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Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity

CONTEXT: Severe forms of growth hormone insensitivity (GHI) are characterized by extreme short stature, dysmorphism, and metabolic anomalies. OBJECTIVE: This work aims to identify the genetic cause of growth failure in 3 “classical” GHI individuals. METHODS: A novel intronic growth hormone receptor...

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Autores principales: Cottrell, Emily, Maharaj, Avinaash, Williams, Jack, Chatterjee, Sumana, Cirillo, Grazia, Miraglia del Giudice, Emanuele, Festa, Adalgisa, Palumbo, Stefania, Capalbo, Donatella, Salerno, Mariacarolina, Pignata, Claudio, Savage, Martin O, Schilbach, Katharina, Bidlingmaier, Martin, Hwa, Vivian, Metherell, Louise A, Grandone, Anna, Storr, Helen L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8684449/
http://dx.doi.org/10.1210/clinem/dgab550
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author Cottrell, Emily
Maharaj, Avinaash
Williams, Jack
Chatterjee, Sumana
Cirillo, Grazia
Miraglia del Giudice, Emanuele
Festa, Adalgisa
Palumbo, Stefania
Capalbo, Donatella
Salerno, Mariacarolina
Pignata, Claudio
Savage, Martin O
Schilbach, Katharina
Bidlingmaier, Martin
Hwa, Vivian
Metherell, Louise A
Grandone, Anna
Storr, Helen L
author_facet Cottrell, Emily
Maharaj, Avinaash
Williams, Jack
Chatterjee, Sumana
Cirillo, Grazia
Miraglia del Giudice, Emanuele
Festa, Adalgisa
Palumbo, Stefania
Capalbo, Donatella
Salerno, Mariacarolina
Pignata, Claudio
Savage, Martin O
Schilbach, Katharina
Bidlingmaier, Martin
Hwa, Vivian
Metherell, Louise A
Grandone, Anna
Storr, Helen L
author_sort Cottrell, Emily
collection PubMed
description CONTEXT: Severe forms of growth hormone insensitivity (GHI) are characterized by extreme short stature, dysmorphism, and metabolic anomalies. OBJECTIVE: This work aims to identify the genetic cause of growth failure in 3 “classical” GHI individuals. METHODS: A novel intronic growth hormone receptor gene (GHR) variant was identified, and in vitro splicing assays confirmed aberrant splicing. A 6Ω pseudoexon GHR vector and patient fibroblast analysis assessed the consequences of the novel pseudoexon inclusion and the impact on GHR function. RESULTS: We identified a novel homozygous intronic GHR variant (g.5:42700940T > G, c.618+836T > G), 44 bp downstream of the previously recognized intronic 6Ψ GHR pseudoexon mutation in the index patient. Two siblings also harbored the novel intronic 6Ω pseudoexon GHR variant in compound heterozygosity with the known GHR c.181C > T (R43X) mutation. In vitro splicing analysis confirmed inclusion of a 151-bp mutant 6Ω pseudoexon not identified in wild-type constructs. Inclusion of the 6Ω pseudoexon causes a frameshift resulting in a nonfunctional truncated GHR lacking the transmembrane and intracellular domains. The truncated 6Ω pseudoexon protein demonstrated extracellular accumulation and diminished activation of STAT5B signaling following GH stimulation. CONCLUSION: Novel GHR 6Ω pseudoexon inclusion results in loss of GHR function consistent with a severe GHI phenotype. This represents a novel mechanism of Laron syndrome and is the first deep intronic variant identified causing severe postnatal growth failure. The 2 kindreds originate from the same town in Campania, Southern Italy, implying common ancestry. Our findings highlight the importance of studying variation in deep intronic regions as a cause of monogenic disorders.
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spelling pubmed-86844492021-12-20 Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity Cottrell, Emily Maharaj, Avinaash Williams, Jack Chatterjee, Sumana Cirillo, Grazia Miraglia del Giudice, Emanuele Festa, Adalgisa Palumbo, Stefania Capalbo, Donatella Salerno, Mariacarolina Pignata, Claudio Savage, Martin O Schilbach, Katharina Bidlingmaier, Martin Hwa, Vivian Metherell, Louise A Grandone, Anna Storr, Helen L J Clin Endocrinol Metab Online Only Articles CONTEXT: Severe forms of growth hormone insensitivity (GHI) are characterized by extreme short stature, dysmorphism, and metabolic anomalies. OBJECTIVE: This work aims to identify the genetic cause of growth failure in 3 “classical” GHI individuals. METHODS: A novel intronic growth hormone receptor gene (GHR) variant was identified, and in vitro splicing assays confirmed aberrant splicing. A 6Ω pseudoexon GHR vector and patient fibroblast analysis assessed the consequences of the novel pseudoexon inclusion and the impact on GHR function. RESULTS: We identified a novel homozygous intronic GHR variant (g.5:42700940T > G, c.618+836T > G), 44 bp downstream of the previously recognized intronic 6Ψ GHR pseudoexon mutation in the index patient. Two siblings also harbored the novel intronic 6Ω pseudoexon GHR variant in compound heterozygosity with the known GHR c.181C > T (R43X) mutation. In vitro splicing analysis confirmed inclusion of a 151-bp mutant 6Ω pseudoexon not identified in wild-type constructs. Inclusion of the 6Ω pseudoexon causes a frameshift resulting in a nonfunctional truncated GHR lacking the transmembrane and intracellular domains. The truncated 6Ω pseudoexon protein demonstrated extracellular accumulation and diminished activation of STAT5B signaling following GH stimulation. CONCLUSION: Novel GHR 6Ω pseudoexon inclusion results in loss of GHR function consistent with a severe GHI phenotype. This represents a novel mechanism of Laron syndrome and is the first deep intronic variant identified causing severe postnatal growth failure. The 2 kindreds originate from the same town in Campania, Southern Italy, implying common ancestry. Our findings highlight the importance of studying variation in deep intronic regions as a cause of monogenic disorders. Oxford University Press 2021-07-28 /pmc/articles/PMC8684449/ http://dx.doi.org/10.1210/clinem/dgab550 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the Endocrine Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Online Only Articles
Cottrell, Emily
Maharaj, Avinaash
Williams, Jack
Chatterjee, Sumana
Cirillo, Grazia
Miraglia del Giudice, Emanuele
Festa, Adalgisa
Palumbo, Stefania
Capalbo, Donatella
Salerno, Mariacarolina
Pignata, Claudio
Savage, Martin O
Schilbach, Katharina
Bidlingmaier, Martin
Hwa, Vivian
Metherell, Louise A
Grandone, Anna
Storr, Helen L
Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity
title Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity
title_full Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity
title_fullStr Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity
title_full_unstemmed Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity
title_short Growth Hormone Receptor (GHR) 6Ω Pseudoexon Activation: A Novel Cause of Severe Growth Hormone Insensitivity
title_sort growth hormone receptor (ghr) 6ω pseudoexon activation: a novel cause of severe growth hormone insensitivity
topic Online Only Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8684449/
http://dx.doi.org/10.1210/clinem/dgab550
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