UDP-glucose Activation of a G-protein/Sucrose Synthase Signaling Supercomplex
Jia, H.; Lou, F.; Watkins, J.; Oliveira, C. C.; Tate, C. G.; Jones, A. M.
Show abstract
Arabidopsis thaliana REGULATOR OF G PROTEIN SIGNALING 1 (AtRGS1, hereafter, RGS1) within the heterotrimeric G protein complex plays a role in sensing extracellular signals. High millimolar concentrations of some sugars induce RGS1 endocytosis and therefore G protein activation. However, this is not likely a direct, rather an indirect effect through a sugar metabolite. One metabolite at the plasma membrane where RGS1 resides is UDP-glucose (UDPG) produced by SUCROSE SYNTHASE (SUS) enzymes, previously shown to interact with RGS1. Our direct measurements indicate that the Kd for UDPG binding to RGS1 (2.4 {micro}M) is consistent with UDPG activation of RGS1 with an EC50 of 17 {micro}M to rapidly trigger G protein activation within minutes. RGS1 associates directly with SUS1 and SUS4, exhibiting affinities (Kd = 161 nM and 106 nM, respectively) that are markedly tighter than the corresponding Km values for UDPG formation (40 {micro}M and 70 {micro}M, respectively). Therefore, SUS may be one source for this RGS1 ligand in a manner analogous to "metabolite funneling" in enzymology. UDPG induces rapid phosphorylation of RGS1 at the C-terminal phosphorylation cluster, a site previously implicated in RGS1 endocytosis and G protein activation. UDPG activation of RGS1 changes the global transcript profiles in various processes, largely involving plant defense. These results provide the first molecular evidence for UDPG as a newly recognized low-molecular weight signal controlling key aspects of plant physiology.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Endosidin20 targets cellulose synthase catalytic domain to inhibit cellulose biosynthesis 96%
- TOR coordinates nucleotide availability with ribosome biogenesis in plants 96%
- Constitutive activation of leucine-rich repeat receptor kinase signaling pathways by BAK1-interacting receptor-like kinase 3 chimera 96%
Similar papers in this journal
- Unbiased proteomic and forward genetic screens reveal that mechanosensitive ion channel MSL10 functions at ER-plasma membrane contact sites in Arabidopsis thaliana 96%
- The Arabidopsis SAC9 Enzyme is enriched in a cortical population of early endosomes and restricts PI(4,5)P2 at the Plasma Membrane 96%
- Regulation of immune receptor kinases plasma membrane nanoscale landscape by a plant peptide hormone and its receptors 96%
Similar papers in this journal
- Diphthamide formation in Arabidopsis requires DPH1-interacting DPH2 for light and oxidative stress resistance 96%
- Direct and indirect responses of the Arabidopsis transcriptome to an induced increase in trehalose 6-phosphate 95%
- Molecular characterization of differences between the tomato immune receptors Fls3 and Fls2 95%
Similar papers in this journal
- Brassinosteroid recruits FERONIA to safeguard cell expansion in Arabidopsis 96%
- Direct acetylation of the conserved threonine of an immune regulator by bacterial effectors activates RPM1-dependent immunity in Arabidopsis 95%
- DET1-mediated COP1 regulation avoids HY5 activity over second-site targets to tune plant photomorphogenesis 95%
Similar papers in this journal
- Arabidopsis PROTODERMAL FACTOR2 binds lysophosphatidylcholines and transcriptionally regulates phospholipid metabolism 96%
- The Ralstonia solanacearum effector RipAV targets Plant U-box proteins and induces proteasomal-dependent degradation of BIK1 96%
- A plastidial retrograde-signal potentiates biosynthesis of systemic stress response activators 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.