄弟姐妹患有内脏反位、多脾、腰椎融合和异常定位。在该家庭所有患病成员的该基因第3外显子中检测到一个新的纯合无义(c.169C>T,p.Arg57*)致病变异。一名未患病的姐妹和未患病的父母为该变异的杂合子。该变异预计会在氨基酸序列57处产生一个终止密码子,导致CEP19蛋白截短。

讨论/结论:我们的研究扩展了该基因变异的表型表现和变异数据库。我们其中一名患者的研究结果再次证实了其在动纤毛和静纤毛组装及功能中的作用。

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