Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development
Abstract Background Joubert syndrome and related disorders (JSRD) and Jeune syndrome are multisystem ciliopathy disorders with overlapping phenotypes. There are a growing number of genetic causes for these rare syndromes, including the recently described genes ARL3 and CEP120. Methods We sought to e...
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doaj-049a4f780d1e4f08a4dd1e6ebfd7ccd62020-12-13T12:19:47ZengBMCBMC Developmental Biology1471-213X2020-12-0120111110.1186/s12861-020-00231-3Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem developmentL. Powell0M. Barroso-Gil1G. J. Clowry2L. A. Devlin3E. Molinari4S. A. Ramsbottom5C. G. Miles6J. A. Sayer7Translational and Clinical Research Institute, Newcastle UniversityTranslational and Clinical Research Institute, Newcastle UniversityBiosciences Institute, Newcastle UniversityTranslational and Clinical Research Institute, Newcastle UniversityTranslational and Clinical Research Institute, Newcastle UniversityTranslational and Clinical Research Institute, Newcastle UniversityTranslational and Clinical Research Institute, Newcastle UniversityTranslational and Clinical Research Institute, Newcastle UniversityAbstract Background Joubert syndrome and related disorders (JSRD) and Jeune syndrome are multisystem ciliopathy disorders with overlapping phenotypes. There are a growing number of genetic causes for these rare syndromes, including the recently described genes ARL3 and CEP120. Methods We sought to explore the developmental expression patterns of ARL3 and CEP120 in humans to gain additional understanding of these genetic conditions. We used an RNA in situ detection technique called RNAscope to characterise ARL3 and CEP120 expression patterns in human embryos and foetuses in collaboration with the MRC-Wellcome Trust Human Developmental Biology Resource. Results Both ARL3 and CEP120 are expressed in early human brain development, including the cerebellum and in the developing retina and kidney, consistent with the clinical phenotypes seen with pathogenic variants in these genes. Conclusions This study provides insights into the potential pathogenesis of JSRD by uncovering the spatial expression of two JSRD-causative genes during normal human development.https://doi.org/10.1186/s12861-020-00231-3CEP120ARL3FoetusDevelopmentRetinaKidney |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
L. Powell M. Barroso-Gil G. J. Clowry L. A. Devlin E. Molinari S. A. Ramsbottom C. G. Miles J. A. Sayer |
spellingShingle |
L. Powell M. Barroso-Gil G. J. Clowry L. A. Devlin E. Molinari S. A. Ramsbottom C. G. Miles J. A. Sayer Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development BMC Developmental Biology CEP120 ARL3 Foetus Development Retina Kidney |
author_facet |
L. Powell M. Barroso-Gil G. J. Clowry L. A. Devlin E. Molinari S. A. Ramsbottom C. G. Miles J. A. Sayer |
author_sort |
L. Powell |
title |
Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development |
title_short |
Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development |
title_full |
Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development |
title_fullStr |
Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development |
title_full_unstemmed |
Expression patterns of ciliopathy genes ARL3 and CEP120 reveal roles in multisystem development |
title_sort |
expression patterns of ciliopathy genes arl3 and cep120 reveal roles in multisystem development |
publisher |
BMC |
series |
BMC Developmental Biology |
issn |
1471-213X |
publishDate |
2020-12-01 |
description |
Abstract Background Joubert syndrome and related disorders (JSRD) and Jeune syndrome are multisystem ciliopathy disorders with overlapping phenotypes. There are a growing number of genetic causes for these rare syndromes, including the recently described genes ARL3 and CEP120. Methods We sought to explore the developmental expression patterns of ARL3 and CEP120 in humans to gain additional understanding of these genetic conditions. We used an RNA in situ detection technique called RNAscope to characterise ARL3 and CEP120 expression patterns in human embryos and foetuses in collaboration with the MRC-Wellcome Trust Human Developmental Biology Resource. Results Both ARL3 and CEP120 are expressed in early human brain development, including the cerebellum and in the developing retina and kidney, consistent with the clinical phenotypes seen with pathogenic variants in these genes. Conclusions This study provides insights into the potential pathogenesis of JSRD by uncovering the spatial expression of two JSRD-causative genes during normal human development. |
topic |
CEP120 ARL3 Foetus Development Retina Kidney |
url |
https://doi.org/10.1186/s12861-020-00231-3 |
work_keys_str_mv |
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