In addition, we locate another entrance connecting the #GPCR binding site to the extracellular milieu and link it to the activation by less hydrophobic synthetic agonists https://t.co/Jc5E5TEfND.
Once again @t00mek88 delivers the impressive graphics.
This is AMAZING! 😀 Looking forward to exploring more physiological effects and therapeutic potentials of our gut hormones 👩🔬at @BiomedUCPH @Rigshospitalet@UCPH_health@GPCR_ucph
- now supported by @novonordiskfond
Cell experiments unveil how a potential therapeutic target coordinates cell migration, bioluminescent sensors reveal how molecules called WNTs bend a receptor-effector complex, and more in this week’s issue of #ScienceSignaling. https://t.co/H03lbRmyGE
📰Publication announcement📰
This week in Science Signaling we show that #GPCR#GPR183 internalizes independently of #arrestin, but rather utilizes a mechanism involving #caveolin. Arrestins, though, are crucial for migration mediated through the receptor. https://t.co/GhcXdXNNAq
Important to celebrate 🥳 Today we complete study day 50 (of 80) in the MRI basement at @Rigshospitalet studying GIP+GLP-2 in gut blood flow #alwayschocolate @UCPH_BRIDGE @GPCR_ucph @BiomedUCPH
Long-awaited #4GPCRnet meeting kick-off! 4 days packed with exciting talks, poster presentations and, last but not least, live networking of the GPCR community that we all missed for the last couple of years. Thank you @ErnestNetwork@ca18240@sfb142, #FOR2372, and @UniLeipzig!
Congratulations to Ludvig Schimming Langberg for finishing his master thesis project within gut hormones and their action on intestinal blood flow. Supervised by Lærke Gasbjerg. A learning experience in translational research. Great teamwork by two rising stars. I’m so proud!
Congratulations to Lærke Gasbjerg for her graduation from team 2 of the Bridge programme. Two years of great translational research within gut hormones’ action on intestinal blood supply with a vision of novel therapeutic potential in this system.
Here we elucidate the spectrum of naturally occurring mutations in the intestinal hormone, glucose-dependent insulinotropic polypeptide (GIP), involved in blood glucose homeostasis and bone remodeling #GPCR#GIP
Happy to share that our latest study, "The location of missense variants in the human GIP gene is indicative for natural selection" has been published in @FrontEndocrinol.
Full article (open access): https://t.co/msSi5pOGWB
Great to spend Saturday afternoon with the Danish Diabetes Association @DiabetesDK and recent and previous grant recipients @aWegeberg @linehjort 🌺🏆 // thanks for the support! #GPCR#GIP@GPCR_ucph
@GPCR_ucph@lab_tall He teased about a tethered peptide mechanism huh. So are you saying he dangled the idea out there before ya’ll eventually picked up on it?
Exciting talk by Prof. Kimberley Tolias about the role of Rho GTPase signaling for BAI1 biology. Unfortunately the last talk of our nice workshop! Enjoy the sushi! #adhesionGPCR2022
Thanks to Dr. Rory Morgan for another interesting zebrafish talk about defining small-molecule modulators of Gpr126 mediating Schwann cell myelination #adhesionGPCR2022