Fu C Y, Zhang S J, Luo S Y, Wang J, Yang Q, Xie B B, Chen S K
Department of Genetics and Metabolism, Children's Hospital, Maternal and Child Health Hospital of Guangxi Zhuang Autonomous Region, Nanning 530003, China.
Zhonghua Er Ke Za Zhi. 2016 Jun 2;54(6):433-6. doi: 10.3760/cma.j.issn.0578-1310.2016.06.009.
To analyze molecular characteristics of 5 congenital hypothyroidism (CH) patients due to dyshormonogenesis.
We enrolled 5 CH patients due to dyshormonogenesis who were identified in Newborn Screening Center of Guangxi Zhuang Autonomous Region, China. Blood samples were collected from the patients and their parents, and genomic DNA was extracted from peripheral blood leukocytes. All exons of DUOX2, TG, TPO and NIS gene together with their exon-intron boundaries were screened by next-generation sequencing. Specimens from 100 normal controls were tested for these novel variations.
No TPO, NIS or TG gene mutations were identified. Direct sequencing of the DUOX2 gene revealed that patient 1 had a compound heterozygote for c. 3340delC and p. R683L, patient 2 was homozygous for p. K530X and patient 3 was a heterozygote for p. E879K. Both biallelic and monoallelic heterozygous mutations in DUOX2 were associated with transient CH. Novel mutations included c. 3340delC and p. R683L, analysis of 100 healthy subjects without thyroid disease did not show the same change.
Genetic analysis of TPO, NIS, DUOX2 and TG gene in 5 unrelated CH patients with thyroid dyshormonogenesis revealed two novel DUOX2 mutations, both were biallelic and monoallelic heterozygous mutations in DUOX2 associated with transient CH.
分析5例因激素合成障碍导致的先天性甲状腺功能减退症(CH)患者的分子特征。
我们纳入了在中国广西壮族自治区新生儿筛查中心确诊的5例因激素合成障碍导致的CH患者。采集患者及其父母的血样,从外周血白细胞中提取基因组DNA。通过下一代测序对DUOX2、TG、TPO和NIS基因的所有外显子及其外显子-内含子边界进行筛查。对100名正常对照的样本进行这些新变异的检测。
未发现TPO、NIS或TG基因突变。DUOX2基因的直接测序显示,患者1为c. 3340delC和p. R683L的复合杂合子,患者2为p. K530X纯合子,患者3为p. E879K杂合子。DUOX2的双等位基因和单等位基因杂合突变均与暂时性CH相关。新突变包括c. 3340delC和p. R683L,对100名无甲状腺疾病的健康受试者的分析未显示相同变化。
对5例不相关的因甲状腺激素合成障碍导致CH的患者进行TPO、NIS、DUOX2和TG基因的遗传分析,发现了两个新的DUOX2突变,均为与暂时性CH相关的DUOX2双等位基因和单等位基因杂合突变。