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April 18, 2026FEBS Letters0 citationsOpen Access

An isoform of 14‐3‐3 protein regulates transbilayer lipid movement at the plasma membrane

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AYAkiko Yamaji‐HasegawaAHAkira HattoriMTMasafumi Tsujimoto

Key Points

  • To investigate the role of 14-3-3 zeta in regulating transbilayer movement of phosphatidylserine at the plasma membrane.
  • Examined mRNA and protein levels of 14-3-3 zeta in normal and mutant CHO cells.
  • Conducted knockdown of 14-3-3 zeta in wild-type CHO cells to assess its effects on PS resistance.
  • Measured transbilayer movement of a fluorescent phosphatidylserine analog in treated cells.
  • Reduced levels of 14-3-3 zeta were found in PS-resistant CHO cell mutants.
  • Knockdown of 14-3-3 zeta in wild-type cells showed partial resistance to exogenous phosphatidylserine.
  • Defective transbilayer movement of the fluorescent PS analog was observed in 14-3-3 zeta knockdown cells.

Abstract

Exogenous phosphatidylserine (PS) is cytotoxic to Chinese hamster ovary (CHO) cells with a PS-resistant CHO cell mutant exhibiting impaired transbilayer movement of a fluorescent PS analog at the plasma membrane. Here, we demonstrate that both mRNA and protein levels of 14-3-3 zeta are markedly reduced in this mutant, while knockdown of 14-3-3 zeta in wild-type CHO cells confers partial resistance to exogenous PS. Consistently, these knockdown cells display defective transbilayer movement of 1-palmitoyl-2-6- (7-nitro-1, 3-benz-2-oxadiazol-4-yl) amino hexanoyl-sn-glycero-3-phosphoserine (C6-NBD-PS). However, 14-3-3 zeta knockdown does not further enhance PS resistance in ATP11C-deficient cells. These findings indicate that 14-3-3 zeta plays a regulatory role in ATP11C-dependent transbilayer movement of PS at the plasma membrane. Impact statement 14-3-3ζ regulates ATP11C-dependent phosphatidylserine (PS) transbilayer movement at the plasma membrane. Reduced 14-3-3ζ impairs PS flipping and confers resistance to exogenous PS in CHO cells, identifying 14-3-3ζ as a key modulator of phospholipid asymmetry and lipid-induced cytotoxicity.

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Cite This Study

Yamaji‐Hasegawa et al. (2026) studied this question.

synapsesocial.com/papers/69e3213840886becb65405fbhttps://doi.org/10.1002/1873-3468.70338
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