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Specialized cortical ER architecture modulates Ca2+ signaling dynamics

  • Raphael J. Courjaret
  • , Lloyd Lee
  • , Hana Mohamed
  • , Fang Yu
  • , Lama Assaf
  • , Melanie Fisher
  • , David I. Yule
  • , Mark Terasaki
  • , James Sneyd
  • , Khaled Machaca*
  • *Corresponding author for this work
  • Cornell University
  • Weill Cornell Medicine-Qatar
  • The University of Auckland
  • University of Connecticut
  • University of Rochester

Research output: Contribution to journalArticlepeer-review

Abstract

Ca2+ signaling is ubiquitous and supports a multitude of cellular events. Specificity in Ca2+ signaling is encoded in its spatial and temporal dynamics. Ca2+ tunneling regulates the dynamics of Ca2+ signals downstream of store operated Ca2+ entry (SOCE). Here, we describe a novel cortical ER (cER) architectural feature, that we call the cER-basket, which underpins Ca2+ tunneling. We discovered the cER-basket through a combination of 3D reconstructions of the cortical ER at the ultrastructural level coupled to mathematical modeling of Ca2+ tunneling. Using insights from the modeling to inform experimental approaches and vice versa, we show that the detailed structural features of the cER-basket support Ca2+ tunneling. Therefore, we report a specific cortical ER structure, the cER-basket, which modulates cellular Ca2+ dynamics.

Original languageEnglish
Article number116955
Number of pages16
JournaliScience
Volume29
Issue number8
DOIs
Publication statusPublished - 21 Aug 2026

Keywords

  • Calcium
  • Channels
  • Entry
  • Image
  • Stim1

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