Skip to content
Open access

Identification of a transient receptor potential channel that is regulated by phospholipid asymmetry

Aug 2026 · bioRxiv · 0 citations · 18 references
Biology

TL;DR

This work identifies TRPM8 as a phospholipid asymmetry-dependent ion channel and establishes an experimental strategy for systematically identifying membrane proteins regulated by phospholipid asymmetry, providing a foundation for future studies investigating the biological significance of this fundamental membrane property.

Abstract

Phospholipid asymmetry is a hallmark of mammalian cell membranes and reflects the selective distribution of distinct phospholipid species between the two leaflets of the lipid bilayer. Although this asymmetry is tightly maintained, the membrane proteins whose functions depend on it remain largely unknown. To perturb phospholipid asymmetry experimentally, we expressed a constitutively active phospholipid scramblase and thereby identified transient receptor potential melastatin 8 (TRPM8) as an ion channel regulated by this membrane property. Activation of TRPM8 by both l-menthol and innocuous cold was markedly suppressed following disruption of phospholipid asymmetry. Likewise, selective depletion of phosphatidylserine (PS), a phospholipid enriched in the cytoplasmic leaflet, using a cytosolically targeted PS decarboxylase attenuated TRPM8 activation, indicating that cytoplasmic PS is required for proper TRPM8 function. Mechanistically, our findings suggest that cytoplasmic PS supports efficient TRPM8 activation by maintaining the biochemical state of the channel. Together, these findings identify TRPM8 as a phospholipid asymmetry-dependent ion channel and establish an experimental strategy for systematically identifying membrane proteins regulated by phospholipid asymmetry. This work provides a foundation for future studies investigating the biological significance of this fundamental membrane property.

Read PDF

Similar papers

#protein folding Open access Aug 2026

Regulation of the human voltage-gated proton channel by membrane sterols

This work identified the key molecular determinant in the hHv1 channel that mediates cholesterol inhibition and also provided a mechanism linking the conversion between demosterol and cholesterol by DHCR24 to pH homeostasis in many cells, such as phagocytes, cardiomyocytes, neurons and microglial cells.

Shuo Han, R. Duan, Sarah Applewhite et al. · 0 citations
Review Sep 2026

Lipid flip-flop in biological membranes: through the lens of TMEM16F.

The asymmetric distribution of phospholipids between membrane leaflets is a hallmark of all known cells, yet many fundamental questions about membrane lipid asymmetry remain unanswered. Why do cells invest energy to establish and maintain this thermodynamically unstable state? How do cells exploit lipid asymmetry to su...

Shan Z. Ke, Augustus J. Lowry, Maria A. Gonzalez Torres et al. · 0 citations
Open access Aug 2026

Cellular membranes of the related fission yeast species differ in their dipole potential

The dielectric environment and membrane dipole potential are key electrostatic properties of biological membranes, which modulate the function of membrane-associated proteins. If and how these properties are shaped by species-specific cellular lipid landscapes is a fundamental question. Here we use two related fission...

Bhagyashree Dasari Rao, Snezhana Oliferenko · 0 citations
Open access Aug 2026

Differential lipid selectivity of StARD phospholipid transporters revealed by native MS

Intracellular lipid transport in eukaryotes is largely mediated by lipid transfer proteins (LTPs). Transport kinetics differ markedly among lipid species, implying selective lipid recognition by the involved proteins. Here, we characterize endogenous ligands of the human phospholipid transporters STARD2, STARD7, and...

Carla Kirschbaum, Sophie A. S. Lawrence, Jack L. Bennett et al. · 0 citations
Open access Aug 2026

Lipid modulation in a model K+ channel occurs through alterations at both, the inner and the outer channel gates.

This paper reports on a plausible mechanism of modulation by anionic phospholipids of KcsA, a model prokaryotic potassium channel. A first conclusion is that the association of anionic phospholipids with KcsA occurs at discrete regions located near both the extracellular and intracellular channel gates. This same behav...

Carlos Coll-Diez, A. Giudici, Javier Soriano Botella et al. · 0 citations
Open access Jul 2026

Anionic lipids regulate PLCβ membrane recruitment

Phospholipase C-β (PLCβ) enzymes are essential effectors of G protein-coupled receptor signaling that hydrolyze phosphatidylinositol 4,5-bisphosphate (PIP2) at the plasma membrane to generate the second messengers inositol trisphosphate and diacylglycerol. PLCβs play essential roles in diverse physiological processes,...

M. D. Crawford, Marie B. Bennett, Yu Qin et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.