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罕见基因突变导致的甲状旁腺疾病:综述。

Rare Gene Mutations Causing Parathyroid Disorders: A Review.

机构信息

Laboratory of Genomics and Translational Medicine, Gachon University College of Medicine, Incheon, Korea.

Department of Surgery, Gachon University College of Medicine, Incheon, Korea.

出版信息

Endocrinol Metab (Seoul). 2020 Mar;35(1):64-70. doi: 10.3803/EnM.2020.35.1.64.

Abstract

Since parathyroid hormone () was first isolated and its gene () was sequenced, only eight mutations have been discovered. The C18R mutation in , discovered in 1990, was the first to be reported. This autosomal dominant mutation induces endoplasmic reticulum stress and subsequent apoptosis in parathyroid cells. The next mutation, which was reported in 1992, is associated with exon skipping. The substitution of G with C in the first nucleotide of the second intron results in the exclusion of the second exon; since this exon includes the initiation codon, translation initiation is prevented. An S23P mutation and an S23X mutation at the same residue were reported in 1999 and 2012, respectively. Both mutations resulted in hypoparathyroidism. In 2008, a somatic R83X mutation was detected in a parathyroid adenoma tissue sample collected from a patient with hyperparathyroidism. In 2013, a heterozygous p.Met1_Asp6del mutation was incidentally discovered in a case-control study. Two years later, the R56C mutation was reported; this is the only reported hypoparathyroidism-causing mutation in the mature bioactive part of . In 2017, another heterozygous mutation, M14K, was detected. The discovery of these eight mutations in the gene has provided insights into its function and broadened our understanding of the molecular mechanisms underlying mutation progression. Further attempts to detect other such mutations will help elucidate the functions of PTH in a more sophisticated manner.

摘要

自甲状旁腺激素()首次被分离出来并对其基因()进行测序以来,仅发现了 8 种突变。1990 年发现的 中的 C18R 突变是首例报道的突变。这种常染色体显性突变会导致甲状旁腺细胞内质网应激和随后的细胞凋亡。1992 年报道的下一种突变与外显子跳跃有关。第二个内含子的第一个核苷酸处的 G 突变为 C,导致第二个外显子缺失;由于这个外显子包含起始密码子,因此阻止了翻译起始。1999 年和 2012 年分别报道了同一残基的 S23P 突变和 S23X 突变。这两种突变均导致甲状旁腺功能减退。2008 年,在一名甲状旁腺腺瘤患者的组织样本中检测到体细胞 R83X 突变。2013 年,在一项病例对照研究中偶然发现了杂合的 p.Met1_Asp6del 突变。两年后,报道了 R56C 突变;这是 在成熟生物活性部分中发现的唯一导致甲状旁腺功能减退的突变。2017 年,又发现了另一种杂合突变 M14K。这些在 基因中发现的 8 种突变提供了对其功能的深入了解,并拓宽了我们对突变进展的分子机制的理解。进一步尝试检测其他此类突变将有助于更精细地阐明 PTH 的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b92/7090289/f5ac9c655651/enm-35-64-g001.jpg

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