Omics : a journal of integrative biology

Large-Scale Study of Cell Protein Phosphorylation Suggests a Role for LPIN1 S162 in Metabolic Signaling

Updated

Abstract

Among 20 differentially regulated phosphosites, S162 emerged as the most frequently and consistently perturbed site across diverse cellular contexts.

  • S162 exhibits a distinct phosphoregulation pattern compared to other insulin-responsive phosphosites of LPIN1.
  • Coregulation analysis shows extensive associations between S162 and phosphosites related to insulin signaling, AMPK signaling, autophagy, and metabolic adaptation.
  • Phosphorylation at S162 is associated with inhibitory events within insulin receptor substrate signaling.
  • S162 phosphorylation may contribute to stress-adaptive metabolic programs rather than canonical insulin-responsive signaling.
  • The evolutionary conservation and structural position of S162 suggest it is a previously unrecognized regulatory site in LPIN1.

Simplified

Full Text

Full text is available at the source.

What Lands in Your Inbox Each Week:

  • 📚7 fresh studies
  • 📝plain-language summaries
  • direct links to original studies
  • 🏅top journal indicators
  • 📅weekly delivery
  • 🧘‍♂️always free