Syndecan-1 regulates BMP signaling and dorso-ventral patterning of the ectoderm during early Xenopus development

Olivares, GH; Carrasco H.; Aroca, F; Carvallo L; Segovia, F; Larrain, J

Abstract

Extracellular regulation of growth factor signaling is a key event for embryonic patterning. Heparan sulfate proteoglycans (HSPG) are among the molecules that regulate this signaling during embryonic development. Here we study the function of syndecan1 (Syn1), a cell-surface HSPG expressed in the non-neural ectoderm during early development of Xenopus embryos. Overexpression of Xenopus Syn1 (xSyn1) mRNA is sufficient to reduce BMP signaling, induce chordin expression and rescue dorso-ventral patterning in ventralized embryos. Experiments using chordin morpholinos established that xSyn1 mRNA can inhibit BMP signaling in the absence of chordin. Knockdown of xSyn1 resulted in a reduction of BMP signaling and expansion of the neural plate with the concomitant reduction of the non-neural ectoderm. Overexpression of xSyn1 mRNA in xSyn1 morphant embryos resulted in a biphasic effect, with BMP being inhibited at high concentrations and activated at low concentrations of xSyn1. Interestingly, the function of xSyn1 on dorso-ventral patterning and BMP signaling is specific for this HSPG. In summary, we report that xSyn1 regulates dorso-ventral patterning of the ectoderm through modulation of BMP signaling. © 2009 Elsevier Inc. All rights reserved.

Más información

Título según WOS: Syndecan-1 regulates BMP signaling and dorso-ventral patterning of the ectoderm during early Xenopus development
Título según SCOPUS: Syndecan-1 regulates BMP signaling and dorso-ventral patterning of the ectoderm during early Xenopus development
Título de la Revista: DEVELOPMENTAL BIOLOGY
Volumen: 329
Número: 2
Editorial: ACADEMIC PRESS INC ELSEVIER SCIENCE
Fecha de publicación: 2009
Página de inicio: 338
Página final: 349
Idioma: English
URL: http://linkinghub.elsevier.com/retrieve/pii/S0012160609001754
DOI:

10.1016/j.ydbio.2009.03.007

Notas: ISI, SCOPUS