Windholz Jan, Kovacs Peter, Schlicke Marina, Franke Christin, Mahajan Anubha, Morris Andrew P, Lemke Johannes R, Klammt Jürgen, Kiess Wieland, Schöneberg Torsten, Pfäffle Roland, Körner Antje
Pediatric Research Center, University Hospital for Children and Adolescents, Medical Faculty, University of Leipzig, Leipzig.
Leipzig University Medical Center, IFB AdiposityDiseases, University of Leipzig, Leipzig.
J Pediatr Endocrinol Metab. 2017 May 1;30(5):507-515. doi: 10.1515/jpem-2016-0435.
Obesity is genetically heterogeneous and highly heritable, although polymorphisms explain the phenotype in only a small proportion of obese children. We investigated the presence of copy number variations (CNVs) in "classical" genes known to be associated with (monogenic) early-onset obesity in children.
In 194 obese Caucasian children selected for early-onset and severe obesity from our obesity cohort we screened for deletions and/or duplications by multiplex ligation-dependent probe amplification reaction (MLPA). As we found one MLPA probe to interfere with a polymorphism in SIM1 we investigated its association with obesity and other phenotypic traits in our extended cohort of 2305 children.
In the selected subset of most severely obese children, we did not find CNV with MLPA in POMC, LEP, LEPR, MC4R, MC3R or MC2R genes. However, one SIM1 probe located at exon 9 gave signals suggestive for SIM1 insufficiency in 52 patients. Polymerase chain reaction (PCR) analysis identified this as a false positive result due to interference with single nucleotide polymorphism (SNP) rs3734354/rs3734355. We, therefore, investigated for associations of this polymorphism with obesity and metabolic traits in our extended cohort. We found rs3734354/rs3734355 to be associated with body mass index-standard deviation score (BMI-SDS) (p = 0.003), but not with parameters of insulin metabolism, blood pressure or food intake.
In our modest sample of severely obese children, we were unable to find CNVs in well-established monogenic obesity genes. Nevertheless, we found an association of rs3734354 in SIM1 with obesity of early-onset type in children, although not with obesity-related traits.
肥胖具有遗传异质性且高度可遗传,尽管基因多态性仅能解释一小部分肥胖儿童的表型。我们研究了已知与儿童(单基因)早发性肥胖相关的“经典”基因中拷贝数变异(CNV)的存在情况。
从我们的肥胖队列中选取194名早发性和重度肥胖的白种儿童,通过多重连接依赖探针扩增反应(MLPA)筛选缺失和/或重复情况。由于我们发现一个MLPA探针与SIM1中的一个多态性相互干扰,因此在我们2305名儿童的扩展队列中研究了其与肥胖及其他表型特征的关联。
在所选的最严重肥胖儿童子集中,我们未在POMC、LEP、LEPR、MC4R、MC3R或MC2R基因中发现MLPA检测到的CNV。然而,位于外显子9的一个SIM1探针在52名患者中给出了提示SIM1功能不足的信号。聚合酶链反应(PCR)分析确定这是由于与单核苷酸多态性(SNP)rs3734354/rs3734355相互干扰导致的假阳性结果。因此,我们在扩展队列中研究了该多态性与肥胖及代谢特征的关联。我们发现rs3734354/rs3734355与体重指数标准差评分(BMI-SDS)相关(p = 0.003),但与胰岛素代谢参数、血压或食物摄入量无关。
在我们规模不大的重度肥胖儿童样本中,我们未能在已确定的单基因肥胖基因中发现CNV。尽管如此,我们发现SIM1中的rs3734354与儿童早发性肥胖相关,尽管与肥胖相关特征无关。