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Small molecules for modulating protein driven liquid-liquid phase separation in treating neurodegenerative disease

Wheeler, R. J.; Lee, H. O.; Poser, I.; Pal, A.; Doeleman, T.; Kishigami, S.; Kour, S.; Anderson, E. N.; Marrone, L.; Murthy, A. C.; Jahnel, M.; Zhang, X.; Boczek, E.; Fritsch, A.; Fawzi, N. L.; Sterneckert, J.; Pandey, U.; David, D. C.; Davis, B. G.; Baldwin, A. J.; Hermann, A.; Bickle, M.; Alberti, S.; Hyman, A. A.

2019-08-05 cell biology Community evaluation
10.1101/721001 bioRxiv
Show abstract

Neurodegenerave diseases such as amyotrophic lateral sclerosis (ALS) are oten associated with mutaons in proteins that are associated with stress granules. Stress granules are condensates formed by liquid-liquid phase separaon which, when aberrant, can lead to altered condensaon behaviours and disease phenotypes. Here, we identified lipoamide, a small molecule which specifically prevents cytoplasmic condensaon of stress granule proteins. Thermal proteome profiling showed that lipoamide preferentially stabilises intrinsically disordered domain-containing proteins. These include SRSF1 and SFPQ, stress granule proteins necessary for lipoamide activity. The redox state of SFPQ correlates with its condensate-dissolving behaviour, in concordance with the importance of the dithiolane ring for lipoamide activity. In animals, lipoamide ameliorates aging-associated aggregaon of a stress granule reporter, improves neuronal morphology, and recovers motor defects caused by expression of ALS-associated FUS and TDP-43 mutants. In conclusion, lipoamide is a well-tolerated small molecule modulator of stress granule condensaon and dissection of its molecular mechanism identified a cellular pathway for redox regulaon of stress granule formaon.

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