Rapid assembly of functional presynaptic boutons triggered by adhesive contacts

AL Lucido, FS Sanchez, P Thostrup… - Journal of …, 2009 - Soc Neuroscience
AL Lucido, FS Sanchez, P Thostrup, AV Kwiatkowski, S Leal-Ortiz, G Gopalakrishnan…
Journal of Neuroscience, 2009Soc Neuroscience
CNS synapse assembly typically follows after stable contacts between “appropriate” axonal
and dendritic membranes are made. We show that presynaptic boutons selectively form de
novo following neuronal fiber adhesion to beads coated with poly-d-lysine (PDL), an artificial
cationic polypeptide. As demonstrated by atomic force and live confocal microscopy,
functional presynaptic boutons self-assemble as rapidly as 1 h after bead contact, and are
found to contain a variety of proteins characteristic of presynaptic endings. Interestingly …
CNS synapse assembly typically follows after stable contacts between “appropriate” axonal and dendritic membranes are made. We show that presynaptic boutons selectively form de novo following neuronal fiber adhesion to beads coated with poly-d-lysine (PDL), an artificial cationic polypeptide. As demonstrated by atomic force and live confocal microscopy, functional presynaptic boutons self-assemble as rapidly as 1 h after bead contact, and are found to contain a variety of proteins characteristic of presynaptic endings. Interestingly, presynaptic compartment assembly does not depend on the presence of a biological postsynaptic membrane surface. Rather, heparan sulfate proteoglycans, including syndecan-2, as well as others possibly adsorbed onto the bead matrix or expressed on the axon surface, are required for assembly to proceed by a mechanism dependent on the dynamic reorganization of F-actin. Our results indicate that certain (but not all) nonspecific cationic molecules like PDL, with presumably electrostatically mediated adhesive properties, can effectively bypass cognate and natural postsynaptic ligands to trigger presynaptic assembly in the absence of specific target recognition. In contrast, we find that postsynaptic compartment assembly depends on the prior presence of a mature presynaptic ending.
Soc Neuroscience