ADAM10 hyperactivation acts on piccolo to deplete synaptic vesicle stores in Huntington’s disease

Author:

Cozzolino Flora12,Vezzoli Elena3,Cheroni Cristina45,Besusso Dario67,Conforti Paola67,Valenza Marta67,Iacobucci Ilaria12,Monaco Vittoria28,Birolini Giulia67,Bombaci Mauro7,Falqui Andrea9,Saftig Paul10,Rossi Riccardo L7,Monti Maria12,Cattaneo Elena67,Zuccato Chiara67

Affiliation:

1. Department of Chemical Sciences, University of Naples “Federico II”, Naples 80126, Italy

2. CEINGE Advanced Biotechnologies, Naples 80131, Italy

3. Department of Biomedical Sciences for Health, University of Milan, Milan 20133, Italy

4. European Institute of Oncology, IRCCS, Milan 20141, Italy

5. Department of Oncology and Hemato-Oncology, University of Milan, Milan 20122, Italy

6. Department of Biosciences, University of Milan, Milan 20133, Italy

7. Istituto Nazionale di Genetica Molecolare “Romeo ed Enrica Invernizzi”, Milan 20122, Italy

8. Biostructures and Biosystems National Institute (INBB), Rome 00136, Italy

9. Biological and Environmental Science and Engineering (BESE) Division, NABLA Lab, King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia

10. Institute of Biochemistry, Christian-Albrechts-University of Kiel, Kiel D-24098, Germany

Abstract

Abstract Synaptic dysfunction and cognitive decline in Huntington’s disease (HD) involve hyperactive A disintegrin and metalloproteinase domain-containing protein 10 (ADAM10). To identify the molecular mechanisms through which ADAM10 is associated with synaptic dysfunction in HD, we performed an immunoaffinity purification–mass spectrometry (IP–MS) study of endogenous ADAM10 in the brains of wild-type and HD mice. We found that proteins implicated in synapse organization, synaptic plasticity, and vesicle and organelles trafficking interact with ADAM10, suggesting that it may act as hub protein at the excitatory synapse. Importantly, the ADAM10 interactome is enriched in presynaptic proteins and ADAM10 co-immunoprecipitates with piccolo (PCLO), a key player in the recycling and maintenance of synaptic vesicles. In contrast, reduced ADAM10/PCLO immunoprecipitation occurs in the HD brain, with decreased density of synaptic vesicles in the reserve and docked pools at the HD presynaptic terminal. Conditional heterozygous deletion of ADAM10 in the forebrain of HD mice reduces active ADAM10 to wild-type level and normalizes ADAM10/PCLO complex formation and synaptic vesicle density and distribution. The results indicate that presynaptic ADAM10 and PCLO are a relevant component of HD pathogenesis.

Funder

Telethon

Programmi di Ricerca Scientifica di Rilevante Interesse Nazionale

ModelPolyQ

CircProt

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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