Study of adhesion and migration dynamics in ubiquitin E3A ligase (UBE3A)-silenced SYSH5Y neuroblastoma cells by micro-structured surfaces.


Journal

Nanotechnology
ISSN: 1361-6528
Titre abrégé: Nanotechnology
Pays: England
ID NLM: 101241272

Informations de publication

Date de publication:
08 Jan 2021
Historique:
pubmed: 16 10 2020
medline: 5 6 2021
entrez: 15 10 2020
Statut: ppublish

Résumé

During neuronal development, neuronal cells read extracellular stimuli from the micro/nano-environment within which they exist, retrieving essential directionality and wiring information. Here, focal adhesions (FAs-protein clusters anchoring integrins to cytoskeleton) act as sensors, by integrating signals from both the extracellular matrix environment and chemotactic factors, contributing to the final neuronal pathfinding and migration. In the processes that orchestrate neuronal development, the important function of ubiquitin E3A ligase (UBE3A) is emerging. UBE3A has crucial functions in the brain and changes in its expression levels lead to neurodevelopmental disorders: the lack of UBE3A leads to Angelman syndrome (AS, OMIN 105830), while its increase causes autisms (Dup15q-autism). By using nano/micro-structured anisotropic substrates we previously showed that UBE3A-deficient neurons have deficits in contact guidance (Tonazzini et al, Mol Autism 2019). Here, we investigate the adhesion and migration dynamics of UBE3A-silenced SH-SY5Y neuroblastoma cells in vitro by exploiting nano/micro-grooved substrates. We analyze the molecular processes regulating the development of FAs by transfection with EGFP-vector encoding for paxillin, a protein of FA clusters, and by live-cell total-internal-reflection-fluorescence microscopy. We show that UBE3A-silenced SH-SY5Y cells have impaired FA morphological development and pathway activation, which lead to a delayed adhesion and also explain the defective contact guidance in response to directional topographical stimuli. However, UBE3A-silenced SH-SY5Y cells show an overall normal migration behavior, in terms of speed and ability to follow the GRs directional stimulus. Only the collective cell migration upon cell gaps was slightly delayed for UBE3Ash SHs. Overall, the deficits of UBE3Ash SHS-SY5Y cells in FA maturation/sensing and in collective migration may have patho-physiological implications, in AS condition, considering the much more complex stimuli that neurons find in vivo during the neurodevelopment.

Identifiants

pubmed: 33055385
doi: 10.1088/1361-6528/abbb03
doi:

Substances chimiques

UBE3A protein, human EC 2.3.2.26
Ubiquitin-Protein Ligases EC 2.3.2.27

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

025708

Auteurs

R Mezzena (R)

NEST, Istituto Nanoscienze- CNR and Scuola Normale Superiore, Pisa, Italy.

C Masciullo (C)

NEST, Istituto Nanoscienze- CNR and Scuola Normale Superiore, Pisa, Italy.

S Antonini (S)

NEST, Istituto Nanoscienze- CNR and Scuola Normale Superiore, Pisa, Italy.

F Cremisi (F)

Scuola Normale Superiore, Bio@SNS, Pisa, Italy.

M Scheffner (M)

University of Konstanz, Department of Biology, Konstanz, Germany.

M Cecchini (M)

NEST, Istituto Nanoscienze- CNR and Scuola Normale Superiore, Pisa, Italy.

I Tonazzini (I)

NEST, Istituto Nanoscienze- CNR and Scuola Normale Superiore, Pisa, Italy.
Fondazione Umberto Veronesi, Milano, Italy.

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Classifications MeSH