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Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration

The failure of adult CNS neurons to survive and regenerate their axons after injury or in neurodegenerative disease remains a major target for basic and clinical neuroscience. Recent data demonstrated in the adult mouse that exogenous expression of Sry-related high-mobility-box 11 (Sox11) promotes o...

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Autores principales: Chang, Kun-Che, Bian, Minjuan, Xia, Xin, Madaan, Ankush, Sun, Catalina, Wang, Qizhao, Li, Liang, Nahmou, Michael, Noro, Takahiko, Yokota, Satoshi, Galvao, Joana, Kreymerman, Alexander, Tanasa, Bogdan, Hu, Yang, Goldberg, Jeffrey L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7890524/
https://www.ncbi.nlm.nih.gov/pubmed/33441400
http://dx.doi.org/10.1523/ENEURO.0358-20.2020
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author Chang, Kun-Che
Bian, Minjuan
Xia, Xin
Madaan, Ankush
Sun, Catalina
Wang, Qizhao
Li, Liang
Nahmou, Michael
Noro, Takahiko
Yokota, Satoshi
Galvao, Joana
Kreymerman, Alexander
Tanasa, Bogdan
Hu, Yang
Goldberg, Jeffrey L.
author_facet Chang, Kun-Che
Bian, Minjuan
Xia, Xin
Madaan, Ankush
Sun, Catalina
Wang, Qizhao
Li, Liang
Nahmou, Michael
Noro, Takahiko
Yokota, Satoshi
Galvao, Joana
Kreymerman, Alexander
Tanasa, Bogdan
Hu, Yang
Goldberg, Jeffrey L.
author_sort Chang, Kun-Che
collection PubMed
description The failure of adult CNS neurons to survive and regenerate their axons after injury or in neurodegenerative disease remains a major target for basic and clinical neuroscience. Recent data demonstrated in the adult mouse that exogenous expression of Sry-related high-mobility-box 11 (Sox11) promotes optic nerve regeneration after optic nerve injury but exacerbates the death of a subset of retinal ganglion cells (RGCs), α-RGCs. During development, Sox11 is required for RGC differentiation from retinal progenitor cells (RPCs), and we found that mutation of a single residue to prevent SUMOylation at lysine 91 (K91) increased Sox11 nuclear localization and RGC differentiation in vitro. Here, we explored whether this Sox11 manipulation similarly has stronger effects on RGC survival and optic nerve regeneration. In vitro, we found that non-SUMOylatable Sox11(K91A) leads to RGC death and suppresses axon outgrowth in primary neurons. We furthermore found that Sox11(K91A) more strongly promotes axon regeneration but also increases RGC death after optic nerve injury in vivo in the adult mouse. RNA sequence (RNA-seq) data showed that Sox11 and Sox11(K91A) increase the expression of key signaling pathway genes associated with axon growth and regeneration but downregulated Spp1 and Opn4 expression in RGC cultures, consistent with negatively regulating the survival of α-RGCs and ipRGCs. Thus, Sox11 and its SUMOylation site at K91 regulate gene expression, survival and axon growth in RGCs, and may be explored further as potential regenerative therapies for optic neuropathy.
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spelling pubmed-78905242021-02-18 Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration Chang, Kun-Che Bian, Minjuan Xia, Xin Madaan, Ankush Sun, Catalina Wang, Qizhao Li, Liang Nahmou, Michael Noro, Takahiko Yokota, Satoshi Galvao, Joana Kreymerman, Alexander Tanasa, Bogdan Hu, Yang Goldberg, Jeffrey L. eNeuro Research Article: Confirmation The failure of adult CNS neurons to survive and regenerate their axons after injury or in neurodegenerative disease remains a major target for basic and clinical neuroscience. Recent data demonstrated in the adult mouse that exogenous expression of Sry-related high-mobility-box 11 (Sox11) promotes optic nerve regeneration after optic nerve injury but exacerbates the death of a subset of retinal ganglion cells (RGCs), α-RGCs. During development, Sox11 is required for RGC differentiation from retinal progenitor cells (RPCs), and we found that mutation of a single residue to prevent SUMOylation at lysine 91 (K91) increased Sox11 nuclear localization and RGC differentiation in vitro. Here, we explored whether this Sox11 manipulation similarly has stronger effects on RGC survival and optic nerve regeneration. In vitro, we found that non-SUMOylatable Sox11(K91A) leads to RGC death and suppresses axon outgrowth in primary neurons. We furthermore found that Sox11(K91A) more strongly promotes axon regeneration but also increases RGC death after optic nerve injury in vivo in the adult mouse. RNA sequence (RNA-seq) data showed that Sox11 and Sox11(K91A) increase the expression of key signaling pathway genes associated with axon growth and regeneration but downregulated Spp1 and Opn4 expression in RGC cultures, consistent with negatively regulating the survival of α-RGCs and ipRGCs. Thus, Sox11 and its SUMOylation site at K91 regulate gene expression, survival and axon growth in RGCs, and may be explored further as potential regenerative therapies for optic neuropathy. Society for Neuroscience 2021-02-11 /pmc/articles/PMC7890524/ /pubmed/33441400 http://dx.doi.org/10.1523/ENEURO.0358-20.2020 Text en Copyright © 2021 Chang et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article: Confirmation
Chang, Kun-Che
Bian, Minjuan
Xia, Xin
Madaan, Ankush
Sun, Catalina
Wang, Qizhao
Li, Liang
Nahmou, Michael
Noro, Takahiko
Yokota, Satoshi
Galvao, Joana
Kreymerman, Alexander
Tanasa, Bogdan
Hu, Yang
Goldberg, Jeffrey L.
Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration
title Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration
title_full Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration
title_fullStr Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration
title_full_unstemmed Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration
title_short Posttranslational Modification of Sox11 Regulates RGC Survival and Axon Regeneration
title_sort posttranslational modification of sox11 regulates rgc survival and axon regeneration
topic Research Article: Confirmation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7890524/
https://www.ncbi.nlm.nih.gov/pubmed/33441400
http://dx.doi.org/10.1523/ENEURO.0358-20.2020
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