Heterotrimeric G proteins containing Gβ1γ2 subunits exhibit subtype-specific mobility differences in live cells

Heterotrimeric G proteins are key signal transducers in all eukaryotic cells. Anchored to the inner leaflet of the plasma membrane, they transmit and amplify extracellular chemical and physical signals downstream of G protein-coupled receptors. Despite numerous available studies, many biophysical aspects that regulate G protein signaling, including membrane mobility, remain poorly understood. Here, using single-molecule imaging, we show that different subtypes of heterotrimeric G proteins containing Gβ 1 γ 2 subunits exhibit high diversity in their membrane mobility. We demonstrate that the nature of the Gα subunit plays a major role in defining the mobility of such heterotrimers. Our results indicate that heterotrimers containing Gα 12 and Gα 13 subunits exhibit markedly reduced mobility compared to those containing Gα i/o and Gα s subunits. These findings identify subtype-specific lateral membrane mobility of G proteins as a factor that can affect their signaling dynamics in living cells.

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Journal
PLoS ONE
Published
2026-09-29
DOI
https://doi.org/10.1371/journal.pone.0359304
Primary Topic
Protein Kinase Regulation and GTPase Signaling
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article
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article

Heterotrimeric G proteins containing Gβ1γ2 subunits exhibit subtype-specific mobility differences in live cells

Ondřej Kuchyňka, Alexey Bondar, Tomáš Fessl, Mia NUßBAUMER et al.
PLoS ONE
Protein Kinase Regulation and GTPase Signaling
article

Heterotrimeric G proteins containing Gβ1γ2 subunits exhibit subtype-specific mobility differences in live cells

Ondřej Kuchyňka, Alexey Bondar, Tomáš Fessl, Mia NUßBAUMER, Ekaterina Sviridova, Andrei Kovalchuk
article en

Abstract

Heterotrimeric G proteins are key signal transducers in all eukaryotic cells. Anchored to the inner leaflet of the plasma membrane, they transmit and amplify extracellular chemical and physical signals downstream of G protein-coupled receptors. Despite numerous available studies, many biophysical aspects that regulate G protein signaling, including membrane mobility, remain poorly understood. Here, using single-molecule imaging, we show that different subtypes of heterotrimeric G proteins containing Gβ 1 γ 2 subunits exhibit high diversity in their membrane mobility. We demonstrate that the nature of the Gα subunit plays a major role in defining the mobility of such heterotrimers. Our results indicate that heterotrimers containing Gα 12 and Gα 13 subunits exhibit markedly reduced mobility compared to those containing Gα i/o and Gα s subunits. These findings identify subtype-specific lateral membrane mobility of G proteins as a factor that can affect their signaling dynamics in living cells.

PLoS ONEVol. 21(9)
Czech Academy of Sciences (CZ), University of South Bohemia in České Budějovice (CZ), Institute of Plant Molecular Biology (CZ), Institute of Parasitology (CZ), Czech Academy of Sciences, Biology Centre (CZ)
Life in Land
Openalex Percentile: Top 20%
Protein Kinase Regulation and GTPase Signaling
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Heterotrimeric G proteins containing Gβ1γ2 subunits exhibit subtype-specific mobility differences in live cells — Ondřej Kuchyňka, Alexey Bondar, et al. · PLoS ONE (2026) | TGRS Research Map | TGRS