Slow kinesin-dependent microtubular transport facilitates ribbon synapse assembly in developing cochlear inner hair cells
Voorn, R. A.; Sternbach, M.; Jarysta, A.; Rankovic, V.; Tarchini, B.; Wolf, F.; Vogl, C.
Show abstract
Sensory synapses are characterized by electron-dense presynaptic specializations, so-called synaptic ribbons. In cochlear inner hair cells (IHCs), ribbons play an essential role as core active zone (AZ) organizers, where they tether synaptic vesicles, cluster calcium channels and facilitate the temporally-precise release of primed vesicles. While a multitude of studies aimed to elucidate the molecular composition and function of IHC ribbon synapses, the developmental formation of these signalling complexes remains largely elusive to date. To address this shortcoming, we performed long-term live-cell imaging of fluorescently-labelled ribbon precursors in young postnatal IHCs to track ribbon precursor motion. We show that ribbon precursors utilize the apico-basal microtubular (MT) cytoskeleton for targeted trafficking to the presynapse, in a process reminiscent of slow axonal transport in neurons. During translocation, precursor volume regulation is achieved by highly dynamic structural plasticity - characterized by regularly-occurring fusion and fission events. Pharmacological MT destabilization negatively impacted on precursor translocation and attenuated structural plasticity, whereas genetic disruption of the anterograde molecular motor Kif1a impaired ribbon volume accumulation during developmental maturation. Combined, our data thus indicate an essential role of the MT cytoskeleton and Kif1a in adequate ribbon synapse formation and structural maintenance.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Optogenetics and electron tomography for structure-function analysis of cochlear ribbon synapses 96%
- Differential axonal trafficking of Neuropeptide Y-, LAMP1- and RAB7-tagged organelles in vivo 96%
- Live imaging of hair bundle polarity acquisition in the mouse utricle demonstrates a critical timeline for transcription factor Emx2 96%
Similar papers in this journal
- RIM-Binding Protein 2 organizes Ca2+ channel topography and regulates release probability and vesicle replenishment at a fast central synapse 96%
- Excitable axonal domains adapt to sensory deprivation in the olfactory system 95%
- Intrinsic neuronal activity during migration controls the recruitment of specific interneuron subtypes in the postnatal mouse olfactory bulb 95%
Similar papers in this journal
- Optical measurement of glutamate release robustly reports short-term plasticity at a fast central synapse 94%
- A human TSC1 mutation screening platform in GABAergic cortical interneurons for Genotype to Phenotype assessments 94%
- Nanoscopical analysis reveals an orderly arrangement of the presynaptic scaffold protein Bassoon at the Golgi-apparatus 94%
Similar papers in this journal
- Tropomyosin Tpm3.1 is required to maintain the structure and function of the axon initial segment 95%
- Apicosome: newly identified cell-type-specific organelle in mouse cochlear and vestibular hair cells 95%
- The node of Ranvier influences the in vivo axonal transport of mitochondria and signalling endosomes 95%
Similar papers in this journal
"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.