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Phosphorylation Induces Conformational Rigidity at the C-Terminal Domain of AMPA Receptors.

Sudeshna ChatterjeeCarina AdeCaitlin E NurikNicole C CarrejoChayan DuttaVasanthi JayaramanChristy F Landes
Published in: The journal of physical chemistry. B (2018)
The intracellular C-terminal domain (CTD) of AMPA (α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid) receptor undergoes phosphorylation at specific locations during long-term potentiation. This modification enhances conductance through the AMPA receptor ion channel and thus potentially plays a crucial role in modulating receptor trafficking and signaling. However, because the CTD structure is largely unresolved, it is difficult to establish if phosphorylation induces conformational changes that might play a role in enhancing channel conductance. Herein, we utilize single-molecule Förster resonance energy transfer (smFRET) spectroscopy to probe the conformational changes of a section of the AMPA receptor CTD, under the conditions of point-mutated phosphomimicry. Multiple analysis algorithms fail to identify stable conformational states within the smFRET distributions, consistent with a lack of well-defined secondary structure. Instead, our results show that phosphomimicry induces conformational rigidity to the CTD, and such rigidity is electrostatically tunable.
Keyphrases
  • single molecule
  • energy transfer
  • living cells
  • molecular dynamics
  • quantum dots
  • molecular dynamics simulations
  • atomic force microscopy
  • protein kinase
  • binding protein
  • mass spectrometry
  • fluorescent probe