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一个表现出生长和青春期发育延迟的家系中的生长激素突变体(R77C):突变体的结构分析及生物活性评估

GH mutant (R77C) in a pedigree presenting with the delay of growth and pubertal development: structural analysis of the mutant and evaluation of the biological activity.

作者信息

Petkovic Vibor, Thevis Mario, Lochmatter Didier, Besson Amélie, Eblé Andrée, Flück Christa E, Mullis Primus E

机构信息

University Children's Hospital, Pediatric Endocrinology, Diabetology and Metabolism, Inselspital, CH-3010 Bern, Switzerland.

出版信息

Eur J Endocrinol. 2007 Aug;157 Suppl 1:S67-74. doi: 10.1530/EJE-07-0339.

Abstract

A heterozygous missense mutation in the GH-1 gene converting codon 77 from arginine (R) to cysteine (C), which was previously reported to have some GH antagonistic effect, was identified in a Syrian family. The index patient, a boy, was referred for assessment of his short stature (-2.5 SDS) at the age of 6 years. His mother and grandfather were also carrying the same mutation, but did not differ in adult height from the other unaffected family members. Hormonal examination in all affected subjects revealed increased basal GH, low IGF-I concentrations, and subnormal IGF-I response in generation test leading to the diagnosis of partial GH insensitivity. However, GH receptor gene (GHR) sequencing demonstrated no abnormalities. As other family members carrying the GH-R77C form showed similar alterations at the hormonal level, but presented with normal final height, no GH therapy was given to the boy, but he was followed through his pubertal development which was delayed. At the age of 20 years he reached his final height, which was normal within his parental target height. Functional characterization of the GH-R77C, assessed through activation of Jak2/Stat5 pathway, revealed no differences in the bioactivity between wild-type-GH (wt-GH) and GH-R77C. Detailed structural analysis indicated that the structure of GH-R77C, in terms of disulfide bond formation, is almost identical to that of the wt-GH despite the introduced mutation (Cys77). Previous studies from our group demonstrated a reduced capability of GH-R77C to induce GHR/GH-binding protein (GHBP) gene transcription rate when compared with wt-GH. Therefore, reduced GHR/GHBP expression might well be the possible cause for the partial GH insensitivity found in our patients. In addition, this group of patients deserve further attention because they could represent a distinct clinical entity underlining that an altered GH peptide may also have a direct impact on GHR/GHBP gene expression causing partial GH insensitivity. This might be responsible for the delay of growth and pubertal development. Finally, we clearly demonstrate that GH-R77C is not invariably associated with short stature, but that great care needs to be taken in ascribing growth failure to various heterozygous mutations affecting the GH-IGF axis and that careful functional studies are mandatory.

摘要

在一个叙利亚家庭中发现了GH-1基因的杂合错义突变,该突变使密码子77处的精氨酸(R)转变为半胱氨酸(C),此前报道该突变具有一定的生长激素拮抗作用。索引患者是一名男孩,6岁时因身材矮小(-2.5 SDS)前来接受评估。他的母亲和祖父也携带相同的突变,但成年身高与其他未受影响的家庭成员没有差异。对所有受影响受试者的激素检查显示基础生长激素升高、胰岛素样生长因子-I(IGF-I)浓度降低,以及在生成试验中IGF-I反应低于正常水平,从而诊断为部分生长激素不敏感。然而,生长激素受体基因(GHR)测序未显示异常。由于携带GH-R77C形式的其他家庭成员在激素水平上表现出类似变化,但最终身高正常,因此未对该男孩进行生长激素治疗,而是对其青春期发育进行了跟踪,其青春期发育延迟。20岁时他达到了最终身高,在其父母目标身高范围内属于正常。通过Jak2/Stat5途径激活对GH-R77C进行功能表征,结果显示野生型生长激素(wt-GH)和GH-R77C之间的生物活性没有差异。详细的结构分析表明,尽管引入了突变(Cys77),但就二硫键形成而言,GH-R77C的结构与wt-GH几乎相同。我们小组之前的研究表明,与wt-GH相比,GH-R77C诱导GHR/生长激素结合蛋白(GHBP)基因转录率的能力降低。因此,GHR/GHBP表达降低很可能是我们患者中发现的部分生长激素不敏感的可能原因。此外,这组患者值得进一步关注,因为他们可能代表一种独特的临床实体,强调改变的生长激素肽也可能对GHR/GHBP基因表达产生直接影响,导致部分生长激素不敏感。这可能是生长和青春期发育延迟的原因。最后,我们清楚地证明,GH-R77C并非总是与身材矮小相关,但在将生长失败归因于影响生长激素-胰岛素样生长因子轴的各种杂合突变时需要格外谨慎,并且必须进行仔细的功能研究。

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