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Deficiency in MT5-MMP Supports Branching of Human iPSCs-Derived Neurons and Reduces Expression of GLAST/S100 in iPSCs-Derived Astrocytes

Authors :
Pedro Belio-Mairal
Emmanuel Nivet
Laurie Arnaud
Alexander Dityatev
Santiago Rivera
Nikita Arnst
Laura García-González
Louise Greetham
German Research Center for Neurodegenerative Diseases - Deutsches Zentrum für Neurodegenerative Erkrankungen (DZNE)
Institut de neurophysiopathologie (INP)
Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS)
Otto-von-Guericke-Universität Magdeburg = Otto-von-Guericke University [Magdeburg] (OVGU)
ANR-17-EURE-0029,nEURo*AMU,Marseille NeuroSchool, une formation d'excellence(2017)
Centre National de la Recherche Scientifique (CNRS)-Aix Marseille Université (AMU)
Otto-von-Guericke-Universität Magdeburg
Source :
Cells, Cells, 2021, 10 (7), pp.1705. ⟨10.3390/cells10071705⟩, Volume 10, Issue 7, Cells, Vol 10, Iss 1705, p 1705 (2021), Cells 10(7), 1705 (2021). doi:10.3390/cells10071705 special issue: "Pluripotent Stem Cells for Regenerative Medicine", Cells, MDPI, 2021, 10 (7), pp.1705. ⟨10.3390/cells10071705⟩
Publication Year :
2021
Publisher :
HAL CCSD, 2021.

Abstract

International audience; For some time, it has been accepted that the β-site APP cleaving enzyme 1 (BACE1) and the γ-secretase are two main players in the amyloidogenic processing of the β-amyloid precursor protein (APP). Recently, the membrane-type 5 matrix metalloproteinase (MT5-MMP/MMP-24), mainly expressed in the nervous system, has been highlighted as a new key player in APP-processing, able to stimulate amyloidogenesis and also to generate a neurotoxic APP derivative. In addition, the loss of MT5-MMP has been demonstrated to abrogate pathological hallmarks in a mouse model of Alzheimer’s disease (AD), thus shedding light on MT5-MMP as an attractive new therapeutic target. However, a more comprehensive analysis of the role of MT5-MMP is necessary to evaluate how its targeting affects neurons and glia in pathological and physiological situations. In this study, leveraging on CRISPR-Cas9 genome editing strategy, we established cultures of human-induced pluripotent stem cells (hiPSC)-derived neurons and astrocytes to investigate the impact of MT5-MMP deficiency on their phenotypes. We found that MT5-MMP-deficient neurons exhibited an increased number of primary and secondary neurites, as compared to isogenic hiPSC-derived neurons. Moreover, MT5-MMP-deficient astrocytes displayed higher surface area and volume compared to control astrocytes. The MT5-MMP-deficient astrocytes also exhibited decreased GLAST and S100β expression. These findings provide novel insights into the physiological role of MT5-MMP in human neurons and astrocytes, suggesting that therapeutic strategies targeting MT5-MMP should be controlled for potential side effects on astrocytic physiology and neuronal morphology

Subjects

Subjects :
0301 basic medicine
Nervous system
Patch-Clamp Techniques
MMP24 protein, human
genetics [Matrix Metalloproteinases, Membrane-Associated]
[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Neurobiology
hiPSC-derived astrocytes
Action Potentials
metabolism [Neural Stem Cells]
Matrix metalloproteinase
APP protein, human
Gene Knockout Techniques
Amyloid beta-Protein Precursor
0302 clinical medicine
Neural Stem Cells
Genome editing
physiology [Action Potentials]
metabolism [Amyloid beta-Protein Precursor]
disease modeling
human-induced pluripotent stem cells
cytology [Neural Stem Cells]
Biology (General)
Induced pluripotent stem cell
Neurons
chemistry.chemical_classification
cytology [Astrocytes]
Gene Editing
Metalloproteinase
metabolism [Astrocytes]
metabolism [Excitatory Amino Acid Transporter 1]
Cell Differentiation
General Medicine
cytology [Induced Pluripotent Stem Cells]
genetics [S100 Calcium Binding Protein beta Subunit]
Phenotype
3. Good health
Cell biology
metabolism [Induced Pluripotent Stem Cells]
Excitatory Amino Acid Transporter 1
medicine.anatomical_structure
genetics [Amyloid beta-Protein Precursor]
metabolism [Neurons]
metalloproteinase
Alzheimer’s disease
morphometry
Signal Transduction
Neurite
Matrix Metalloproteinases, Membrane-Associated
QH301-705.5
Induced Pluripotent Stem Cells
whole-cell patch-clamp
S100 Calcium Binding Protein beta Subunit
Biology
Article
Cell Line
03 medical and health sciences
ddc:570
medicine
deficiency [Matrix Metalloproteinases, Membrane-Associated]
Humans
metabolism [S100 Calcium Binding Protein beta Subunit]
genetics [Excitatory Amino Acid Transporter 1]
neuronal differentiation
SLC1A3 protein, human
030104 developmental biology
Enzyme
chemistry
Gene Expression Regulation
Astrocytes
cytology [Neurons]
CRISPR-Cas Systems
030217 neurology & neurosurgery

Details

Language :
English
ISSN :
20734409
Database :
OpenAIRE
Journal :
Cells, Cells, 2021, 10 (7), pp.1705. ⟨10.3390/cells10071705⟩, Volume 10, Issue 7, Cells, Vol 10, Iss 1705, p 1705 (2021), Cells 10(7), 1705 (2021). doi:10.3390/cells10071705 special issue: "Pluripotent Stem Cells for Regenerative Medicine", Cells, MDPI, 2021, 10 (7), pp.1705. ⟨10.3390/cells10071705⟩
Accession number :
edsair.doi.dedup.....7770ce90448455c7c181fcd8dbf6931e
Full Text :
https://doi.org/10.3390/cells10071705⟩