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Short N-terminal disordered regions and the proline-rich domain are major regulators of phase transitions for full-length UBQLN1, UBQLN2 and UBQLN4

biorxiv. 2023-09; 
Thuy P Dao, Anitha Rajendran, Sarasi K K Galagedera, William Haws, Carlos A Castañeda
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Proteins, Expression, Isolation and Analysis … -optimized, synthesized, and cloned into pET24b (Novagen) by GenScript (NJ, USA). All variant UBQLN constructs were … Dan Kraut for critical reading and feedback on the manuscript. … Get A Quote

摘要

Highly homologous ubiquitin-binding shuttle proteins UBQLN1, UBQLN2 and UBQLN4 differ in both their specific protein quality control functions and their propensities to localize to stress-induced condensates, cellular aggregates and aggresomes. We previously showed that UBQLN2 phase separates , and that the phase separation propensities of UBQLN2 deletion constructs correlate with their ability to form condensates in cells. Here, we demonstrated that full-length UBQLN1, UBQLN2 and UBQLN4 exhibit distinct phase behaviors . Strikingly, UBQLN4 phase separates at a much lower saturation concentration than UBQLN1. However, neither UBQLN1 nor UBQLN4 phase separates with a strong temperature dependence, unlike UBQLN2.... More

关键词

N-terminal disordered region, Phase separation, UBQLN1, UBQLN2, UBQLN4, charge state, epitope tags, proline-rich region