Cargando…
MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis
AIMS: Tuberous sclerosis complex (TSC) is a genetic disorder associated with dysregulation of the mechanistic target of rapamycin complex 1 (mTORC1) signalling pathway. Neurodevelopmental disorders, frequently present in TSC, are linked to cortical tubers in the brain. We previously reported microRN...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8519131/ https://www.ncbi.nlm.nih.gov/pubmed/33942341 http://dx.doi.org/10.1111/nan.12717 |
_version_ | 1784584387816325120 |
---|---|
author | Korotkov, Anatoly Sim, Nam Suk Luinenburg, Mark J. Anink, Jasper J. van Scheppingen, Jackelien Zimmer, Till S. Bongaarts, Anika Broekaart, Diede W. M. Mijnsbergen, Caroline Jansen, Floor E. Van Hecke, Wim Spliet, Wim G. M. van Rijen, Peter C. Feucht, Martha Hainfellner, Johannes A. Kršek, Pavel Zamecnik, Josef Crino, Peter B. Kotulska, Katarzyna Lagae, Lieven Jansen, Anna C. Kwiatkowski, David J. Jozwiak, Sergiusz Curatolo, Paolo Mühlebner, Angelika Lee, Jeong H. Mills, James D. van Vliet, Erwin A. Aronica, Eleonora |
author_facet | Korotkov, Anatoly Sim, Nam Suk Luinenburg, Mark J. Anink, Jasper J. van Scheppingen, Jackelien Zimmer, Till S. Bongaarts, Anika Broekaart, Diede W. M. Mijnsbergen, Caroline Jansen, Floor E. Van Hecke, Wim Spliet, Wim G. M. van Rijen, Peter C. Feucht, Martha Hainfellner, Johannes A. Kršek, Pavel Zamecnik, Josef Crino, Peter B. Kotulska, Katarzyna Lagae, Lieven Jansen, Anna C. Kwiatkowski, David J. Jozwiak, Sergiusz Curatolo, Paolo Mühlebner, Angelika Lee, Jeong H. Mills, James D. van Vliet, Erwin A. Aronica, Eleonora |
author_sort | Korotkov, Anatoly |
collection | PubMed |
description | AIMS: Tuberous sclerosis complex (TSC) is a genetic disorder associated with dysregulation of the mechanistic target of rapamycin complex 1 (mTORC1) signalling pathway. Neurodevelopmental disorders, frequently present in TSC, are linked to cortical tubers in the brain. We previously reported microRNA‐34a (miR‐34a) among the most upregulated miRs in tubers. Here, we characterised miR‐34a expression in tubers with the focus on the early brain development and assessed the regulation of mTORC1 pathway and corticogenesis by miR‐34a. METHODS: We analysed the expression of miR‐34a in resected cortical tubers (n = 37) compared with autopsy‐derived control tissue (n = 27). The effect of miR‐34a overexpression on corticogenesis was assessed in mice at E18. The regulation of the mTORC1 pathway and the expression of the bioinformatically predicted target genes were assessed in primary astrocyte cultures from three patients with TSC and in SH‐SY5Y cells following miR‐34a transfection. RESULTS: The peak of miR‐34a overexpression in tubers was observed during infancy, concomitant with the presence of pathological markers, particularly in giant cells and dysmorphic neurons. miR‐34a was also strongly expressed in foetal TSC cortex. Overexpression of miR‐34a in mouse embryos decreased the percentage of cells migrated to the cortical plate. The transfection of miR‐34a mimic in TSC astrocytes negatively regulated mTORC1 and decreased the expression of the target genes RAS related (RRAS) and NOTCH1. CONCLUSIONS: MicroRNA‐34a is most highly overexpressed in tubers during foetal and early postnatal brain development. miR‐34a can negatively regulate mTORC1; however, it may also contribute to abnormal corticogenesis in TSC. |
format | Online Article Text |
id | pubmed-8519131 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-85191312021-10-22 MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis Korotkov, Anatoly Sim, Nam Suk Luinenburg, Mark J. Anink, Jasper J. van Scheppingen, Jackelien Zimmer, Till S. Bongaarts, Anika Broekaart, Diede W. M. Mijnsbergen, Caroline Jansen, Floor E. Van Hecke, Wim Spliet, Wim G. M. van Rijen, Peter C. Feucht, Martha Hainfellner, Johannes A. Kršek, Pavel Zamecnik, Josef Crino, Peter B. Kotulska, Katarzyna Lagae, Lieven Jansen, Anna C. Kwiatkowski, David J. Jozwiak, Sergiusz Curatolo, Paolo Mühlebner, Angelika Lee, Jeong H. Mills, James D. van Vliet, Erwin A. Aronica, Eleonora Neuropathol Appl Neurobiol Original Articles AIMS: Tuberous sclerosis complex (TSC) is a genetic disorder associated with dysregulation of the mechanistic target of rapamycin complex 1 (mTORC1) signalling pathway. Neurodevelopmental disorders, frequently present in TSC, are linked to cortical tubers in the brain. We previously reported microRNA‐34a (miR‐34a) among the most upregulated miRs in tubers. Here, we characterised miR‐34a expression in tubers with the focus on the early brain development and assessed the regulation of mTORC1 pathway and corticogenesis by miR‐34a. METHODS: We analysed the expression of miR‐34a in resected cortical tubers (n = 37) compared with autopsy‐derived control tissue (n = 27). The effect of miR‐34a overexpression on corticogenesis was assessed in mice at E18. The regulation of the mTORC1 pathway and the expression of the bioinformatically predicted target genes were assessed in primary astrocyte cultures from three patients with TSC and in SH‐SY5Y cells following miR‐34a transfection. RESULTS: The peak of miR‐34a overexpression in tubers was observed during infancy, concomitant with the presence of pathological markers, particularly in giant cells and dysmorphic neurons. miR‐34a was also strongly expressed in foetal TSC cortex. Overexpression of miR‐34a in mouse embryos decreased the percentage of cells migrated to the cortical plate. The transfection of miR‐34a mimic in TSC astrocytes negatively regulated mTORC1 and decreased the expression of the target genes RAS related (RRAS) and NOTCH1. CONCLUSIONS: MicroRNA‐34a is most highly overexpressed in tubers during foetal and early postnatal brain development. miR‐34a can negatively regulate mTORC1; however, it may also contribute to abnormal corticogenesis in TSC. John Wiley and Sons Inc. 2021-06-14 2021-10 /pmc/articles/PMC8519131/ /pubmed/33942341 http://dx.doi.org/10.1111/nan.12717 Text en © 2021 The Authors. Neuropathology and Applied Neurobiology published by John Wiley & Sons Ltd on behalf of British Neuropathological Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made. |
spellingShingle | Original Articles Korotkov, Anatoly Sim, Nam Suk Luinenburg, Mark J. Anink, Jasper J. van Scheppingen, Jackelien Zimmer, Till S. Bongaarts, Anika Broekaart, Diede W. M. Mijnsbergen, Caroline Jansen, Floor E. Van Hecke, Wim Spliet, Wim G. M. van Rijen, Peter C. Feucht, Martha Hainfellner, Johannes A. Kršek, Pavel Zamecnik, Josef Crino, Peter B. Kotulska, Katarzyna Lagae, Lieven Jansen, Anna C. Kwiatkowski, David J. Jozwiak, Sergiusz Curatolo, Paolo Mühlebner, Angelika Lee, Jeong H. Mills, James D. van Vliet, Erwin A. Aronica, Eleonora MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
title | MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
title_full | MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
title_fullStr | MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
title_full_unstemmed | MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
title_short | MicroRNA‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
title_sort | microrna‐34a activation in tuberous sclerosis complex during early brain development may lead to impaired corticogenesis |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8519131/ https://www.ncbi.nlm.nih.gov/pubmed/33942341 http://dx.doi.org/10.1111/nan.12717 |
work_keys_str_mv | AT korotkovanatoly microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT simnamsuk microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT luinenburgmarkj microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT aninkjasperj microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT vanscheppingenjackelien microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT zimmertills microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT bongaartsanika microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT broekaartdiedewm microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT mijnsbergencaroline microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT jansenfloore microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT vanheckewim microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT splietwimgm microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT vanrijenpeterc microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT feuchtmartha microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT hainfellnerjohannesa microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT krsekpavel microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT zamecnikjosef microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT crinopeterb microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT kotulskakatarzyna microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT lagaelieven microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT jansenannac microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT kwiatkowskidavidj microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT jozwiaksergiusz microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT curatolopaolo microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT muhlebnerangelika microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT leejeongh microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT millsjamesd microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT vanvlieterwina microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis AT aronicaeleonora microrna34aactivationintuberoussclerosiscomplexduringearlybraindevelopmentmayleadtoimpairedcorticogenesis |