Defining the layers of a sensory cilium with STORM and cryoelectron nanoscopy.
basic_science · Level V
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- Record sourced from PubMed, PMID 31690665.
- Also identified by DOI 10.1073/pnas.1902003116 and PMC identifier 6876244.
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Abstract
Primary cilia carry out numerous signaling and sensory functions, and defects in them, "ciliopathies," cause a range of symptoms, including blindness. Understanding of their nanometer-scale ciliary substructures and their disruptions in ciliopathies has been hindered by limitations of conventional microscopic techniques. We have combined cryoelectron tomography, enhanced by subtomogram averaging, with superresolution stochastic optical reconstruction microscopy (STORM) to define subdomains within the light-sensing rod sensory cilium of mouse retinas and reveal previously unknown substructures formed by resident proteins. Domains are demarcated by structural features such as the axoneme and its connections to the ciliary membrane, and are correlated with molecular markers of subcompartments, including the lumen and walls of the axoneme, the membrane glycocalyx, and the intervening cytoplasm. Within this framework, we report spatial distributions of key proteins in wild-type (WT) mice and the effects on them of genetic deficiencies in 3 models of Bardet-Biedl syndrome.
Medical subject headings
- Bardet-Biedl Syndrome
- Cilia
- Cryoelectron Microscopy
- Electron Microscope Tomography
- Microscopy, Fluorescence
- Nanotechnology
- Photoreceptor Connecting Cilium
- Rod Cell Outer Segment
- Single Molecule Imaging