Pediatrics, Subdiv. Endocrinology, Erasmus University, Rotterdam, The Netherlands.
Clin Endocrinol (Oxf). 2013 Mar;78(3):415-23. doi: 10.1111/cen.12000.
Combined pituitary hormone deficiency (CPHD) is characterized by deficiencies of two or more anterior pituitary hormones. Its genetic cause is unknown in the majority of cases. The Hedgehog (Hh) signalling pathway has been implicated in disorders associated with pituitary development. Mutations in Sonic Hedgehog (SHH) have been described in patients with holoprosencephaly (with or without pituitary involvement). Hedgehog interacting protein (HHIP) has been associated with variations in adult height in genome wide association studies. We investigated whether mutations in these two genes of the Hh pathway, SHH and HHIP, could result in 'idiopathic' CPHD.
DESIGN/PATIENTS: We directly sequenced the coding regions and exon - intron boundaries of SHH and HHIP in 93 CPHD patients of the Dutch HYPOPIT study in whom mutations in the classical CPHD genes PROP1, POU1F1, HESX1, LHX3 and LHX4 had been ruled out. We compared the expression of Hh genes in Hep3B transfected cells between wild-type proteins and mutants.
We identified three single-nucleotide variants (p.Ala226Thr, c.1078C>T and c.*8G>T) in SHH. The function of the latter was severely affected in our in vitro assay. In HHIP, we detected a new activating variant c.-1G>C, which increases HHIP's inhibiting function on the Hh pathway.
Our results suggest involvement of the Hedgehog pathway in CPHD. We suggest that both SHH and HHIP are investigated as a second screening in CPHD, after mutations in the classical CPHD genes have been ruled out.
联合垂体激素缺乏症(CPHD)的特征是两种或多种前垂体激素缺乏。其遗传原因在大多数情况下尚不清楚。Hedgehog(Hh)信号通路与与垂体发育相关的疾病有关。已经在全前脑畸形(伴或不伴垂体受累)患者中描述了 Sonic Hedgehog(SHH)的突变。Hedgehog 相互作用蛋白(HHIP)与全基因组关联研究中的成人身高变异有关。我们研究了 Hh 通路中的这两个基因(SHH 和 HHIP)的突变是否会导致“特发性”CPHD。
设计/患者:我们直接对荷兰 HYPOPIT 研究中的 93 例 CPHD 患者的 SHH 和 HHIP 编码区和外显子-内含子边界进行了测序,这些患者中已经排除了经典 CPHD 基因 PROP1、POU1F1、HESX1、LHX3 和 LHX4 的突变。我们比较了野生型蛋白和突变体之间 Hep3B 转染细胞中 Hh 基因的表达。
我们在 SHH 中发现了三个单核苷酸变异(p.Ala226Thr、c.1078C>T 和 c.*8G>T)。我们的体外试验严重影响了后者的功能。在 HHIP 中,我们检测到一个新的激活变异 c.-1G>C,它增加了 HHIP 对 Hh 通路的抑制作用。
我们的结果表明 Hedgehog 通路参与了 CPHD。我们建议在排除经典 CPHD 基因的突变后,将 SHH 和 HHIP 均作为 CPHD 的第二种筛查方法进行研究。