Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/135842
Título: Recombinant pro-CTSD (cathepsin D) enhances SNCA/α-Synuclein degradation in α-Synucleinopathy models
Autor: Prieto Huarcaya, Susy
Drobny, Alice
Marques, André R A
Di Spiezio, Alessandro
Dobert, Jan Philipp
Balta, Denise
Werner, Christian
Rizo, Tania
Gallwitz, Lisa
Bub, Simon
Stojkovska, Iva
Belur, Nandkishore R
Fogh, Jens
Mazzulli, Joseph R
Xiang, Wei
Fulzele, Amitkumar
Dejung, Mario
Sauer, Markus
Winner, Beate
Rose-John, Stefan
Arnold, Philipp
Saftig, Paul
Zunke, Friederike
Palavras-chave: alpha-synuclein
cathepsin D
lysosomal degradation
lysosomal storage disorders
parkinson disease
synucleinopathies
SDG 3 - Good Health and Well-being
Data: 28-Abr-2022
Resumo: Parkinson disease (PD) is a neurodegenerative disorder characterized by the abnormal intracellular accumulation of SNCA/α-synuclein. While the exact mechanisms underlying SNCA pathology are not fully understood, increasing evidence suggests the involvement of autophagic as well as lysosomal deficiencies. Because CTSD (cathepsin D) has been proposed to be the major lysosomal protease involved in SNCA degradation, its deficiency has been linked to the presence of insoluble SNCA conformers in the brain of mice and humans as well as to the transcellular transmission of SNCA aggregates. We here postulate that SNCA degradation can be enhanced by the application of the recombinant human proform of CTSD (rHsCTSD). Our results reveal that rHsCTSD is efficiently endocytosed by neuronal cells, correctly targeted to lysosomes and matured to an enzymatically active protease. In dopaminergic neurons derived from induced pluripotent stem cells (iPSC) of PD patients harboring the A53T mutation within the SNCA gene, we confirm the reduction of insoluble SNCA after treatment with rHsCTSD. Moreover, we demonstrate a decrease of pathological SNCA conformers in the brain and within primary neurons of a CTSD-deficient mouse model after dosing with rHsCTSD. Boosting lysosomal CTSD activity not only enhanced SNCA clearance, but also restored endo-lysosome and autophagy function in human and murine neurons as well as tissue. Our findings indicate that CTSD is critical for SNCA clearance and function. Thus, enzyme replacement strategies utilizing CTSD may also be of therapeutic interest for the treatment of PD and other synucleinopathies aiming to decrease the SNCA burden.
Peer review: yes
URI: http://hdl.handle.net/10362/135842
DOI: https://doi.org/10.1080/15548627.2022.2045534
ISSN: 1554-8627
Aparece nas colecções:NMS: CEDOC - Artigos em revista internacional com arbitragem científica

Ficheiros deste registo:
Ficheiro Descrição TamanhoFormato 
Recombinant_pro_CTSD_cathepsin_D_enhances_SNCA_Synuclein_degradation_in_Synucleinopathy_models.pdf1,72 MBAdobe PDFVer/Abrir


FacebookTwitterDeliciousLinkedInDiggGoogle BookmarksMySpace
Formato BibTex MendeleyEndnote 

Todos os registos no repositório estão protegidos por leis de copyright, com todos os direitos reservados.