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2
Progressive Development of PTH Resistance in Patients With Inactivating Mutations on the Maternal Allele of GNAS.GNAS母源等位基因失活突变患者中甲状旁腺激素抵抗的进展性发展
J Clin Endocrinol Metab. 2017 Jun 1;102(6):1844-1850. doi: 10.1210/jc.2016-3544.
3
The p.R56* mutation in PTHLH causes variable brachydactyly type E.甲状旁腺激素样激素(PTHLH)中的p.R56*突变导致可变型E型短指畸形。
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4
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5
Nonclassic features of pseudohypoparathyroidism type 1A.1A型假性甲状旁腺功能减退症的非典型特征。
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7
Variable expressivity of the phenotype in two families with brachydactyly type E, craniofacial dysmorphism, short stature and delayed bone age caused by novel heterozygous mutations in the PTHLH gene.两个患有E型短指、颅面畸形、身材矮小和骨龄延迟的家族中,由于PTHLH基因的新型杂合突变导致表型的可变表达。
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PTHLH 中的杂合剪接位点突变导致常染色体显性掌骨和跖骨缩短。

A Heterozygous Splice-Site Mutation in PTHLH Causes Autosomal Dominant Shortening of Metacarpals and Metatarsals.

机构信息

Endocrine Unit, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.

Department of Endocrinology, Universitair Ziekenhuis Brussels, Brussels, Belgium.

出版信息

J Bone Miner Res. 2019 Mar;34(3):482-489. doi: 10.1002/jbmr.3628. Epub 2019 Jan 2.

DOI:10.1002/jbmr.3628
PMID:30458061
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6637419/
Abstract

Short metacarpals and/or metatarsals are typically observed in pseudohypoparathyroidism (PHP) type Ia (PHP1A) or pseudo-PHP (PPHP), disorders caused by inactivating GNAS mutations involving exons encoding the alpha-subunit of the stimulatory G protein (Gsα). Skeletal abnormalities similar to those in PHP1A/PPHP were present in several members of an extended Belgian family without evidence for abnormal calcium and phosphate regulation. Direct nucleotide sequencing of genomic DNA from an affected individual (190/III-1) excluded GNAS mutations. Instead, whole exome analysis revealed a novel heterozygous A>G change at nucleotide -3 upstream of PTHLH exon 3 that encodes the last two amino acids of the prosequence and the mature PTHrP. The same nucleotide change was also found in her affected mother and maternal aunt (190/II-2, 190/II-1), and her affected twin sons (190/IV-1, 190/IV-2), but not in her unaffected daughter (190/IV-3) and sister (190/III-2). Complementary DNA derived from immortalized lymphoblastoid cells from 190/IV-2 (affected) and 190/IV-3 (unaffected) was PCR-amplified using forward primers located either in PTHLH exon 1 (noncoding) or exon 2 (presequence and most of the prosequence), and reverse primers located in the 3'-noncoding regions of exons 3 or 4. Nucleotide sequence analysis of these amplicons revealed for the affected son 190/IV-2, but not for the unaffected daughter 190/IV-3, a heterozygous insertion of genomic nucleotides -2 and -1 causing a frameshift after residue 34 of the pre/prosequence and thus 29 novel residues without homology to PTHrP or any other protein. Our findings extend previous reports indicating that PTHrP haploinsufficiency causes skeletal abnormalities similar to those observed with heterozygous GNAS mutations. © 2018 American Society for Bone and Mineral Research.

摘要

短掌骨和/或跖骨通常见于假性甲状旁腺功能减退症 (PHP) 1a 型 (PHP1A) 或假性 PHP (PPHP),这些疾病是由涉及编码刺激性 G 蛋白 (Gsα)α-亚单位的外显子失活的 GNAS 突变引起的。在一个比利时扩展家族的几个成员中存在与 PHP1A/PPHP 相似的骨骼异常,但没有证据表明钙和磷酸盐调节异常。对受影响个体 (190/III-1) 的基因组 DNA 进行直接核苷酸测序排除了 GNAS 突变。相反,外显子组分析显示 PTHLH 外显子 3 前的核苷酸 -3 上游存在一个新的杂合性 A>G 变化,该变化编码前导肽的最后两个氨基酸和成熟的 PTHrP。受影响的母亲和阿姨 (190/II-2, 190/II-1) 以及受影响的双胞胎儿子 (190/IV-1, 190/IV-2) 也发现了相同的核苷酸变化,但不受影响的女儿 (190/IV-3) 和妹妹 (190/III-2) 则没有。使用位于 PTHLH 外显子 1(非编码)或外显子 2(前导肽和大部分前肽)的正向引物和位于外显子 3 或 4 的 3'-非编码区的反向引物,从 190/IV-2(受影响)和 190/IV-3(未受影响)的永生化淋巴母细胞系中扩增出的 cDNA。对这些扩增子的核苷酸序列分析显示,受影响的儿子 190/IV-2 存在杂合性插入基因组核苷酸 -2 和 -1,导致前/前肽残基 34 后的移码,从而产生 29 个无同源性的新残基,与 PTHrP 或任何其他蛋白质均无同源性,但不受影响的女儿 190/IV-3 则没有。我们的发现扩展了先前的报告,表明 PTHrP 单倍不足导致与杂合性 GNAS 突变观察到的骨骼异常相似。 © 2018 美国骨骼与矿物质研究协会。