Contribution of LHX4 Mutations to Pituitary Deficits in a Cohort of 417 Unrelated Patients

Enzo Cohen, M. Maghnie, N. Collot, J. Léger, F. Dastot, M. Polak, S. Rose, P. Touraine, P. Duquesnoy, M. Tauber, B. Copin, A. Bertrand, F. Brioude, D. Larizza, T. Edouard, Laura G González Briceño, I. Netchine, I. Oliver-Petit, M. Sobrier, S. Amselem, M. Legendre
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引用次数: 20

Abstract

Context LHX4 encodes a LIM-homeodomain transcription factor that is implicated in early pituitary development. In humans, only 13 heterozygous LHX4 mutations have been associated with congenital hypopituitarism. Objective The aims of this study were to evaluate the prevalence of LHX4 mutations in patients with hypopituitarism, to define the associated phenotypes, and to characterize the functional impact of the identified variants and the respective role of the 2 LIM domains of LHX4. Design and Patients We screened 417 unrelated patients with isolated growth hormone deficiency or combined pituitary hormone deficiency associated with ectopic posterior pituitary and/or sella turcica anomalies for LHX4 mutations (Sanger sequencing). In vitro studies were performed to assess the functional consequences of the identified variants. Results We identified 7 heterozygous variations, including p.(Tyr131*), p.(Arg48Thrfs*104), c.606+1G>T, p.Arg65Val, p.Thr163Pro, p.Arg221Gln, and p.Arg235Gln), that were associated with variable expressivity; 5 of the 7 were also associated with incomplete penetrance. The p.(Tyr131*), p.(Arg48Thrfs*104), p.Ala65Val, p.Thr163Pro, and p.Arg221Gln LHX4 variants are unable to transactivate the POU1F1 and GH promoters. As suggested by transactivation, subcellular localization, and protein-protein interaction studies, p.Arg235Gln is probably a rare polymorphism. Coimmunoprecipitation studies identified LHX3 as a potential protein partner of LHX4. As revealed by functional studies of LIM-defective recombinant LHX4 proteins, the LIM1 and LIM2 domains are not redundant. Conclusion This study, performed in the largest cohort of patients screened so far for LHX4 mutations, describes 6 disease-causing mutations that are responsible for congenital hypopituitarism. LHX4 mutations were found to be associated with variable expressivity, and most of them with incomplete penetrance; their contribution to pituitary deficits that are associated with an ectopic posterior pituitary and/or a sella turcica defect is ∼1.4% in the 417 probands tested.
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LHX4突变对417例不相关患者垂体功能缺陷的影响
lhx4编码一个与垂体早期发育有关的lim同源结构域转录因子。在人类中,只有13个杂合LHX4突变与先天性垂体功能低下有关。目的本研究的目的是评估LHX4突变在垂体功能低下患者中的患病率,确定相关表型,并表征所鉴定的变异对功能的影响以及LHX4的2个LIM结构域的各自作用。设计和患者:我们筛选了417例与LHX4突变无关的单独生长激素缺乏或合并垂体激素缺乏与垂体后叶异位和/或蝶鞍异常相关的患者(Sanger测序)。进行体外研究以评估鉴定的变异的功能后果。结果共鉴定出7个杂合变异,包括p.(Tyr131*)、p.(Arg48Thrfs*104)、c.606+1G>T、p. arg65val、p. thr163pro、p. arg221gln和p. arg235gln,这些变异与表达性变化相关;7个中有5个也与不完全外显率有关。p.(Tyr131*)、p.(Arg48Thrfs*104)、p. ala65val、p. thr163pro和p. arg221gln LHX4变体不能反激活POU1F1和GH启动子。通过反活化、亚细胞定位和蛋白-蛋白相互作用研究表明,p.a g235gln可能是一种罕见的多态性。共免疫沉淀研究发现LHX3是LHX4的潜在蛋白伴侣。LIM1缺陷重组LHX4蛋白的功能研究表明,LIM1和LIM2结构域不是冗余的。本研究在迄今为止筛选LHX4突变的最大患者队列中进行,描述了导致先天性垂体功能低下的6种致病突变。发现LHX4突变与可变表达性相关,且大多数具有不完全外显性;在417个先证中,它们对与垂体后叶异位和/或蝶鞍缺损相关的垂体缺陷的贡献约为1.4%。
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