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Novel Mutations within the POU1F1 Gene Associated with Variable Combined Pituitary Hormone Deficiency
Author(s) -
James Turton,
Rachel Reynaud,
Ameeta Mehta,
John Torpiano,
Alexandru Saveanu,
Kathryn WoodsTownsend,
Anatoly Tiulpakov,
Vera Zdravković,
Jill Hamilton,
Simon Attard-Montalto,
Ray Parascandalo,
Cecil Vella,
Peter Clayton,
Stephen Shalet,
John Barton,
Thierry Brue,
Mehul Dattani
Publication year - 2005
Publication title -
the journal of clinical endocrinology and metabolism
Language(s) - English
Resource type - Journals
eISSN - 1945-7197
pISSN - 0021-972X
DOI - 10.1210/jc.2005-0570
Subject(s) - missense mutation , transactivation , endocrinology , medicine , mutation , biology , context (archaeology) , gene , prolactin , genetics , hormone , transcription factor , paleontology
Context: Mutations within the gene encoding the pituitary-specific transcription factor POU1F1 are associated with combined pituitary hormone deficiency (CPHD). Most of the affected individuals manifest GH, prolactin, and TSH deficiency. Objective: We have now screened 129 individuals with CPHD and isolated GH deficiency for mutations within POU1F1. Results: Causative mutations were identified in 10 of 129 individuals (7.8%). Of these, five patients harbored the dominant negative R271W mutation, which is a well-recognized mutational hot spot. We have also identified a second frequently occurring mutation, E230K, which appears to be common in Maltese patients. Additionally, we describe two novel mutations within POU1F1, an insertion of a single base pair (ins778A) and a missense mutation (R172Q). Functional studies have revealed that POU1F1 (E230K) is associated with a reduction in transactivation, although DNA-binding affinity is similar to the wild-type protein. On the other hand, POU1F1 (R172Q) is associated with a reduction in DNA binding and transactivation, whereas POU1F1 (ins778A) is associated with loss of DNA binding and a reduction in transactivation. Conclusions: Our data suggest that the phenotype associated with POU1F1 mutations may be more variable, with the occasional preservation of TSH secretion. Additionally, our data revealed POU1F1 mutations in three patients who were diagnosed as having ACTH deficiency but who, on further evaluation, were found to have normal cortisol secretion. Hence, elucidation of the genotype led to further evaluation of the phenotype, with the cessation of cortisol replacement that had been commenced unnecessarily. These data reflect the importance of mutational analysis in patients with CPHD.

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