Short RNA chaperones promote aggregation-resistant TDP-43 conformers to mitigate neurodegeneration.

Copley KE., Mauna JC., Danielson HL., Chen Q., Ozguney B., Ngo M., Xie L., Smirnov A., Davis M., Mayne L., Linsenmeier M., Rubien JD., Bergmann CA., Portz B., Lee BL., Odeh HM., Lai L., Chang Y-W., Hallegger M., Ule J., Pasinelli P., Poon Y., Mittal J., Fawzi NL., Black BE., Donnelly CJ., Jensen BK., Shorter J.

Aberrant aggregation of the prion-like RNA binding protein TDP-43 drives several fatal neurodegenerative proteinopathies, including amyotrophic lateral sclerosis (ALS). In this work, we define how short, specific RNAs solubilize TDP-43. These short RNAs engage and stabilize the TDP-43 RNA recognition motifs, which allosterically destabilizes a conserved helical region in the prion-like domain, thereby promoting aggregation-resistant conformers. Sequence-space mining identified short RNA chaperones with enhanced activity against TDP-43 and disease-linked variants. Enhanced short RNA chaperones mitigated aberrant TDP-43 phenotypes in optogenetic models and in ALS patient-derived and control motor neurons. In mice with cytoplasmic TDP-43 aggregation and motor neuron loss, an enhanced short RNA chaperone reduced pathological aggregation, restored TDP-43 function, and conferred neuroprotection. These results define a mechanistic and therapeutic framework for RNA-based strategies to counter TDP-43 proteinopathies.

DOI

10.1126/science.adv3301

Type

Journal article

Publication Date

2026-05-01T00:00:00+00:00

Volume

392

Addresses

Department of Biochemistry and Biophysics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

Keywords

Motor Neurons, Animals, Humans, Mice, Amyotrophic Lateral Sclerosis, DNA-Binding Proteins, RNA, Protein Aggregation, Pathological, RNA Recognition Motif

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