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IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction

CONTEXT: The X-linked immunoglobulin superfamily, member 1 (IGSF1), gene is highly expressed in the hypothalamus and in pituitary cells of the POU1F1 lineage. Human loss-of-function mutations in IGSF1 cause central hypothyroidism, hypoprolactinemia, and macroorchidism. Additionally, most affected ad...

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Autores principales: Joustra, Sjoerd D, Roelfsema, Ferdinand, van Trotsenburg, A S Paul, Schneider, Harald J, Kosilek, Robert P, Kroon, Herman M, Logan, John G, Butterfield, Natalie C, Zhou, Xiang, Toufaily, Chirine, Bak, Beata, Turgeon, Marc-Olivier, Brûlé, Emilie, Steyn, Frederik J, Gurnell, Mark, Koulouri, Olympia, Le Tissier, Paul, Fontanaud, Pierre, Duncan Bassett, J H, Williams, Graham R, Oostdijk, Wilma, Wit, Jan M, Pereira, Alberto M, Biermasz, Nienke R, Bernard, Daniel J, Schoenmakers, Nadia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7108761/
https://www.ncbi.nlm.nih.gov/pubmed/31650157
http://dx.doi.org/10.1210/clinem/dgz093
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author Joustra, Sjoerd D
Roelfsema, Ferdinand
van Trotsenburg, A S Paul
Schneider, Harald J
Kosilek, Robert P
Kroon, Herman M
Logan, John G
Butterfield, Natalie C
Zhou, Xiang
Toufaily, Chirine
Bak, Beata
Turgeon, Marc-Olivier
Brûlé, Emilie
Steyn, Frederik J
Gurnell, Mark
Koulouri, Olympia
Le Tissier, Paul
Fontanaud, Pierre
Duncan Bassett, J H
Williams, Graham R
Oostdijk, Wilma
Wit, Jan M
Pereira, Alberto M
Biermasz, Nienke R
Bernard, Daniel J
Schoenmakers, Nadia
author_facet Joustra, Sjoerd D
Roelfsema, Ferdinand
van Trotsenburg, A S Paul
Schneider, Harald J
Kosilek, Robert P
Kroon, Herman M
Logan, John G
Butterfield, Natalie C
Zhou, Xiang
Toufaily, Chirine
Bak, Beata
Turgeon, Marc-Olivier
Brûlé, Emilie
Steyn, Frederik J
Gurnell, Mark
Koulouri, Olympia
Le Tissier, Paul
Fontanaud, Pierre
Duncan Bassett, J H
Williams, Graham R
Oostdijk, Wilma
Wit, Jan M
Pereira, Alberto M
Biermasz, Nienke R
Bernard, Daniel J
Schoenmakers, Nadia
author_sort Joustra, Sjoerd D
collection PubMed
description CONTEXT: The X-linked immunoglobulin superfamily, member 1 (IGSF1), gene is highly expressed in the hypothalamus and in pituitary cells of the POU1F1 lineage. Human loss-of-function mutations in IGSF1 cause central hypothyroidism, hypoprolactinemia, and macroorchidism. Additionally, most affected adults exhibit higher than average IGF-1 levels and anecdotal reports describe acromegaloid features in older subjects. However, somatotrope function has not yet been formally evaluated in this condition. OBJECTIVE: We aimed to evaluate the role of IGSF1 in human and murine somatotrope function. PATIENTS, DESIGN, AND SETTING: We evaluated 21 adult males harboring hemizygous IGSF1 loss-of-function mutations for features of GH excess, in an academic clinical setting. MAIN OUTCOME MEASURES: We compared biochemical and tissue markers of GH excess in patients and controls, including 24-hour GH profile studies in 7 patients. Parallel studies were undertaken in male Igsf1-deficient mice and wild-type littermates. RESULTS: IGSF1-deficient adult male patients demonstrated acromegaloid facial features with increased head circumference as well as increased finger soft-tissue thickness. Median serum IGF-1 concentrations were elevated, and 24-hour GH profile studies confirmed 2- to 3-fold increased median basal, pulsatile, and total GH secretion. Male Igsf1-deficient mice also demonstrated features of GH excess with increased lean mass, organ size, and skeletal dimensions and elevated mean circulating IGF-1 and pituitary GH levels. CONCLUSIONS: We demonstrate somatotrope neurosecretory hyperfunction in IGSF1-deficient humans and mice. These observations define a hitherto uncharacterized role for IGSF1 in somatotropes and indicate that patients with IGSF1 mutations should be evaluated for long-term consequences of increased GH exposure.
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spelling pubmed-71087612020-04-06 IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction Joustra, Sjoerd D Roelfsema, Ferdinand van Trotsenburg, A S Paul Schneider, Harald J Kosilek, Robert P Kroon, Herman M Logan, John G Butterfield, Natalie C Zhou, Xiang Toufaily, Chirine Bak, Beata Turgeon, Marc-Olivier Brûlé, Emilie Steyn, Frederik J Gurnell, Mark Koulouri, Olympia Le Tissier, Paul Fontanaud, Pierre Duncan Bassett, J H Williams, Graham R Oostdijk, Wilma Wit, Jan M Pereira, Alberto M Biermasz, Nienke R Bernard, Daniel J Schoenmakers, Nadia J Clin Endocrinol Metab Online Only CONTEXT: The X-linked immunoglobulin superfamily, member 1 (IGSF1), gene is highly expressed in the hypothalamus and in pituitary cells of the POU1F1 lineage. Human loss-of-function mutations in IGSF1 cause central hypothyroidism, hypoprolactinemia, and macroorchidism. Additionally, most affected adults exhibit higher than average IGF-1 levels and anecdotal reports describe acromegaloid features in older subjects. However, somatotrope function has not yet been formally evaluated in this condition. OBJECTIVE: We aimed to evaluate the role of IGSF1 in human and murine somatotrope function. PATIENTS, DESIGN, AND SETTING: We evaluated 21 adult males harboring hemizygous IGSF1 loss-of-function mutations for features of GH excess, in an academic clinical setting. MAIN OUTCOME MEASURES: We compared biochemical and tissue markers of GH excess in patients and controls, including 24-hour GH profile studies in 7 patients. Parallel studies were undertaken in male Igsf1-deficient mice and wild-type littermates. RESULTS: IGSF1-deficient adult male patients demonstrated acromegaloid facial features with increased head circumference as well as increased finger soft-tissue thickness. Median serum IGF-1 concentrations were elevated, and 24-hour GH profile studies confirmed 2- to 3-fold increased median basal, pulsatile, and total GH secretion. Male Igsf1-deficient mice also demonstrated features of GH excess with increased lean mass, organ size, and skeletal dimensions and elevated mean circulating IGF-1 and pituitary GH levels. CONCLUSIONS: We demonstrate somatotrope neurosecretory hyperfunction in IGSF1-deficient humans and mice. These observations define a hitherto uncharacterized role for IGSF1 in somatotropes and indicate that patients with IGSF1 mutations should be evaluated for long-term consequences of increased GH exposure. Oxford University Press 2019-10-25 /pmc/articles/PMC7108761/ /pubmed/31650157 http://dx.doi.org/10.1210/clinem/dgz093 Text en © Endocrine Society 2019. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Online Only
Joustra, Sjoerd D
Roelfsema, Ferdinand
van Trotsenburg, A S Paul
Schneider, Harald J
Kosilek, Robert P
Kroon, Herman M
Logan, John G
Butterfield, Natalie C
Zhou, Xiang
Toufaily, Chirine
Bak, Beata
Turgeon, Marc-Olivier
Brûlé, Emilie
Steyn, Frederik J
Gurnell, Mark
Koulouri, Olympia
Le Tissier, Paul
Fontanaud, Pierre
Duncan Bassett, J H
Williams, Graham R
Oostdijk, Wilma
Wit, Jan M
Pereira, Alberto M
Biermasz, Nienke R
Bernard, Daniel J
Schoenmakers, Nadia
IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction
title IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction
title_full IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction
title_fullStr IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction
title_full_unstemmed IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction
title_short IGSF1 Deficiency Results in Human and Murine Somatotrope Neurosecretory Hyperfunction
title_sort igsf1 deficiency results in human and murine somatotrope neurosecretory hyperfunction
topic Online Only
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7108761/
https://www.ncbi.nlm.nih.gov/pubmed/31650157
http://dx.doi.org/10.1210/clinem/dgz093
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