Pathogenic variants in RNPC3 are associated with hypopituitarism and primary ovarian insufficiency
- Creators
- Akin L.
- Rizzoti K.
- Gregory L. C.
- Corredor B.
- Le Quesne Stabej P.
- Williams H.
- Buonocore F.
- Mouilleron S.
- Capra V.
- McGlacken-Byrne S. M.
- Martos-Moreno G. A.
- Azmanov D. N.
- Kendirci M.
- Kurtoglu S.
- Suntharalingham J. P.
- Galichet C.
- Gustincich S.
- Tasic V.
- Achermann J. C.
- Accogli A.
- Filipovska A.
- Tuilpakov A.
- Maghnie M.
- Gucev Z.
- Gonen Z. B.
- Perez-Jurado L. A.
- Robinson I.
- Lovell-Badge R.
- Argente J.
- Dattani M. T.
- Others:
- Akin, L.
- Rizzoti, K.
- Gregory, L. C.
- Corredor, B.
- Le Quesne Stabej, P.
- Williams, H.
- Buonocore, F.
- Mouilleron, S.
- Capra, V.
- McGlacken-Byrne, S. M.
- Martos-Moreno, G. A.
- Azmanov, D. N.
- Kendirci, M.
- Kurtoglu, S.
- Suntharalingham, J. P.
- Galichet, C.
- Gustincich, S.
- Tasic, V.
- Achermann, J. C.
- Accogli, A.
- Filipovska, A.
- Tuilpakov, A.
- Maghnie, M.
- Gucev, Z.
- Gonen, Z. B.
- Perez-Jurado, L. A.
- Robinson, I.
- Lovell-Badge, R.
- Argente, J.
- Dattani, M. T.
Description
Purpose: We aimed to investigate the molecular basis underlying a novel phenotype including hypopituitarism associated with primary ovarian insufficiency. Methods: We used next-generation sequencing to identify variants in all pedigrees. Expression of Rnpc3/RNPC3 was analyzed by in situ hybridization on murine/human embryonic sections. CRISPR/Cas9 was used to generate mice carrying the p.Leu483Phe pathogenic variant in the conserved murine Rnpc3 RRM2 domain. Results: We described 15 patients from 9 pedigrees with biallelic pathogenic variants in RNPC3, encoding a specific protein component of the minor spliceosome, which is associated with a hypopituitary phenotype, including severe growth hormone (GH) deficiency, hypoprolactinemia, variable thyrotropin (also known as thyroid-stimulating hormone) deficiency, and anterior pituitary hypoplasia. Primary ovarian insufficiency was diagnosed in 8 of 9 affected females, whereas males had normal gonadal function. In addition, 2 affected males displayed normal growth when off GH treatment despite severe biochemical GH deficiency. In both mouse and human embryos, Rnpc3/RNPC3 was expressed in the developing forebrain, including the hypothalamus and Rathke's pouch. Female Rnpc3 mutant mice displayed a reduction in pituitary GH content but with no reproductive impairment in young mice. Male mice exhibited no obvious phenotype. Conclusion: Our findings suggest novel insights into the role of RNPC3 in female-specific gonadal function and emphasize a critical role for the minor spliceosome in pituitary and ovarian development and function.
Additional details
- URL
- http://hdl.handle.net/11567/1070296
- URN
- urn:oai:iris.unige.it:11567/1070296
- Origin repository
- UNIGE