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Redefining the specificity of phosphoinositide-binding by human PH domain-containing proteins.

Nilmani SinghAdriana Reyes-OrdoñezMichael A CompagnoneJesus F MorenoBenjamin J LeslieTaekjip HaJie Chen
Published in: Nature communications (2021)
Pleckstrin homology (PH) domains are presumed to bind phosphoinositides (PIPs), but specific interaction with and regulation by PIPs for most PH domain-containing proteins are unclear. Here we employ a single-molecule pulldown assay to study interactions of lipid vesicles with full-length proteins in mammalian whole cell lysates. Of 67 human PH domain-containing proteins initially examined, 36 (54%) are found to have affinity for PIPs with various specificity, the majority of which have not been reported before. Further investigation of ARHGEF3 reveals distinct structural requirements for its binding to PI(4,5)P2 and PI(3,5)P2, and functional relevance of its PI(4,5)P2 binding. We generate a recursive-learning algorithm based on the assay results to analyze the sequences of 242 human PH domains, predicting that 49% of them bind PIPs. Twenty predicted binders and 11 predicted non-binders are assayed, yielding results highly consistent with the prediction. Taken together, our findings reveal unexpected lipid-binding specificity of PH domain-containing proteins.
Keyphrases
  • endothelial cells
  • single molecule
  • induced pluripotent stem cells
  • pluripotent stem cells
  • high throughput
  • single cell
  • deep learning
  • gene expression
  • cell therapy
  • binding protein
  • dna methylation