Emerging roles for E3 ubiquitin ligases in neural development and disease

被引:1
作者
Hale, Maya [1 ]
Bashaw, Greg J. [1 ]
机构
[1] Univ Penn, Perelman Sch Med, Dept Neurosci, Philadelphia, PA 19104 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
neural differentiation; axon guidance; neural developmental disorders; E3 ubiquitin ligase; commissureless; Ndfip; slit; GUIDANCE RECEPTOR REGULATION; AXON GUIDANCE; HUWE1; CONTROLS; PROTEINS; EXPRESSION; GENE; ROBO; ACTIVATION; MUTATIONS; MECHANISM;
D O I
10.3389/fcell.2025.1557653
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Neurodevelopment is an intricate process with highly regulated, overlapping stages including neuronal differentiation and axon guidance. Aberrations during these and other stages are tied to the etiology of neurodevelopmental disorders like Autism Spectrum Disorder, Angelman Syndrome, and X-linked Intellectual Disability. Ubiquitination is a dynamic and highly reversible post-translational modification conferred by E3 ubiquitin ligases. Recent discoveries have advanced the understanding of how substrate ubiquitination can guide protein localization, drive protein degradation, and alter protein post translational modifications. In this review, we highlight members of the RING and HECT E3 ligase families to discuss their novel roles in the molecular mechanisms regulating neurodevelopment. These findings are both instrumental for informing the future directions of neurodevelopmental research, and in expanding knowledge of intracellular mechanisms of protein trafficking. In addition, a deeper understanding of the molecular mechanisms of E3 ligase function in development promises to offer new insights into the pathogenesis of neurodevelopmental disorders.
引用
收藏
页数:16
相关论文
共 139 条
[1]  
Ahel J., 2021, E3 ubiquitin ligase RNF213 employs a non-canonical zinc finger active site and is allosterically regulated by ATP, DOI [10.1101/2021.05.10.443411, DOI 10.1101/2021.05.10.443411]
[2]   Ubiquitin chain diversity at a glance [J].
Akutsu, Masato ;
Dikic, Ivan ;
Bremm, Anja .
JOURNAL OF CELL SCIENCE, 2016, 129 (05) :875-880
[3]  
Alberts B., 2002, Molecular Biology of the Cell, V4th Edn
[4]   Imprinted expression of the murine Angelman syndrome gene, Ube3a, in hippocampal and Purkinje neurons [J].
Albrecht, U ;
Sutcliffe, JS ;
Cattanach, BM ;
Beechey, CV ;
Armstrong, D ;
Eichele, G ;
Beaudet, AL .
NATURE GENETICS, 1997, 17 (01) :75-78
[5]  
Altaba ARI, 1998, DEVELOPMENT, V125, P2203
[6]  
American Psychiatric Association, 2013, Diagnostic and statistical manual of mental disorders, V5th ed
[7]   Increased p53 signaling impairs neural differentiation in HUWE1-promoted intellectual disabilities [J].
Aprigliano, Rossana ;
Aksu, Merdane Ezgi ;
Bradamante, Stefano ;
Mihaljevic, Boris ;
Wang, Wei ;
Rian, Kristin ;
Montaldo, Nicola P. ;
Grooms, Kayla Mae ;
Martin, Sarah L. Fordyce ;
Bordin, Diana L. ;
Bosshard, Matthias ;
Peng, Yunhui ;
Alexov, Emil ;
Skinner, Cindy ;
Liabakk, Nina-Beate ;
Sullivan, Gareth J. ;
Bjoras, Magnar ;
Schwartz, Charles E. ;
van Loon, Barbara .
CELL REPORTS MEDICINE, 2021, 2 (04)
[8]   The Neurobiology of X-Linked Intellectual Disability [J].
Bassani, Silvia ;
Zapata, Jonathan ;
Gerosa, Laura ;
Moretto, Edoardo ;
Murru, Luca ;
Passafaro, Maria .
NEUROSCIENTIST, 2013, 19 (05) :541-552
[9]   An Angelman syndrome substitution in the HECT E3 ubiquitin ligaseC-terminal Lobe of E6AP affects protein stability and activity [J].
Beasley, Steven A. ;
Kellum, Chloe E. ;
Orlomoski, Rachel J. ;
Idrizi, Feston ;
Spratt, Donald E. .
PLOS ONE, 2020, 15 (07)
[10]   Slit-Robo signaling [J].
Blockus, Heike ;
Chedotal, Alain .
DEVELOPMENT, 2016, 143 (17) :3037-3044