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UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES

Research into the molecular genetics and pathomechanisms of ichthyoses have advanced considerably, resulting in the identification of several causative genes and molecules underlying the disease. In 2009, the First Ichthyosis Consensus Conference was held to establish a consensus for the nomenclatur...

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Autor principal: AKIYAMA, MASASHI
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nagoya University 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4831217/
https://www.ncbi.nlm.nih.gov/pubmed/21928690
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author AKIYAMA, MASASHI
author_facet AKIYAMA, MASASHI
author_sort AKIYAMA, MASASHI
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description Research into the molecular genetics and pathomechanisms of ichthyoses have advanced considerably, resulting in the identification of several causative genes and molecules underlying the disease. In 2009, the First Ichthyosis Consensus Conference was held to establish a consensus for the nomenclature and classification of inherited ichthyoses, by which an international consensus for the classification of inherited ichthyosis was achieved. In this review, the pathogeneses of various ichthyoses are summarized based on their revised classification and terminology. Skin barrier defects are involved in the pathogenesis of various types of ichthyosis. The known causative molecules underlying ichthyosis include ABCA12, lipoxygenase-3, 12R-lipoxygenase, CYP4F22, ichthyin and steroid sulfatase, all of which are thought to be related to the intercellular lipid layers. ABCA12 is a known keratinocyte lipid transporter associated with lipid transport in lamellar granules and a loss of ABCA12 function leads to defective lipid transport in the keratinocytes, resulting in the most severe, harlequin ichthyosis phenotype. Other causative molecules for ichthyoses are transglutaminase 1, keratins and filaggrin. Transglutaminase 1 plays a role in cornified cell envelope formation. Keratins 1, 10 and 2 are involved in the keratin network of suprabasal keratinocytes and filaggrin is essential for the formation of keratohyalin granules. It is important to obtain information concerning genetic defects and to elucidate ichthyotic disease pathomechanisms for the establishment of an effective therapy and beneficial genetic counseling, including a prenatal diagnosis for families affected by ichthyotic disease.
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spelling pubmed-48312172016-05-03 UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES AKIYAMA, MASASHI Nagoya J Med Sci Invited Review Article Research into the molecular genetics and pathomechanisms of ichthyoses have advanced considerably, resulting in the identification of several causative genes and molecules underlying the disease. In 2009, the First Ichthyosis Consensus Conference was held to establish a consensus for the nomenclature and classification of inherited ichthyoses, by which an international consensus for the classification of inherited ichthyosis was achieved. In this review, the pathogeneses of various ichthyoses are summarized based on their revised classification and terminology. Skin barrier defects are involved in the pathogenesis of various types of ichthyosis. The known causative molecules underlying ichthyosis include ABCA12, lipoxygenase-3, 12R-lipoxygenase, CYP4F22, ichthyin and steroid sulfatase, all of which are thought to be related to the intercellular lipid layers. ABCA12 is a known keratinocyte lipid transporter associated with lipid transport in lamellar granules and a loss of ABCA12 function leads to defective lipid transport in the keratinocytes, resulting in the most severe, harlequin ichthyosis phenotype. Other causative molecules for ichthyoses are transglutaminase 1, keratins and filaggrin. Transglutaminase 1 plays a role in cornified cell envelope formation. Keratins 1, 10 and 2 are involved in the keratin network of suprabasal keratinocytes and filaggrin is essential for the formation of keratohyalin granules. It is important to obtain information concerning genetic defects and to elucidate ichthyotic disease pathomechanisms for the establishment of an effective therapy and beneficial genetic counseling, including a prenatal diagnosis for families affected by ichthyotic disease. Nagoya University 2011-08 /pmc/articles/PMC4831217/ /pubmed/21928690 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. To view the details of this license, please visit (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Invited Review Article
AKIYAMA, MASASHI
UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES
title UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES
title_full UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES
title_fullStr UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES
title_full_unstemmed UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES
title_short UPDATED MOLECULAR GENETICS AND PATHOGENESIS OF ICHTHYOSES
title_sort updated molecular genetics and pathogenesis of ichthyoses
topic Invited Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4831217/
https://www.ncbi.nlm.nih.gov/pubmed/21928690
work_keys_str_mv AT akiyamamasashi updatedmoleculargeneticsandpathogenesisofichthyoses