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Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management

CONTEXT: Recent reports have proposed that sporadic or familial germline Xq26.3 microduplications involving the GPR101 gene are associated with early-onset X-linked acrogigantism (XLAG) with a female preponderance. CASE DESCRIPTION: A 4-year-old boy presented with rapid growth over the previous 2 ye...

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Autores principales: Rodd, Celia, Millette, Maude, Iacovazzo, Donato, Stiles, Craig E., Barry, Sayka, Evanson, Jane, Albrecht, Steffen, Caswell, Richard, Bunce, Benjamin, Jose, Sian, Trouillas, Jacqueline, Roncaroli, Federico, Sampson, Julian, Ellard, Sian, Korbonits, Márta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Endocrine Society 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4870851/
https://www.ncbi.nlm.nih.gov/pubmed/26982009
http://dx.doi.org/10.1210/jc.2015-4366
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author Rodd, Celia
Millette, Maude
Iacovazzo, Donato
Stiles, Craig E.
Barry, Sayka
Evanson, Jane
Albrecht, Steffen
Caswell, Richard
Bunce, Benjamin
Jose, Sian
Trouillas, Jacqueline
Roncaroli, Federico
Sampson, Julian
Ellard, Sian
Korbonits, Márta
author_facet Rodd, Celia
Millette, Maude
Iacovazzo, Donato
Stiles, Craig E.
Barry, Sayka
Evanson, Jane
Albrecht, Steffen
Caswell, Richard
Bunce, Benjamin
Jose, Sian
Trouillas, Jacqueline
Roncaroli, Federico
Sampson, Julian
Ellard, Sian
Korbonits, Márta
author_sort Rodd, Celia
collection PubMed
description CONTEXT: Recent reports have proposed that sporadic or familial germline Xq26.3 microduplications involving the GPR101 gene are associated with early-onset X-linked acrogigantism (XLAG) with a female preponderance. CASE DESCRIPTION: A 4-year-old boy presented with rapid growth over the previous 2 years. He complained of sporadic headaches and had coarse facial features. His height Z-score was +4.89, and weight Z-score was +5.57. Laboratory testing revealed elevated serum prolactin (185 μg/L; normal, <18 μg/L), IGF-1 (745 μg/L; normal, 64–369 μg/L), and fasting GH > 35.0 μg/L. Magnetic resonance imaging demonstrated a homogenous bulky pituitary gland (18 × 15 × 13 mm) without obvious adenoma. A pituitary biopsy showed hyperplastic pituitary tissue with enlarged cords of GH and prolactin cells. Germline PRKAR1A, MEN1, AIP, DICER1, CDKN1B, and somatic GNAS mutations were negative. Medical management was challenging until institution of continuous sc infusion of short-acting octreotide combined with sc pegvisomant and oral cabergoline. The patient remains well controlled with minimal side effects 7 years after presentation. His phenotype suggested XLAG, but his peripheral leukocyte-, saliva-, and buccal cell-derived DNA tested negative for microduplication in Xq26.3 or GPR101. However, DNA isolated from the pituitary tissue and forearm skin showed duplicated dosage of GPR101, suggesting that he is mosaic for this genetic abnormality. CONCLUSIONS: Our patient is the first to be described with somatic microduplication leading to typical XLAG phenotype. This patient demonstrates that a negative test for Xq26.3 microduplication or GPR101 duplication on peripheral blood DNA does not exclude the diagnosis of XLAG because it can result from a mosaic mutation affecting the pituitary.
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spelling pubmed-48708512016-05-25 Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management Rodd, Celia Millette, Maude Iacovazzo, Donato Stiles, Craig E. Barry, Sayka Evanson, Jane Albrecht, Steffen Caswell, Richard Bunce, Benjamin Jose, Sian Trouillas, Jacqueline Roncaroli, Federico Sampson, Julian Ellard, Sian Korbonits, Márta J Clin Endocrinol Metab Special Features CONTEXT: Recent reports have proposed that sporadic or familial germline Xq26.3 microduplications involving the GPR101 gene are associated with early-onset X-linked acrogigantism (XLAG) with a female preponderance. CASE DESCRIPTION: A 4-year-old boy presented with rapid growth over the previous 2 years. He complained of sporadic headaches and had coarse facial features. His height Z-score was +4.89, and weight Z-score was +5.57. Laboratory testing revealed elevated serum prolactin (185 μg/L; normal, <18 μg/L), IGF-1 (745 μg/L; normal, 64–369 μg/L), and fasting GH > 35.0 μg/L. Magnetic resonance imaging demonstrated a homogenous bulky pituitary gland (18 × 15 × 13 mm) without obvious adenoma. A pituitary biopsy showed hyperplastic pituitary tissue with enlarged cords of GH and prolactin cells. Germline PRKAR1A, MEN1, AIP, DICER1, CDKN1B, and somatic GNAS mutations were negative. Medical management was challenging until institution of continuous sc infusion of short-acting octreotide combined with sc pegvisomant and oral cabergoline. The patient remains well controlled with minimal side effects 7 years after presentation. His phenotype suggested XLAG, but his peripheral leukocyte-, saliva-, and buccal cell-derived DNA tested negative for microduplication in Xq26.3 or GPR101. However, DNA isolated from the pituitary tissue and forearm skin showed duplicated dosage of GPR101, suggesting that he is mosaic for this genetic abnormality. CONCLUSIONS: Our patient is the first to be described with somatic microduplication leading to typical XLAG phenotype. This patient demonstrates that a negative test for Xq26.3 microduplication or GPR101 duplication on peripheral blood DNA does not exclude the diagnosis of XLAG because it can result from a mosaic mutation affecting the pituitary. Endocrine Society 2016-05 2016-03-16 /pmc/articles/PMC4870851/ /pubmed/26982009 http://dx.doi.org/10.1210/jc.2015-4366 Text en https://creativecommons.org/licenses/by/4.0/ This article has been published under the terms of the Creative Commons Attribution License (CC-BY; https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Copyright for this article is retained by the author(s).
spellingShingle Special Features
Rodd, Celia
Millette, Maude
Iacovazzo, Donato
Stiles, Craig E.
Barry, Sayka
Evanson, Jane
Albrecht, Steffen
Caswell, Richard
Bunce, Benjamin
Jose, Sian
Trouillas, Jacqueline
Roncaroli, Federico
Sampson, Julian
Ellard, Sian
Korbonits, Márta
Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management
title Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management
title_full Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management
title_fullStr Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management
title_full_unstemmed Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management
title_short Somatic GPR101 Duplication Causing X-Linked Acrogigantism (XLAG)—Diagnosis and Management
title_sort somatic gpr101 duplication causing x-linked acrogigantism (xlag)—diagnosis and management
topic Special Features
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4870851/
https://www.ncbi.nlm.nih.gov/pubmed/26982009
http://dx.doi.org/10.1210/jc.2015-4366
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