Scientific article
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The mammalian trafficking chaperone protein UNC93B1 maintains the ER calcium sensor STIM1 in a dimeric state primed for translocation to the ER cortex

Published inThe Journal of biological chemistry, vol. 298, no. 3, 101607
Publication date2022-03
Keywords
  • Calcium signaling
  • Innate immunity
  • Ion channels
  • Membrane contact sites
  • Protein trafficking
Citation (ISO format)
WANG, Wen-An, DEMAUREX, Nicolas. The mammalian trafficking chaperone protein UNC93B1 maintains the ER calcium sensor STIM1 in a dimeric state primed for translocation to the ER cortex. In: The Journal of biological chemistry, 2022, vol. 298, n° 3, p. 101607. doi: 10.1016/j.jbc.2022.101607
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Article (Published version)
Identifiers
Journal ISSN0021-9258
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Technical informations

Creation21/02/2022 15:27:00
First validation21/02/2022 15:27:00
Update16/03/2023 02:44:32
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