Literature DB >> 31685652

Zebrafish dscaml1 Deficiency Impairs Retinal Patterning and Oculomotor Function.

Manxiu Ma1,2, Alexandro D Ramirez3, Tong Wang1, Rachel L Roberts1,4, Katherine E Harmon5, David Schoppik5, Avirale Sharma1, Christopher Kuang1,6, Stephanie L Goei7, James A Gagnon8, Steve Zimmerman8, Shengdar Q Tsai9,10, Deepak Reyon9,10, J Keith Joung9,10, Emre R F Aksay3, Alexander F Schier8,11, Y Albert Pan12,2,13,14.   

Abstract

Down syndrome cell adhesion molecules (dscam and dscaml1) are essential regulators of neural circuit assembly, but their roles in vertebrate neural circuit function are still mostly unexplored. We investigated the functional consequences of dscaml1 deficiency in the larval zebrafish (sexually undifferentiated) oculomotor system, where behavior, circuit function, and neuronal activity can be precisely quantified. Genetic perturbation of dscaml1 resulted in deficits in retinal patterning and light adaptation, consistent with its known roles in mammals. Oculomotor analyses revealed specific deficits related to the dscaml1 mutation, including severe fatigue during gaze stabilization, reduced saccade amplitude and velocity in the light, greater disconjugacy, and impaired fixation. Two-photon calcium imaging of abducens neurons in control and dscaml1 mutant animals confirmed deficits in saccade-command signals (indicative of an impairment in the saccadic premotor pathway), whereas abducens activation by the pretectum-vestibular pathway was not affected. Together, we show that loss of dscaml1 resulted in impairments in specific oculomotor circuits, providing a new animal model to investigate the development of oculomotor premotor pathways and their associated human ocular disorders.SIGNIFICANCE STATEMENT Dscaml1 is a neural developmental gene with unknown behavioral significance. Using the zebrafish model, this study shows that dscaml1 mutants have a host of oculomotor (eye movement) deficits. Notably, the oculomotor phenotypes in dscaml1 mutants are reminiscent of human ocular motor apraxia, a neurodevelopmental disorder characterized by reduced saccade amplitude and gaze stabilization deficits. Population-level recording of neuronal activity further revealed potential subcircuit-specific requirements for dscaml1 during oculomotor behavior. These findings underscore the importance of dscaml1 in the development of visuomotor function and characterize a new model to investigate potential circuit deficits underlying human oculomotor disorders.
Copyright © 2020 the authors.

Entities:  

Keywords:  Dscaml1; development; eye movement; retina; saccade; zebrafish

Mesh:

Substances:

Year:  2019        PMID: 31685652      PMCID: PMC6939486          DOI: 10.1523/JNEUROSCI.1783-19.2019

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  74 in total

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8.  Spatial gradients and multidimensional dynamics in a neural integrator circuit.

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10.  Electron Microscopic Reconstruction of Functionally Identified Cells in a Neural Integrator.

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  2 in total

1.  Structural Neural Connectivity Analysis in Zebrafish With Restricted Anterograde Transneuronal Viral Labeling and Quantitative Brain Mapping.

Authors:  Manxiu Ma; Stanislav Kler; Y Albert Pan
Journal:  Front Neural Circuits       Date:  2020-01-23       Impact factor: 3.492

Review 2.  The tectum/superior colliculus as the vertebrate solution for spatial sensory integration and action.

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Journal:  Curr Biol       Date:  2021-06-07       Impact factor: 10.900

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