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Identification of New Ciliary Signaling Pathways in the Brain and Insights into Neurological Disorders

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Journal bioRxiv
Date 2024 Jan 8
PMID 38187761
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Abstract

Primary cilia are conserved sensory hubs essential for signaling transduction and embryonic development. Ciliary dysfunction causes a variety of developmental syndromes with neurological features and cognitive impairment, whose basis mostly remains unknown. Despite connections to neural function, the primary cilium remains an overlooked organelle in the brain. Most neurons have a primary cilium; however, it is still unclear how this organelle modulates brain architecture and function, given the lack of any systemic dissection of neuronal ciliary signaling. Here, we present the first in vivo glance at the molecular composition of cilia in the mouse brain. We have adapted BioID (iBioID), targeting the biotin ligase BioID2 to primary cilia in neurons. We identified tissue-specific signaling networks enriched in neuronal cilia, including Eph/Ephrin and GABA receptor signaling pathways. Our iBioID ciliary network presents a wealth of neural ciliary hits that provides new insights into neurological disorders. Our findings are a promising first step in defining the fundamentals of ciliary signaling and their roles in shaping neural circuits and behavior. This work can be extended to pathological conditions of the brain, aiming to identify the molecular pathways disrupted in the brain cilium. Hence, finding novel therapeutic strategies will help uncover and leverage the therapeutic potential of the neuronal cilium.

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References
1.
Nachury M, Loktev A, Zhang Q, Westlake C, Peranen J, Merdes A . A core complex of BBS proteins cooperates with the GTPase Rab8 to promote ciliary membrane biogenesis. Cell. 2007; 129(6):1201-13. DOI: 10.1016/j.cell.2007.03.053. View

2.
Lee B, Panda S, Lee H . Primary Ciliary Deficits in the Dentate Gyrus of Fragile X Syndrome. Stem Cell Reports. 2020; 15(2):454-466. PMC: 7419715. DOI: 10.1016/j.stemcr.2020.07.001. View

3.
Braun D, Hildebrandt F . Ciliopathies. Cold Spring Harb Perspect Biol. 2016; 9(3). PMC: 5334254. DOI: 10.1101/cshperspect.a028191. View

4.
Sobu Y, Wawro P, Dhekne H, Yeshaw W, Pfeffer S . Pathogenic LRRK2 regulates ciliation probability upstream of tau tubulin kinase 2 via Rab10 and RILPL1 proteins. Proc Natl Acad Sci U S A. 2021; 118(10). PMC: 7958464. DOI: 10.1073/pnas.2005894118. View

5.
Sheu S, Upadhyayula S, Dupuy V, Pang S, Deng F, Wan J . A serotonergic axon-cilium synapse drives nuclear signaling to alter chromatin accessibility. Cell. 2022; 185(18):3390-3407.e18. PMC: 9789380. DOI: 10.1016/j.cell.2022.07.026. View