Stomatin organizes laterally segregated membrane microdomains to modulate transmembrane transport and signal transduction

Stomatin is a member of the SPFH (Stomatin, Prohibitin, Flotillin, and HflK/C) protein family, and has been proposed to scaffold functional membrane microdomains (FMMs) on the plasma membrane. Functionally, stomatin has been reported to associate with diverse partner proteins and is implicated in various cellular processes. However, the mechanisms by which it organizes FMMs and exerts its regulatory roles remain unclear. Here, we characterize cryo-EM structures of the stomatin complex, revealing a hexadecameric membrane-anchored assembly that resembles an inverted cup. Sixteen SPFH1 domains insert into the cytosolic leaflet, defining an isolated circular membrane microdomain. Proteomic analyses reveal numerous proteins associated with stomatin, including solute carrier transporters, Rab GTPases and integrins. We further show that stomatin oligomerization is required for integrin-regulated directional cell migration. Together, these findings provide a foundation for understanding the basic role of stomatin in FMM organization and its versatile functions in various physiological and pathological processes. Stomatin is thought to scaffold functional membrane microdomains; but how it works remains unclear. Here, authors reveal its 16-mer structure, identify cargo proteins, and show that the integrity of its cup-like complex is crucial for cell migration

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Publication Details

Journal
Nature Communications
Published
2026-10-05
DOI
https://doi.org/10.1038/s41467-026-78250-0
Primary Topic
Lipid Membrane Structure and Behavior
Type
article
Field-Weighted Citation Impact
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article

Stomatin organizes laterally segregated membrane microdomains to modulate transmembrane transport and signal transduction

Ning Gao, Bailong Xiao, Peng Zou, Meiqi Li et al.
Nature Communications
Lipid Membrane Structure and Behavior
article

Stomatin organizes laterally segregated membrane microdomains to modulate transmembrane transport and signal transduction

Ning Gao, Bailong Xiao, Peng Zou, Meiqi Li, Xinyue Zhou, Chenxi Wang, Peng Xi, Lu Yan
article en

Abstract

Stomatin is a member of the SPFH (Stomatin, Prohibitin, Flotillin, and HflK/C) protein family, and has been proposed to scaffold functional membrane microdomains (FMMs) on the plasma membrane. Functionally, stomatin has been reported to associate with diverse partner proteins and is implicated in various cellular processes. However, the mechanisms by which it organizes FMMs and exerts its regulatory roles remain unclear. Here, we characterize cryo-EM structures of the stomatin complex, revealing a hexadecameric membrane-anchored assembly that resembles an inverted cup. Sixteen SPFH1 domains insert into the cytosolic leaflet, defining an isolated circular membrane microdomain. Proteomic analyses reveal numerous proteins associated with stomatin, including solute carrier transporters, Rab GTPases and integrins. We further show that stomatin oligomerization is required for integrin-regulated directional cell migration. Together, these findings provide a foundation for understanding the basic role of stomatin in FMM organization and its versatile functions in various physiological and pathological processes. Stomatin is thought to scaffold functional membrane microdomains; but how it works remains unclear. Here, authors reveal its 16-mer structure, identify cargo proteins, and show that the integrity of its cup-like complex is crucial for cell migration

Nature Communications
Peking University (CN), Chinese Institute for Brain Research (CN), Beijing National Laboratory for Molecular Sciences (CN), Center for Life Sciences (CN), State Key Laboratory of Membrane Biology, Key Laboratory of Bioorganic Chemistry and Molecular Engineering, Ministry of Education (CN), Changping Laboratory (CN)
Openalex Percentile: Top 21%
Lipid Membrane Structure and Behavior
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