Malvagia Sabrina, Poggi Giovanni Maria, Pasquini Elisabetta, Donati Maria Alice, Pela Ivana, Morrone Amelia, Zammarchi Enrico
Department of Paediatrics, University of Florence, 50132 Florence, Italy.
Pediatr Res. 2003 Nov;54(5):635-40. doi: 10.1203/01.PDR.0000084113.41375.1E. Epub 2003 Aug 6.
The POU1F1 gene encodes a transcription factor that is important for the development and differentiation of the cells producing GH, prolactin, and TSH in the anterior pituitary gland. Patients with POU1F1 mutations show a combined pituitary hormone deficiency with low or absent levels of GH, prolactin, and TSH. Fourteen mutations have been reported in the POU1F1 gene up to now. These genetic lesions can be inherited either in an autosomal dominant or an autosomal recessive mode. We report on the first Italian patient, a girl, affected by combined pituitary hormone deficiency. The patient was found to be positive for congenital hypothyroidism (with low TSH levels) at neonatal screening. Substitutive therapy was started, but subsequent growth was very poor, although psychomotor development was substantially normal. Hospitalized at 10 mo she showed hypotonic crises, growth retardation, delayed bone age, and facial dysmorphism. In addition to congenital hypothyroidism, GH and prolactin deficiencies were found. Mutation DNA analysis of the patient's POU1F1 gene identified the novel Q167K amino acid change at the heterozygous level. The highly conserved Q167 residue is located in the POU-specific domain. No mutation was detected in the other allele. DNA analysis in the proband's parents did not identify this amino acid substitution, suggesting a de novo genetic lesion. From these data it can be hypothesized that the Q167K mutation has a dominant negative effect.
POU1F1基因编码一种转录因子,该转录因子对于垂体前叶中产生生长激素(GH)、催乳素和促甲状腺激素(TSH)的细胞的发育和分化至关重要。POU1F1基因突变的患者表现出垂体激素联合缺乏,伴有GH、催乳素和TSH水平低下或缺失。截至目前,POU1F1基因已报道了14种突变。这些基因损伤可通过常染色体显性或常染色体隐性模式遗传。我们报告了首例受垂体激素联合缺乏影响的意大利患者,一名女孩。该患者在新生儿筛查时被发现先天性甲状腺功能减退呈阳性(TSH水平低)。开始进行替代治疗,但随后的生长非常缓慢,尽管精神运动发育基本正常。10个月大时住院,她出现了低渗性危象、生长发育迟缓、骨龄延迟和面部畸形。除先天性甲状腺功能减退外,还发现了GH和催乳素缺乏。对患者POU1F1基因的突变DNA分析在杂合水平上鉴定出了新的Q167K氨基酸变化。高度保守的Q167残基位于POU特异性结构域。另一个等位基因未检测到突变。对先证者父母的DNA分析未发现这种氨基酸替代,提示为新发基因损伤。从这些数据可以推测,Q167K突变具有显性负效应。