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2. Rho GTPase signaling and mDia facilitate endocytosis via presynaptic actin.

3. Region-Specific Phosphorylation Determines Neuroligin-3 Localization to Excitatory Versus Inhibitory Synapses.

4. Synaptotagmin 1-triggered lipid signaling facilitates coupling of exo- and endocytosis.

5. Endosomal phosphatidylinositol 3-phosphate controls synaptic vesicle cycling and neurotransmission.

6. Mechanism of synaptic protein turnover and its regulation by neuronal activity.

7. The axonal endolysosomal and autophagic systems.

8. Synaptic Vesicle Endocytosis Occurs on Multiple Timescales and Is Mediated by Formin-Dependent Actin Assembly.

9. Modes and mechanisms of synaptic vesicle recycling.

11. Specificity of Collybistin-Phosphoinositide Interactions: IMPACT OF THE INDIVIDUAL PROTEIN DOMAINS.

12. A conformational switch in collybistin determines the differentiation of inhibitory postsynapses.

13. Collybistin activation by GTP-TC10 enhances postsynaptic gephyrin clustering and hippocampal GABAergic neurotransmission.

14. Homodimerization and isoform-specific heterodimerization of neuroligins.

15. The role of collybistin in gephyrin clustering at inhibitory synapses: facts and open questions.

16. Neuroligin-4 is localized to glycinergic postsynapses and regulates inhibition in the retina.

17. Neuroligin 2 drives postsynaptic assembly at perisomatic inhibitory synapses through gephyrin and collybistin.

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