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维甲酸代谢紊乱中的骨骼成熟加速:一例报告及文献综述

Accelerated Skeletal Maturation in Disorders of Retinoic Acid Metabolism: A Case Report and Focused Review of the Literature.

作者信息

Nilsson O, Isoherranen N, Guo M H, Lui J C, Jee Y H, Guttmann-Bauman I, Acerini C, Lee W, Allikmets R, Yanovski J A, Dauber A, Baron J

机构信息

Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD, USA.

Department of Pharmaceutics School of Pharmacy, University of Washington, Seattle, WA, USA.

出版信息

Horm Metab Res. 2016 Nov;48(11):737-744. doi: 10.1055/s-0042-114038. Epub 2016 Sep 2.

Abstract

Nutritional excess of vitamin A, a precursor for retinoic acid (RA), causes premature epiphyseal fusion, craniosynostosis, and light-dependent retinopathy. Similarly, homozygous loss-of-function mutations in CYP26B1, one of the major RA-metabolizing enzymes, cause advanced bone age, premature epiphyseal fusion, and craniosynostosis. In this paper, a patient with markedly accelerated skeletal and dental development, retinal scarring, and autism-spectrum disease is presented and the role of retinoic acid in longitudinal bone growth and skeletal maturation is reviewed. Genetic studies were carried out using SNP array and exome sequencing. RA isomers were measured in the patient, family members, and in 18 age-matched healthy children using high-performance liquid chromatography coupled to tandem mass spectrometry. A genomic SNP array identified a novel 8.3 megabase microdeletion on chromosome 10q23.2-23.33. The 79 deleted genes included and , both major RA-metabolizing enzymes. Exome sequencing did not detect any variants that were predicted to be deleterious in the remaining alleles of these genes or other known retinoic acid-metabolizing enzymes. The patient exhibited elevated plasma total RA (16.5 vs. 12.6±1.5 nM, mean±SD, subject vs. controls) and 13-RA (10.7 nM vs. 6.1±1.1). The findings support the hypothesis that elevated RA concentrations accelerate bone and dental maturation in humans. CYP26A1 and C1 haploinsufficiency may contribute to the elevated retinoic acid concentrations and clinical findings of the patient, although this phenotype has not been reported in other patients with similar deletions, suggesting that other unknown genetic or environmental factors may also contribute.

摘要

视黄酸(RA)的前体维生素A营养过剩会导致骨骺过早融合、颅缝早闭和光依赖性视网膜病变。同样,主要的RA代谢酶之一CYP26B1的纯合功能丧失突变会导致骨龄提前、骨骺过早融合和颅缝早闭。本文介绍了一名骨骼和牙齿发育明显加速、视网膜瘢痕形成且患有自闭症谱系障碍的患者,并综述了视黄酸在纵向骨生长和骨骼成熟中的作用。使用单核苷酸多态性(SNP)阵列和外显子组测序进行了基因研究。使用高效液相色谱-串联质谱法在患者、家庭成员以及18名年龄匹配的健康儿童中测量了RA异构体。基因组SNP阵列在染色体10q23.2 - 23.33上鉴定出一个新的8.3兆碱基微缺失。79个缺失基因包括 和 ,二者均为主要的RA代谢酶。外显子组测序未在这些基因或其他已知视黄酸代谢酶的其余等位基因中检测到任何预测为有害的变异。该患者血浆总RA水平升高(16.5对12.6±1.5 nM,均值±标准差,患者对对照组)以及13 - RA升高(10.7 nM对6.1±1.1)。这些发现支持了RA浓度升高会加速人类骨骼和牙齿成熟这一假说。CYP26A1和C1单倍体不足可能导致了该患者视黄酸浓度升高和临床症状,尽管在其他有类似缺失的患者中尚未报道过这种表型,这表明其他未知的遗传或环境因素可能也起了作用。

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