Mutant Prolactin Receptor and Familial Hyperprolactinemia
Mutant Prolactin Receptor and Familial Hyperprolactinemia
Hyperprolactinemia that is not associated with gestation or the puerperium is usually due to tumors in the anterior pituitary gland and occurs occasionally in hereditary multiple endocrine neoplasia syndromes. Here, we report data from three sisters with hyperprolactinemia, two of whom presented with oligomenorrhea and one with infertility. These symptoms were not associated with pituitary tumors or multiple endocrine neoplasia but were due to a heterozygous mutation in the prolactin receptor gene, PRLR, resulting in an amino acid change from histidine to arginine at codon 188 (His188Arg). This substitution disrupted the high-affinity ligand-binding interface of the prolactin receptor, resulting in a loss of downstream signaling by Janus kinase 2 (JAK2) and signal transducer and activator of transcription 5 (STAT5). Thus, the familial hyperprolactinemia appears to be due to a germline, loss-of-function mutation in PRLR, resulting in prolactin insensitivity.
- University of Oxford United Kingdom
- Structural Genomics Consortium Canada
- University of Dundee United Kingdom
- Medawar Building for Pathogen Research United Kingdom
- NHS Greater Glasgow and Clyde United Kingdom
Adult, Male, Janus kinase 2, Protein Conformation, Receptors, Prolactin, Sequence analysis, 610, DNA, Sequence Analysis, DNA, Signal transduction, Janus Kinase 2, STAT5 transcription factor, Prolactin, Pedigree, Hyperprolactinemia, Germ-line mutation, Protein conformation, Receptors, STAT5 Transcription Factor, Humans, Female, Germ-Line Mutation, Signal Transduction
Adult, Male, Janus kinase 2, Protein Conformation, Receptors, Prolactin, Sequence analysis, 610, DNA, Sequence Analysis, DNA, Signal transduction, Janus Kinase 2, STAT5 transcription factor, Prolactin, Pedigree, Hyperprolactinemia, Germ-line mutation, Protein conformation, Receptors, STAT5 Transcription Factor, Humans, Female, Germ-Line Mutation, Signal Transduction
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