Insights into the organization of dorsal spinal cord pathways from an evolutionarily conserved raldh2 intronic enhancer

Author:

Castillo Hozana A.12,Cravo Roberta M.12,Azambuja Ana P.12,Simões-Costa Marcos S.12,Sura-Trueba Sylvia1,Gonzalez Jose3,Slonimsky Esfir3,Almeida Karla4,Abreu José G.4,de Almeida Marcio A. Afonso1,Sobreira Tiago P.1,de Oliveira Saulo H. Pires1,de Oliveira Paulo S. Lopes1,Signore Iskra A.5,Colombo Alicia5,Concha Miguel L.5,Spengler Tatjana S.6,Bronner-Fraser Marianne6,Nobrega Marcelo7,Rosenthal Nadia3,Xavier-Neto José1

Affiliation:

1. LaboratÓrio de Genética e Cardiologia Molecular, InCor-FMUSP, 05403-000, São Paulo, Brazil

2. Departamento de Biologia Celular e do Desenvolvimento, ICB-USP, 05508-000, São Paulo, Brazil

3. European Molecular Biology Laboratory Mouse Biology Programme, via Ramarini 32, Monterotondo-Scalo (RM), Italy

4. Instituto de Ciências Biomédicas, UFRJ, 21941-590, Rio de Janeiro, Brazil

5. Laboratory of Experimental Ontogeny, Nucleus of Neural Morphogenesis, Anatomy and Developmental Biology Program ICBM, Faculty of Medicine Universidad de Chile, Clasificador 7 — Correo 7, Santiago, Chile

6. Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA

7. Department of Human Genetics, University of Chicago, Chicago, IL 60637, USA

Abstract

Comparative studies of the tetrapod raldh2 (aldh1a2) gene, which encodes a retinoic acid (RA) synthesis enzyme, have led to the identification of a dorsal spinal cord enhancer. Enhancer activity is directed dorsally to the roof plate and dorsal-most (dI1) interneurons through predicted Tcf- and Cdx-homeodomain binding sites and is repressed ventrally via predicted Tgif homeobox and ventral Lim-homeodomain binding sites. Raldh2 and Math1/Cath1 expression in mouse and chicken highlights a novel, transient, endogenous Raldh2 expression domain in dI1 interneurons, which give rise to ascending circuits and intraspinal commissural interneurons, suggesting roles for RA in the ontogeny of spinocerebellar and intraspinal proprioceptive circuits. Consistent with expression of raldh2 in the dorsal interneurons of tetrapods, we also found that raldh2 is expressed in dorsal interneurons throughout the agnathan spinal cord, suggesting ancestral roles for RA signaling in the ontogenesis of intraspinal proprioception.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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