4.8 Article

Oxidative Stress-Induced STIM2 Cysteine Modifications Suppress Store-Operated Calcium Entry

期刊

CELL REPORTS
卷 33, 期 3, 页码 -

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CELL PRESS
DOI: 10.1016/j.celrep.2020.108292

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资金

  1. SNF Sinergia grants [CRS115_180326, CRS113_160782]
  2. Austrian Science Fund (FWF) [P28701, P32778, P32075-B, P32947]
  3. German Research Foundation (DFG) [SFB1027, IRTG1816]
  4. Ministry of Science and Higher Education [075-15-2019-1933]
  5. [SFB1190]
  6. [HO 2190/4-1]
  7. [BO3643/3-1]
  8. [BO3643/3-2]
  9. Austrian Science Fund (FWF) [P32075, P32778, P32947] Funding Source: Austrian Science Fund (FWF)

向作者/读者索取更多资源

Store-operated calcium entry (SOCE) through STIM-gated ORAI channels governs vital cellular functions. In this context, SOCE controls cellular redox signaling and is itself regulated by redox modifications. However, the molecular mechanisms underlying this calcium-redox interplay and the functional outcomes are not fully understood. Here, we examine the role of STIM2 in SOCE redox regulation. Redox proteomics identify cysteine 313 as the main redox sensor of STIM2 in vitro and in vivo. Oxidative stress suppresses SOCE and calcium currents in cells overexpressing STIM2 and ORAI1, an effect that is abolished by mutation of cysteine 313. FLIM and FRET microscopy, together with MD simulations, indicate that oxidative modifications of cysteine 313 alter STIM2 activation dynamics and thereby hinder STIM2-mediated gating of ORAI1 In summary, this study establishes STIM2-controlled redox regulation of SOCE as a mechanism that affects several calcium-regulated physiological processes, as well as stress-induced pathologies.

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