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February 25, 2026Nature Communications1 citationsOpen Access

Membrane-embedded polar residues target membrane proteins for degradation by the quality control protease FtsH

MCMichal Chai-DaninoNRNoy Ravensary-ModinVVVasiliy I. Vladimirov

Key Points

  • The aim is to understand how the FtsH protease targets misfolded membrane proteins for degradation.
  • Analyzed in vivo degradation of two substrates in Escherichia coli
  • Examined the role of lipid-facing polar residues in misfolded membrane proteins
  • Investigated the involvement of the FtsH transmembrane domain
  • Lipid-facing polar residues trigger FtsH-mediated degradation of faulty membrane proteins
  • Polar residues buried in folded proteins signal misfolding when exposed
  • Degradation can occur without extended cytosolic regions typical for other substrates

Abstract

Abstract The biogenesis of membrane proteins (MPs) is inherently error-prone, and is therefore monitored by quality control mechanisms that remove faulty MPs. A key challenge for this surveillance is to recognize misfolded MPs, but how this is achieved remains poorly understood. Here we reveal how FtsH, the main MP quality control protease in Escherichia coli , specifically targets faulty MPs. By analyzing the in vivo degradation of two substrates, we show that lipid-facing polar residues trigger FtsH-mediated degradation. In folded MPs, such polar residues are usually buried in the protein core. Their exposure to the membrane can therefore signal misfolding and promote degradation. Strikingly, lipid-facing polar residues can even trigger degradation of a folded protein, and do not require the extended cytosolic regions typically needed for other FtsH substrates. Recognition depends on the FtsH transmembrane domain and on specific polar residues within it. Thus, sensing misfolding within the membrane helps maintain the integrity of the membrane proteome.

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Cite This Study

Chai-Danino et al. (2026) studied this question.

synapsesocial.com/papers/699e9143f5123be5ed04ea45https://doi.org/10.1038/s41467-026-69829-8
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