Skip to content
Open access · OA via OpenAlex

Quantitative proteomics reveals neuronal ubiquitination of Rngo/Ddi1 and several proteasomal subunits by Ube3a, accounting for the complexity of Angelman syndrome

Juanma Ramírez, Benoît Lectez, Nerea Osinalde, Monika Sivá, Nagore Elu, Kerman Aloria, Michaela Procházková, Coralia Pérez, José Martínez Hernández, Rosa Barrio, Klára Grantz Šašková, Jesús M. Arizmendi, Ugo Mayor

Human Molecular Genetics · 2018 · ▲ 36 citations

Abstract

Angelman syndrome is a complex neurodevelopmental disorder caused by the lack of function in the brain of a single gene, UBE3A. The E3 ligase coded by this gene is known to build K48-linked ubiquitin chains, a modification historically considered to target substrates for degradation by the proteasome. However, a change in protein abundance is not proof that a candidate UBE3A substrate is indeed ubiquitinated by UBE3A. We have here used an unbiased ubiquitin proteomics approach, the bioUb strategy, to identify 79 proteins that appear more ubiquitinated in the Drosophila photoreceptor cells when Ube3a is over-expressed. We found a significantly high number of those proteins to be proteasomal subunits or proteasome-interacting proteins, suggesting a wide proteasomal perturbation in the brain of Angelman patients. We focused on validating the ubiquitination by Ube3a of Rngo, a proteasomal component conserved from yeast (Ddi1) to humans (DDI1 and DDI2), but yet scarcely characterized. Ube3a-mediated Rngo ubiquitination in fly neurons was confirmed by immunoblotting. Using human neuroblastoma SH-SY5Y cells in culture, we also observed that human DDI1 is ubiquitinated by UBE3A, without being targeted for degradation. The novel observation that DDI1 is expressed in the developing mice brain, with a significant peak at E16.5, strongly suggests that DDI1 has biological functions not yet described that could be of relevance for Angelman syndrome clinical research.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1093/hmg/ddy103
Canonical
link ↗
Fetched
2026-07-25 MST

Cite this

APA
Ramírez, J., Lectez, B., Osinalde, N., Sivá, M., Elu, N., Aloria, K., Procházková, M., Pérez, C., Hernández, J.M., Barrio, R., Šašková, K.G., Arizmendi, J.M., &amp; Mayor, U. (2018). Quantitative proteomics reveals neuronal ubiquitination of Rngo/Ddi1 and several proteasomal subunits by Ube3a, accounting for the complexity of Angelman syndrome. <em>Human Molecular Genetics</em>. https://doi.org/10.1093/hmg/ddy103
Vancouver
Ramírez J, Lectez B, Osinalde N, Sivá M, Elu N, Aloria K, et al. Quantitative proteomics reveals neuronal ubiquitination of Rngo/Ddi1 and several proteasomal subunits by Ube3a, accounting for the complexity of Angelman syndrome. Human Molecular Genetics. 2018. doi:10.1093/hmg/ddy103.
BibTeX
@article{juanma2018Quanti, title = {Quantitative proteomics reveals neuronal ubiquitination of Rngo/Ddi1 and several proteasomal subunits by Ube3a, accounting for the complexity of Angelman syndrome}, author = {Juanma Ramírez and Benoît Lectez and Nerea Osinalde and Monika Sivá and Nagore Elu and Kerman Aloria and Michaela Procházková and Coralia Pérez and José Martínez Hernández and Rosa Barrio and Klára Grantz Šašková and Jesús M. Arizmendi and Ugo Mayor}, journal = {Human Molecular Genetics}, year = {2018}, doi = {10.1093/hmg/ddy103}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings