Encoding of several sensory modalities into neural signals is mediated by ribbon synapses. The synaptic ribbon tethers synaptic vesicles at the presynaptic active zone (AZ) and may act as a super-scaffold organizing AZ topography. Here, we employed a synthetic biology approach to reconstitute structures mimicking ribbon-type AZs in human embryonic kidney 293 (HEK293) cells for probing minimal molecular requirements and studying presynaptic Ca(2+) channel clustering. Co-expressing a membrane-targeted version of the AZ protein Bassoon and the ribbon core protein RIBEYE, we observed structures recapitulating basic aspects of ribbon-type AZs, which we call synthetic ribbons or SyRibbons. Super-resolution stimulated emission depletion (STED) microscopy and cryo-correlative electron tomography revealed SyRibbons were similar to native ribbons at AZs of cochlear inner hair cells in shape and size. SyRibbons with Ca(2+) channel clusters formed upon additional expression of Ca(V)1.3 Ca(2+) channels and RIM-binding protein 2 (RBP2). Ca(V)1.3 Ca(2+) channel clusters associated with SyRibbons were larger than ribbonless Ca(V)1.3 Ca(2+) channel clusters, and functional analysis by Ca(2+) imaging in combination with patch clamp showed partial confinement of the Ca(2+) signal at SyRibbons. In summary, we identify Ca(2+) channels, RBP, membrane-anchored Bassoon, and RIBEYE as minimal components for reconstituting a basic ribbon-type AZ. SyRibbons might complement animal studies on molecular interactions of AZ proteins.
Establishing synthetic ribbon-type active zones in a heterologous expression system.
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作者:Kapoor Rohan, Do Thanh Thao, Schwenzer Niko, Petrovic Arsen, Dresbach Thomas, Lehnart Stephan E, Fernández-Busnadiego Rubén, Moser Tobias
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2026 | 起止号: | 2026 Jan 13; 13:RP98254 |
| doi: | 10.7554/eLife.98254 | ||
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