bioRxiv · 10.64898/2026.01.06.697853
NORAD orchestrates KLC1-mediated SFPQ transport via liquid-liquid phase separation
Abstract
Neuronal function requires precise long-distance axonal transport mediated by molecular motors and RNA-binding proteins like SFPQ, though regulatory mechanisms remain poorly defined. We identify long non-coding RNA NORAD as a master regulator of this process through liquid-liquid phase separation (LLPS). While SFPQ and kinesin-1 mediate cargo delivery, the specific RNA coordinating their interaction was unknown. We demonstrate NORAD directly binds kinesin light chain 1 (KLC1) and promotes SFPQ condensation into dynamic LLPS droplets, enabling efficient transport. CRISPR-assisted mapping and functional assays show NORAD depletion disrupts granule dynamics, impairs neuroprotective mRNA localization, and induces axonal degeneration. In vitro reconstitution confirms NORAD-KLC1 synergy enhances SFPQ phase separation, and neuron-specific knockout mice exhibit motor deficits with reduced neuronal density. These findings establish the first evidence of lncRNA NORAD-mediated LLPS in axonal transport, revealing a new paradigm for RNA-guided neuronal maintenance.
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Lian, Q., Han, S., Chen, H., Liu, J., Wang, Y., Chen, S., Sun, P., Jiang, J., Zhao, R., Chen, R., Zhang, X., Duan, F., Rong, L., Yi, W., Kinghorn, A. B., Yan, J., Li, R., Xia, J., Qi, Z., Menasche, G., Lai, K.-O., Lai, C. S. W., Zhou, P., Huang, J.-D.. 2026-01-06. NORAD orchestrates KLC1-mediated SFPQ transport via liquid-liquid phase separation. https://doi.org/10.64898/2026.01.06.697853
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