Language
English
Publication Date
7-20-2026
Journal
Genes Development
DOI
10.1101/gad.353596.125
PMID
42476817
PMCID
PMC13390769
PubMedCentral® Posted Date
7-23-2026
PubMedCentral® Full Text Version
Author MSS
Abstract
Many neurological diseases impact specific brain regions despite widespread expression of the disease-related protein. Spinocerebellar ataxia type 1 (SCA1) primarily affects the cerebellum, though Ataxin-1 (ATXN1) is widely expressed. We previously showed that intensified interaction between mutant ATXN1 and Capicua (CIC) drives SCA1 pathogenesis in the cerebellum, whereas ATXN1 loss augments amyloid β production in the hippocampus and cortex. CIC, however, forms a complex with ATXN1 and its paralog, Ataxin-1-like (ATXN1L), yet knockout of either yields completely different phenotypes. To determine whether this could be due to CIC having two isoforms, we generated mice bearing either the long (CIC-L) or short (CIC-S) isoform. Loss of CIC-L led to cognitive deficits, whereas loss of CIC-S caused early postnatal lethality, phenocopying ATXN1 and ATXN1L knockout mice, respectively. Furthermore, CIC-L preferentially interacts with ATXN1, and CIC-S with ATXN1L. Our data underscore the importance of isoform-paralog interplay in studying regional vulnerability in neurodegenerative diseases.
Published Open-Access
yes
Recommended Citation
Lee, Hamin; Gonzalez, Esmeralda Villavicencio; Rivera, Elias M; et al., "Functional Divergence of Capicua Isoforms Explains Differential Tissue Vulnerability in Neurological Disease" (2026). Faculty, Staff and Students Publications. 7688.
https://digitalcommons.library.tmc.edu/baylor_docs/7688