4.5 Article

Somal positioning and dendritic growth of horizontal cells are regulated by interactions with homotypic neighbors

Journal

EUROPEAN JOURNAL OF NEUROSCIENCE
Volume 27, Issue 7, Pages 1607-1614

Publisher

WILEY
DOI: 10.1111/j.1460-9568.2008.06132.x

Keywords

cone photoreceptor; differentiation; mouse; outer plexiform layer; pedicle; retinal mosaic

Categories

Funding

  1. NEI NIH HHS [T32 EY007102, R01 EY013128-07, R01 EY013128-06A1, R32 EY07102, R01 EY011087, R01 EY013128-08, R01 EY011087-08, T32 EY007102-12, R01 EY013128, T32 EY007102-13, R01 EY011087-07A1, R01 EY011087-09, T32 EY007102-14] Funding Source: Medline
  2. NICHD NIH HHS [R01 HD030284, R01 HD030284-15] Funding Source: Medline
  3. ONDIEH CDC HHS [R01 ND30284] Funding Source: Medline

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Retinal neurons extend their dendritic fields to achieve a degree of dendritic overlap with homotypic neighbors that is cell-type specific. How these neurons regulate their dendritic growth is unclear. The dendritic field of a retinal horizontal cell varies inversely with horizontal cell density across different strains of mice, suggesting that proximity to neighboring cells regulates dendritic growth. To test this directly, we have employed the Cre-loxP conditional gene targeting strategy to achieve inactivation of Lim1 function in developing horizontal cells. Through this approach, Lim1 function was prevented within a subset of horizontal cells that in turn fail to migrate to the horizontal cell layer and differentiate normally. For those remaining horizontal cells with Lim1 intact (about half of the normal population in these mice), we show that they spread themselves out tangentially and differentiate a dendritic morphology that is essentially normal but for the fact that it has nearly doubled in area. Such larger horizontal cells, sampling from an area of retina containing twice their normal afferent number, differentiate a dendritic field with nearly double the number of higher order branches and terminal clusters. These results demonstrate directly that positioning and dendritic growth are regulated by interactions with homotypic neighbors, whereas afferents instruct the differentiation of dendritic patterning.

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