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DSCAM Promotes Refinement in the Mouse Retina Through Cell Death and Restriction of Exploring Dendrites

Overview
Journal J Neurosci
Specialty Neurology
Date 2015 Apr 10
PMID 25855178
Citations 33
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Abstract

In this study we develop and use a gain-of-function mouse allele of the Down syndrome cell adhesion molecule (Dscam) to complement loss-of-function models. We assay the role of Dscam in promoting cell death, spacing, and laminar targeting of neurons in the developing mouse retina. We find that ectopic or overexpression of Dscam is sufficient to drive cell death. Gain-of-function studies indicate that Dscam is not sufficient to increase spatial organization, prevent cell-to-cell pairing, or promote active avoidance in the mouse retina, despite the similarity of the Dscam loss-of-function phenotype in the mouse retina to phenotypes observed in Drosophila Dscam1 mutants. Both gain- and loss-of-function studies support a role for Dscam in targeting neurites; DSCAM is necessary for precise dendrite lamination, and is sufficient to retarget neurites of outer retinal cells after ectopic expression. We further demonstrate that DSCAM guides dendrite targeting in type 2 dopaminergic amacrine cells, by restricting the stratum in which exploring retinal dendrites stabilize, in a Dscam dosage-dependent manner. Based on these results we propose a single model to account for the numerous Dscam gain- and loss-of-function phenotypes reported in the mouse retina whereby DSCAM eliminates inappropriately placed cells and connections.

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References
1.
Cvetkovska V, Hibbert A, Emran F, Chen B . Overexpression of Down syndrome cell adhesion molecule impairs precise synaptic targeting. Nat Neurosci. 2013; 16(6):677-82. PMC: 3954815. DOI: 10.1038/nn.3396. View

2.
Okawa H, Hoon M, Yoshimatsu T, Santina L, Wong R . Illuminating the multifaceted roles of neurotransmission in shaping neuronal circuitry. Neuron. 2014; 83(6):1303-1318. PMC: 4168971. DOI: 10.1016/j.neuron.2014.08.029. View

3.
Haydar T, Reeves R . Trisomy 21 and early brain development. Trends Neurosci. 2011; 35(2):81-91. PMC: 3273608. DOI: 10.1016/j.tins.2011.11.001. View

4.
Fuerst P, Koizumi A, Masland R, Burgess R . Neurite arborization and mosaic spacing in the mouse retina require DSCAM. Nature. 2008; 451(7177):470-4. PMC: 2259282. DOI: 10.1038/nature06514. View

5.
Holtzman D, Santucci D, Kilbridge J, Fontana D, Daniels S, Johnson R . Developmental abnormalities and age-related neurodegeneration in a mouse model of Down syndrome. Proc Natl Acad Sci U S A. 1996; 93(23):13333-8. PMC: 24093. DOI: 10.1073/pnas.93.23.13333. View