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Autor(en) / Beteiligte
Titel
SUMOylation effects on neural stem cells self-renewal, differentiation, and survival
Ist Teil von
  • Neuroscience research, 2024-02, Vol.199, p.1-11
Ort / Verlag
Ireland: Elsevier B.V
Erscheinungsjahr
2024
Quelle
MEDLINE
Beschreibungen/Notizen
  • SUMO (small ubiquitin-like modifier) conjugation or SUMOylation, a post-translational modification, is a crucial regulator of protein function and cellular processes. In the context of neural stem cells (NSCs), SUMOylation has emerged as a key player, affecting their proliferation, differentiation, and survival. By modifying transcription factors, such as SOX1, SOX2, SOX3, SOX6, Bmi1, and Nanog, SUMOylation can either enhance or impair their transcriptional activity, thus impacting on NSCs self-renewal. Moreover, SUMOylation regulates neurogenesis and neuronal differentiation by modulating key proteins, such as Foxp1, Mecp2, MEF2A, and SOX10. SUMOylation is also crucial for the survival and proliferation of NSCs in both developing and adult brains. By regulating the activity of transcription factors, coactivators, and corepressors, SUMOylation acts as a molecular switch, inducing cofactor recruitment and function during development. Importantly, dysregulation of NSCs SUMOylation has been implicated in various disorders, including embryonic defects, ischemic cerebrovascular disease, glioma, and the harmful effects of benzophenone-3 exposure. Here we review the main findings on SUMOylation-mediated regulation of NSCs self-renewal, differentiation and survival. Better understanding NSCs SUMOylation mechanisms and its functional consequences might provide new strategies to promote neuronal differentiation that could contribute for the development of novel therapies targeting neurodegenerative diseases. •SUMOylation regulates several protein function and cellular processes.•SUMOylation affects NSCs proliferation, differentiation, and survival.•SUMOylation enhances or impairs transcriptional factors controlling NSCs self-renewal.•SUMOylation regulates neurogenesis and neuronal differentiation processes.•Dysregulation of NSCs SUMOylation is linked to disorders.
Sprache
Englisch
Identifikatoren
ISSN: 0168-0102
eISSN: 1872-8111
DOI: 10.1016/j.neures.2023.09.006
Titel-ID: cdi_proquest_miscellaneous_2868670019

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