Tau mis-splicing correlates with motor impairments and striatal dysfunction in a model of tauopathy

Author:

Damianich Ana1,Facal Carolina Lucia1,Muñiz Javier Andrés1,Mininni Camilo2,Soiza-Reilly Mariano3ORCID,Ponce De León Magdalena4ORCID,Urrutia Leandro4,Falasco German4,Ferrario Juan Esteban5,Avale María Elena1ORCID

Affiliation:

1. Instituto de Investigaciones en Ingeniería Genética y Biología Molecular (INGEBI-CONICET), C1428ADN Buenos Aires, Argentina

2. Instituto de Biología y Medicina Experimental (IBYME-CONICET), C1428ADN Buenos Aires, Argentina

3. Instituto de Fisiología Biología Molecular y Neurociencias (IFIBYNE-UBA-CONICET), CABA 142 Buenos Aires, Argentina

4. Laboratorio De Imágenes Preclínicas, Centro de Imágenes Moleculares, FLENI, C1428 Buenos Aires, Argentina

5. Instituto de Biociencias, Biotecnología y Biología Traslacional (iB3), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, CABA 142 Buenos Aires, Argentina

Abstract

Abstract Tauopathies are neurodegenerative diseases caused by the abnormal metabolism of the microtubule associated protein tau (MAPT), which is highly expressed in neurons and critically involved in microtubule dynamics. In the adult human brain, the alternative splicing of exon 10 in MAPT pre-mRNA produces equal amounts of protein isoforms with either three (3R) or four (4R) microtubule binding domains. Imbalance in the 3R:4R tau ratio is associated with primary tauopathies that develop atypical parkinsonism, such as progressive supranuclear palsy and corticobasal degeneration. Yet, the development of effective therapies for those pathologies is an unmet goal. Here we report motor coordination impairments in the htau mouse model of tauopathy which harbour abnormal 3R:4R tau isoforms content, and in contrast to TauKO mice, are unresponsive to l-DOPA. Preclinical-PET imaging, array tomography and electrophysiological analyses indicated the dorsal striatum as the candidate structure mediating such phenotypes. Indeed, local modulation of tau isoforms by RNA trans-splicing in the striata of adult htau mice, prevented motor coordination deficits and restored basal neuronal firing. Together, these results suggest that abnormal striatal tau isoform content might lead to parkinsonian-like phenotypes and demonstrate a proof of concept that modulation of tau mis-splicing is a plausible disease-modifying therapy for some primary tauopathies.

Funder

Argentinean National Scientific and Technical Research Council

National Agency for Science and Technology

International Brain Research Organization

International Society for Neurochemistry

Publisher

Oxford University Press (OUP)

Subject

Clinical Neurology

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