| Literature DB >> 15797718 |
Véronique Marthiens1, Julie Gavard, Françoise Padilla, Céline Monnet, Valérie Castellani, Mireille Lambert, René-Marc Mège.
Abstract
We previously observed that cadherin-11, a type II cadherin, is expressed in growing motor and sensory axons in the mouse embryo. Here, we assessed its functional involvement in the regulation of axon elongation and fasciculation by evaluating the activity of a specific cadherin-11 homophilic ligand, cad11-Fc (cadherin-11 extracellular region fused to Fc fragment of IgG), on the length and organization of motor axons outgrowing from embryonic ventral spinal cord explants. Cad11-Fc substrate enhanced axon growth and prevented interactions occurring between growing axons, providing evidences for a role of cadherin-11 in the control of growth cone progression. Comparison of cadherin-11 with N-cadherin, a type I cadherin concomitantly expressed by motor axons, revealed similarities in their functional properties, including the ability to reorganize the actin cytoskeleton through interactions with catenins, but differences in their axon growth-promoting activity, arguing for subtle differences in their contributions to peripheral nerve elongation.Entities:
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Year: 2005 PMID: 15797718 DOI: 10.1016/j.mcn.2004.12.001
Source DB: PubMed Journal: Mol Cell Neurosci ISSN: 1044-7431 Impact factor: 4.314