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September 19, 2025Proceedings of the National Academy of Sciences4 citationsOpen Access

Dimerization propensity of the β 1 -adrenergic receptor in lipid nanodiscs probed by DEER and single-molecule spectroscopies

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NKNina KubatovaTSThomas SchmidtQWQuan Wang

Key Points

  • β 1 -adrenergic receptor shows increased dimerization in lipid nanodiscs compared to micelles.
  • Over 50% of β 1 -adrenergic receptor molecules form dimers in large lipid nanodiscs (~12.5 nm diameter).
  • Dimerization was suppressed by cholesteryl hemisuccinate, indicating sensitivity to membrane composition.
  • This study highlights the role of membrane constraints in modulating dimerization of class A GPCRs.

Abstract

G protein–coupled receptors (GPCRs) comprise a large class of membrane proteins that mediate cellular responses to a wide range of external signals and as such constitute major drug targets. While oligomerization has been shown to play a well-established role in modulating signaling for class C GPCRs (e.g., the glutamate and GABA receptors), the functional relevance of oligomerization for class A receptors, such as the β 1 -adrenergic receptor (β 1 AR), remains unclear. Here, we have examined the influence of the membrane mimetic environment on the dimerization propensity of β 1 AR using a combination of pulsed Q-band double electron–electron resonance spectroscopy and single-molecule fluorescence brightness measurements in an Anti-Brownian Elektrokinetic trap. While β 1 AR is predominantly monomeric in docecyl-β-D-maltoside (DDM) micelles, reconstitution of β 1 AR in lipid nanodiscs preferentially favors symmetric parallel dimers. Using nanodiscs of different diameters we observed a clear size-dependent increase in the dimer fraction, reaching over 50% of the β 1 AR molecules in large (~12.5 nm diameter) nanodiscs. Addition of cholesteryl hemisuccinate, an analog of cholesterol, suppresses β 1 AR dimerization in lipid nanodiscs, recapitulating the behavior in DDM micelles. This work provides quantitative evidence that β 1 AR possesses an intrinsic, membrane sensitive predisposition for dimerization, and highlights the importance of spatial membrane constraints in the modulation of class A GPCR dimerization.

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Cite This Study

Kubatova et al. (2025) studied this question.

synapsesocial.com/papers/68d464ea31b076d99fa64185https://doi.org/10.1073/pnas.2519609122
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