Gβγ engages PLCβ3 at multiple sites to reorient and facilitate its activation

Phospholipase C β (PLCβ) enzymes are activated by heterotrimeric G protein subunits, increasing hydrolysis of phosphatidylinositol-4,5-bisphosphate (PI(4,5)P2) at the plasma membrane. All four human PLCβ isoforms (PLCβ1–4) are activated by Gα q , whereas PLCβ1–3 are activated to varying extents by Gβγ. The binding sites for Gα q on PLCβ are well established, and much has been learned about its mechanism of activation, but comparatively little is known about Gβγ-dependent activation. In this work, we used cryo-electron microscopy single-particle analysis, functional assays, and bioluminescence resonance energy transfer to investigate how Gβγ interacts with PLCβ3 in concert with activated Gα q to regulate phospholipase activity. Gβγ heterodimers bind multiple surfaces of PLCβ3 to promote activation, but alone do not recruit the enzyme to the plasma membrane. Instead, Gβγ facilitates activation by Gα q , most likely by reorienting the phospholipase catalytic site at the membrane to maximize PI(4,5)P2 hydrolysis and downstream Ca 2+ release. Cell-based functional assays demonstrate that Gβγ is required for maximal PLCβ3 activation, even when G q heterotrimers are the sole source of Gβγ. Together, these findings demonstrate that Gβγ acts as a critical positive allosteric modulator that regularly acts in concert with Gα q to activate PLCβ3 at the plasma membrane.

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Publication Details

Journal
eLife
Published
2026-09-30
DOI
https://doi.org/10.7554/elife.110382.3
Primary Topic
Protein Kinase Regulation and GTPase Signaling
Type
article
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article

Gβγ engages PLCβ3 at multiple sites to reorient and facilitate its activation

Nevin A. Lambert, Kanishka Senarath, Leon F. Laskowski, Isaac J. Fisher et al.
eLife
Protein Kinase Regulation and GTPase Signaling
article

Gβγ engages PLCβ3 at multiple sites to reorient and facilitate its activation

Nevin A. Lambert, Kanishka Senarath, Leon F. Laskowski, Isaac J. Fisher, Kennedy Outlaw, Angeline M. Lyon, Evi Kostenis, Michelle M. Van Camp, Kaushik Muralidharan, Elisabeth E. Garland-Kuntz, Asuka Inoue, Thomas Komay
article en

Abstract

Phospholipase C β (PLCβ) enzymes are activated by heterotrimeric G protein subunits, increasing hydrolysis of phosphatidylinositol-4,5-bisphosphate (PI(4,5)P2) at the plasma membrane. All four human PLCβ isoforms (PLCβ1–4) are activated by Gα q , whereas PLCβ1–3 are activated to varying extents by Gβγ. The binding sites for Gα q on PLCβ are well established, and much has been learned about its mechanism of activation, but comparatively little is known about Gβγ-dependent activation. In this work, we used cryo-electron microscopy single-particle analysis, functional assays, and bioluminescence resonance energy transfer to investigate how Gβγ interacts with PLCβ3 in concert with activated Gα q to regulate phospholipase activity. Gβγ heterodimers bind multiple surfaces of PLCβ3 to promote activation, but alone do not recruit the enzyme to the plasma membrane. Instead, Gβγ facilitates activation by Gα q , most likely by reorienting the phospholipase catalytic site at the membrane to maximize PI(4,5)P2 hydrolysis and downstream Ca 2+ release. Cell-based functional assays demonstrate that Gβγ is required for maximal PLCβ3 activation, even when G q heterotrimers are the sole source of Gβγ. Together, these findings demonstrate that Gβγ acts as a critical positive allosteric modulator that regularly acts in concert with Gα q to activate PLCβ3 at the plasma membrane.

eLifeVol. 15
Nationwide Children's Hospital (US), University of Bonn (DE), Tohoku University (JP), Purdue University West Lafayette (US), Kyoto University (JP), Augusta University (US)
Affordable and clean energy
Openalex Percentile: Top 20%
Protein Kinase Regulation and GTPase Signaling
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