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Combined pituitary hormone deficiency caused by PROP1 mutations: update 20 years post-discovery
Fernanda A Correa1, Marilena Nakaguma1, João L O Madeira1
1Unidade de Endocrinologia do Desenvolvimento, Laboratório de Hormônios e Genética Molecular LIM/42, Disciplina de Endocrinologia, Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo, São Paulo, SP, Brasil.
Insights
PROP1 gene mutations are the most common genetic cause of combined pituitary hormone deficiencies (CPHD). These mutations can lead to variable pituitary gland size and late-onset adrenal insufficiency, requiring lifelong monitoring.
Area of Science:
- Endocrinology and Genetics
- Molecular Medicine
- Pediatric Endocrinology
Background:
- Combined Pituitary Hormone Deficiencies (CPHD) are often genetically determined.
- PROP1 gene mutations were first identified as a cause of CPHD 20 years ago.
- Bi-allelic PROP1 mutations are now the leading genetic cause of CPHD globally.
Purpose of the Study:
- To update the clinical and genetic characteristics of patients with PROP1 mutations.
- To summarize the phenotypes associated with various pathogenic PROP1 mutations.
- To highlight the need for ongoing patient surveillance due to evolving phenotypes.
Main Methods:
- Clinical and genetic data from 14 patients with 7 distinct PROP1 mutations were analyzed.
- Phenotypic features, including pituitary hormone deficiencies and imaging findings, were documented.
- Reported PROP1 variants were classified using ACMG-AMP guidelines.
Main Results:
- Patients exhibited deficiencies in GH, TSH, PRL, and gonadotropins, with some developing late ACTH deficiency.
- Pituitary imaging revealed a normal stalk and posterior lobe position, with variable anterior lobe size (hypoplastic, normal, or enlarged).
- Twenty-nine pathogenic, 2 likely pathogenic, and 2 variants of unknown significance for PROP1 were identified.
Conclusions:
- PROP1 mutations represent the most frequent cause of autosomal recessive CPHD, often associated with a ectopic posterior pituitary lobe.
- The phenotype associated with PROP1 mutations is expanding, including variable pituitary size and late-onset adrenal insufficiency.
- Permanent clinical surveillance is crucial for patients with PROP1 mutations due to potential late-developing deficiencies.
Abstract:
The first description of patients with combined pituitary hormone deficiencies (CPHD) caused by PROP1 mutations was made 20 years ago. Here we updated the clinical and genetic characteristics of patients with PROP1 mutations and summarized the phenotypes of 14 patients with 7 different pathogenic PROP1 mutations followed at the Hospital das Clínicas of the University of Sao Paulo. In addition to deficiencies in GH, TSH, PRL and gonadotropins some patients develop late ACTH deficiency. Therefore, patients with PROP1 mutations require permanent surveillance. On magnetic resonance imaging, the pituitary stalk is normal, and the posterior lobe is in the normal position. The anterior lobe in patients with PROP1 mutations is usually hypoplastic but may be normal or even enlarged. Bi-allelic PROP1 mutations are currently the most frequently recognized genetic cause of CPHD worldwide. PROP1 defects occur more frequently among offspring of consanguineous parents and familial cases, but they also occur in sporadic cases, especially in countries in which the prevalence of PROP1 mutations is relatively high. We classified all reported PROP1 variants described to date according to the American College of Medical Genetics and Genomics and the Association for Molecular Pathology (ACMG-AMP) guidelines: 29 were pathogenic, 2 were likely pathogenic, and 2 were of unknown significance. An expansion of the phenotype of patients with PROP1 mutations was observed since the first description 20 years ago: variable anterior pituitary size, different pathogenic mutations, and late development of ACTH deficiency. PROP1 mutations are the most common cause of autosomal recessive CPHD with a topic posterior pituitary lobe. Arch Endocrinol Metab. 2019;63(2):167-74.
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