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Nanoscale regulation of Ca 2+ dependent phase transitions and real-time dynamics of SAP97/hDLG.

Premchand RajeevNivedita SinghAdel KechkarCorey ButlerNarendrakumar RamananJean-Baptiste SibaritaMini JoseDeepak Nair
Published in: Nature communications (2022)
Synapse associated protein-97/Human Disk Large (SAP97/hDLG) is a conserved, alternatively spliced, modular, scaffolding protein critical in regulating the molecular organization of cell-cell junctions in vertebrates. We confirm that the molecular determinants of first order phase transition of SAP97/hDLG is controlled by morpho-functional changes in its nanoscale organization. Furthermore, the nanoscale molecular signatures of these signalling islands and phase transitions are altered in response to changes in cytosolic Ca 2+ . Additionally, exchange kinetics of alternatively spliced isoforms of the intrinsically disordered region in SAP97/hDLG C-terminus shows differential sensitivities to Ca 2+ bound Calmodulin, affirming that the molecular signatures of local phase transitions of SAP97/hDLG depends on their nanoscale heterogeneity and compositionality of isoforms.
Keyphrases
  • single cell
  • atomic force microscopy
  • single molecule
  • endothelial cells
  • protein kinase
  • genome wide
  • gene expression
  • mesenchymal stem cells
  • mass spectrometry
  • induced pluripotent stem cells
  • binding protein