4.8 Article

Super-resolution microscopy compatible fluorescent probes reveal endogenous glucagon-like peptide-1 receptor distribution and dynamics

Journal

NATURE COMMUNICATIONS
Volume 11, Issue 1, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-020-14309-w

Keywords

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Funding

  1. Diabetes UK [12/0004431, 17/0005681]
  2. Wellcome Trust [095101, 200837, 106130]
  3. MRC Confidence in Concept
  4. MRC [MR/N00275X/1, MR/S025618/1, MR/R010676/1, MR/N02589X/1]
  5. MRC CDA Fellowship [MR/P009824/1]
  6. Human Islet Research Network [UC4 DK104162, RRID: SCR_014393]
  7. NIH NIDDK Grant [P30 DK097512]
  8. CIHR [PJT 156377]
  9. Juvenile Diabetes Research Foundation
  10. Michael Smith Foundation for Health Research
  11. Manpei Suzuki Diabetes Foundation
  12. NIH [R01 DK095757]
  13. Deutsche Forschungsgemeinschaft [SFB/Transregio 166]
  14. Wellcome Trust Senior Research Fellowship [212313/Z/18/Z]
  15. European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme [715884]
  16. [R03 DK115990]
  17. MRC [MC_UU_00014/3, MR/P009824/2, MR/N02589X/1, 1854365, MR/R010676/1, MR/P009824/1, MC_UU_12012/3, MC_UU_00014/5, MR/N00275X/1, MR/S025618/1] Funding Source: UKRI

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The glucagon-like peptide-1 receptor (GLP1R) is a class B G protein-coupled receptor (GPCR) involved in metabolism. Presently, its visualization is limited to genetic manipulation, antibody detection or the use of probes that stimulate receptor activation. Herein, we present LUXendin645, a far-red fluorescent GLP1R antagonistic peptide label. LUXendin645 produces intense and specific membrane labeling throughout live and fixed tissue. GLP1R signaling can additionally be evoked when the receptor is allosterically modulated in the presence of LUXendin645. Using LUXendin645 and LUXendin651, we describe islet, brain and hESC-derived beta-like cell GLP1R expression patterns, reveal higher-order GLP1R organization including membrane nanodomains, and track single receptor subpopulations. We furthermore show that the LUXendin backbone can be optimized for intravital two-photon imaging by installing a red fluorophore. Thus, our super-resolution compatible labeling probes allow visualization of endogenous GLP1R, and provide insight into class B GPCR distribution and dynamics both in vitro and in vivo. Glucagon-like peptide-1 receptor is an important regulator of appetite and glucose homeostasis. Here the authors describe super-resolution microscopy and in vivo imaging compatible fluorescent probes, which reveal endogenous glucagon-like peptide-1 receptor distribution and dynamics in islets and brain.

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