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Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10

More than 30 genes are known to take part in hypothalamic-pituitary-gonadal axis development at the date and role of more than 10 other genes is studied. Despite it about 50% of isolated hypogonadotropic hypogonadism cases still have no molecular genetic explanation. A number of specific association...

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Autores principales: Фролова, Е. Б., Петров, В. М., Васильев, Е. В., Макрецкая, Н. A., Пилипенко, О. В., Тюльпаков, А. Н.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Endocrinology Research Centre 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112924/
https://www.ncbi.nlm.nih.gov/pubmed/34766489
http://dx.doi.org/10.14341/probl12789
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author Фролова, Е. Б.
Петров, В. М.
Васильев, Е. В.
Макрецкая, Н. A.
Пилипенко, О. В.
Тюльпаков, А. Н.
author_facet Фролова, Е. Б.
Петров, В. М.
Васильев, Е. В.
Макрецкая, Н. A.
Пилипенко, О. В.
Тюльпаков, А. Н.
author_sort Фролова, Е. Б.
collection PubMed
description More than 30 genes are known to take part in hypothalamic-pituitary-gonadal axis development at the date and role of more than 10 other genes is studied. Despite it about 50% of isolated hypogonadotropic hypogonadism cases still have no molecular genetic explanation. A number of specific associations between iHH and different not-reproductive manifestations called syndromic forms are distinguished in general group of iHH. For example, the combination of Kalmann syndrome with sensorineural hearing loss is known as manifestation for defects of some genes encoding factors of neuronal migration; in patients with this phenotype CHD7, SOX10 genes defects are most frequent. However, defects in the genes of neuronal migration factors are characterized by a wide variability of phenotype, which is explained by the epigenetic mechanisms influence. Carriers of the mutation within the same family may lack some non-reproductive manifestations as well as hypogonadism. Here we present a case of Kalmann syndrome in monozygous twins, caused by a previously not described heterozygous mutation c.462C> G: p.I154M in the SOX10 gene in the absence of sensorineural hearing loss. The mutation was inherited from a father who has only isolated anosmia in the phenotype. This mutation was identified during full exome sequencing. This unique observation for Russia shows on the one hand expediency to check SOX10 sequence in addition to the other factors of neuronal migration and differentiation and, on the other hand, the prospect of full exome sequencing in a group of patients with undifferentiated iHH.
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spelling pubmed-91129242022-12-14 Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10 Фролова, Е. Б. Петров, В. М. Васильев, Е. В. Макрецкая, Н. A. Пилипенко, О. В. Тюльпаков, А. Н. Probl Endokrinol (Mosk) Research Article More than 30 genes are known to take part in hypothalamic-pituitary-gonadal axis development at the date and role of more than 10 other genes is studied. Despite it about 50% of isolated hypogonadotropic hypogonadism cases still have no molecular genetic explanation. A number of specific associations between iHH and different not-reproductive manifestations called syndromic forms are distinguished in general group of iHH. For example, the combination of Kalmann syndrome with sensorineural hearing loss is known as manifestation for defects of some genes encoding factors of neuronal migration; in patients with this phenotype CHD7, SOX10 genes defects are most frequent. However, defects in the genes of neuronal migration factors are characterized by a wide variability of phenotype, which is explained by the epigenetic mechanisms influence. Carriers of the mutation within the same family may lack some non-reproductive manifestations as well as hypogonadism. Here we present a case of Kalmann syndrome in monozygous twins, caused by a previously not described heterozygous mutation c.462C> G: p.I154M in the SOX10 gene in the absence of sensorineural hearing loss. The mutation was inherited from a father who has only isolated anosmia in the phenotype. This mutation was identified during full exome sequencing. This unique observation for Russia shows on the one hand expediency to check SOX10 sequence in addition to the other factors of neuronal migration and differentiation and, on the other hand, the prospect of full exome sequencing in a group of patients with undifferentiated iHH. Endocrinology Research Centre 2021-09-07 /pmc/articles/PMC9112924/ /pubmed/34766489 http://dx.doi.org/10.14341/probl12789 Text en Copyright © Endocrinology Research Centre, 2021 https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 License.
spellingShingle Research Article
Фролова, Е. Б.
Петров, В. М.
Васильев, Е. В.
Макрецкая, Н. A.
Пилипенко, О. В.
Тюльпаков, А. Н.
Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10
title Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10
title_full Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10
title_fullStr Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10
title_full_unstemmed Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10
title_short Синдром Кальмана у монозиготных близнецов как изолированное проявление дефекта гена SOX10
title_sort синдром кальмана у монозиготных близнецов как изолированное проявление дефекта гена sox10
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9112924/
https://www.ncbi.nlm.nih.gov/pubmed/34766489
http://dx.doi.org/10.14341/probl12789
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