Protein misfolding and aggregation are cardinal features of neurodegenerative disease (NDD) and they contribute to pathophysiology by both loss-of-function (LOF) and gain-of-function (GOF) mechanisms. This is well exemplified by TDP-43 which aggregates and mislocalizes in several NDDs. The depletion of nuclear TDP-43 leads to reduction in its normal function in RNA metabolism and the cytoplasmic accumulation of TDP-43 leads to aberrant protein homeostasis. A modifier screen found that loss of rad23 suppressed TDP-43 pathology in invertebrate and tissue culture models. Here we show in the TAR4 mouse model of TDP-43 pathology that genetic or antisense oligonucleotide (ASO)-mediated reduction of rad23a confers benefits on survival and behavior, histological hallmarks of disease and reduction of mislocalized and aggregated TDP-43. This results in improved function of the ubiquitin-proteasome system (UPS) and correction of transcriptomic alterations evoked by pathologic TDP-43. RAD23A-dependent remodeling of the insoluble proteome appears to be a key event driving pathology in this model. As TDP-43 pathology is prevalent in both familial and sporadic NDD, targeting RAD23A may have therapeutic potential.
Reduction of RAD23A extends lifespan and mitigates pathology in a mouse model of TDP-43 proteinopathy.
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作者:Guo Xueshui, Prajapati Ravindra Singh, Chun Jiyeon, Byun Insuk, Gebis Kamil K, Wang Yi-Zhi, Ling Karen, Dalton Casey, Blair Jeff A, Hamidianjahromi Anahid, Bachmann Gemma, Rigo Frank, Jafar-Nejad Paymaan, Savas Jeffrey N, Lee Min Jae, Sreedharan Jemeen, Kalb Robert G
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2026 | 起止号: | 2026 Jan 16; 17(1):1820 |
| doi: | 10.1038/s41467-025-65104-4 | ||
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