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1. The adhesion G-protein-coupled receptor mayo/CG11318 controls midgut development in Drosophila

3. Drosophila Bchsoverexpression recapitulates humanWDFY3neurodevelopmental phenotypes with implications for glial cell involvement in altered head circumference

5. Physiology of GPCRs in the nervous system and the contribution of orphan GPCRs

7. High-resolution analysis of individual Drosophila melanogaster larvae uncovers individual variability in locomotion and its neurogenetic modulation

8. Molecular sensing of mechano- and ligand-dependent adhesion GPCR dissociation

9. Intron retention of an adhesion GPCR generates single transmembrane-helix isoforms to enable 7TM-adhesion GPCR function

10. High-resolution analysis of individual Drosophila melanogaster larvae within groups uncovers inter- and intra-individual variability in locomotion and its neurogenetic modulation

11. Altered gene expression profiles impair the nervous system development in individuals with 15q13.3 microdeletion

12. Altered gene expression profiles impair the nervous system development in individuals with 15q13.3 microdeletion

14. The human cognition-enhancing CORD7 mutation increases active zone number and synaptic release

15. Improving one-step scarless genome editing in Drosophila melanogaster by combining ovoD co-CRISPR selection with sgRNA target site masking

16. A guide to adhesion GPCR research

18. Tethered agonist exposure in intact adhesion/class B2 GPCRs through intrinsic structural flexibility of the GAIN domain

19. Astrocytes in stress accumulate lipid droplets

23. The expanding functional roles and signaling mechanisms of adhesion G protein–coupled receptors

24. Complexin cooperates with Bruchpilot to tether synaptic vesicles to the active zone cytomatrix

25. Implications of the Sap47 null mutation for synapsin phosphorylation, longevity, climbing, and behavioural plasticity in adult Drosophila

26. Complexin cooperates with Bruchpilot to tether synaptic vesicles to the active zone cytomatrix

28. Mechano-dependent signaling by Latrophilin/CIRL quenches cAMP in proprioceptive neurons

29. Author response: Mechano-dependent signaling by Latrophilin/CIRL quenches cAMP in proprioceptive neurons

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