4.7 Article

Phosphorylation Drives a Dynamic Switch in Serine/Arginine-Rich Proteins

Journal

STRUCTURE
Volume 21, Issue 12, Pages 2162-2174

Publisher

CELL PRESS
DOI: 10.1016/j.str.2013.09.014

Keywords

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Funding

  1. DFG Collaborative Research Center [860]
  2. Max Planck Society-Chinese Academy of Science Doctoral Training Program
  3. International Max Planck Research School for Physics of Biological and Complex Systems stipend

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Serine/arginine-rich (SR) proteins are important players in RNA metabolism and are extensively phosphorylated at serine residues in RS repeats. Here, we show that phosphorylation switches the RS domain of the serine/arginine-rich splicing factor 1 from a fully disordered state to a partially rigidified arch-like structure. Nuclear magnetic resonance spectroscopy in combination with molecular dynamics simulations revealed that the conformational switch is restricted to RS repeats, critically depends on the phosphate charge state and strongly decreases the conformational entropy of RS domains. The dynamic switch also occurs in the 100 kDa SR-related protein hPrp28, for which phosphorylation at the RS repeat is required for spliceosome assembly. Thus, a phosphorylation-induced dynamic switch is common to the class of serine/arginine-rich proteins and provides a molecular basis for the functional redundancy of serine/arginine-rich proteins and the profound influence of RS domain phosphorylation on protein-protein and protein-RNA interactions.

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