βII and βIII spectrin paralogues define robustness and specialization of the neuronal membrane periodic skeleton
Jobin, M.-L.; Sarzynski, L.; Mondin, M.; Charbonnier, T.; Daburon, S.; Chevrier, N.; Belzanne, P.; Jansen, I.; Garlick, E.; Sainlos, M.; Choquet, D.; Brachet, A.
Show abstract
Neuron connectivity and signal processing rely on a complex, dynamic morphology regulated by the cytoskeleton. The membrane-associated periodic skeleton (MPS), a 190-nm periodic actin-spectrin lattice, is a conserved feature of neurons. Here, we show that the dendritic MPS is built from a dual {beta}-spectrin system in which {beta}II- and {beta}III-spectrins are co-expressed and interleaved at the nanoscale in shafts and spine necks. 3D MINFLUX nanoscopy suggests that these paralogues form both homotypic ({beta}II- or {beta}III-only) and heterotypic ({beta}II/{beta}III) tetramers with an approximately 100-nm radial periodicity. Either paralogue alone is sufficient to maintain lattice architecture, whereas their combined loss disrupts MPS integrity. Using targeted mutagenesis, we show that actin binding is required to stabilize both paralogues within the MPS, whereas {beta}III-spectrin additionally depends on phosphoinositide interactions. Our findings reveal that, unlike the axonal MPS, the dendritic MPS is a composite scaffold in which structural redundancy coexists with paralogue-specific regulatory mechanisms, with potential consequences for synaptic function.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Proteomic and functional analyses of the periodic membrane skeleton in neurons 97%
- Endoplasmic reticulum visits highly active spines and prevents runaway potentiation of synapses 97%
- Antibody-directed extracellular proximity biotinylation reveals Contactin-1 regulates axo-axonic innervation of axon initial segments. 97%
Similar papers in this journal
- MDGAs are fast-diffusing molecules that delay excitatory synapse development by altering neuroligin behavior 97%
- Environmental enrichment enhances patterning and remodeling of synaptic nanoarchitecture revealed by STED nanoscopy 97%
- Sequential replacement of PSD95 subunits in postsynaptic supercomplexes is slowest in the cortex. 96%
Similar papers in this journal
- The Integrated Stress Response effector GADD34 is repurposed by neurons to promote stimulus-induced translation 95%
- Microglia reactivity entails microtubule remodeling from acentrosomal to centrosomal arrays 95%
- CTNND2 regulation by the SRGAP2 protein family links human evolution to synaptic neoteny 95%
Similar papers in this journal
- Stable but not rigid: Long-term in vivo STED nanoscopy uncovers extensive remodeling of stable spines and indicates multiple drivers of structural plasticity 97%
- Sodium channel endocytosis drives axon initial segment plasticity 96%
- Membrane-associated periodic skeleton regulates major forms of endocytosis in neurons through a signaling-driven positive feedback loop 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.