The smad5 mutation somitabun blocks Bmp2b signaling during early dorsoventral patterning of the zebrafish embryo
Open Access
- 15 May 1999
- journal article
- Published by The Company of Biologists in Development
- Vol. 126 (10) , 2149-2159
- https://doi.org/10.1242/dev.126.10.2149
Abstract
Signaling by members of the TGFbeta superfamily is thought to be transduced by Smad proteins. Here, we describe a zebrafish mutant in smad5, designated somitabun (sbn). The dominant maternal and zygotic effect of the sbntc24 mutation is caused by a change in a single amino acid in the L3 loop of Smad5 protein which transforms Smad5 into an antimorphic version, inhibiting wild-type Smad5 and related Smad proteins. sbn mutant embryos are strongly dorsalized, similarly to mutants in Bmp2b, its putative upstream signal. Double mutant analyses and RNA injection experiments show that sbn and bmp2b interact and that sbn acts downstream of Bmp2b signaling to mediate Bmp2b autoregulation during early dorsoventral (D-V) pattern formation. Comparison of early marker gene expression patterns, chimera analyses and rescue experiments involving temporally controlled misexpression of bmp or smad in mutant embryos reveal three phases of D-V patterning: an early sbn- and bmp2b-independent phase when a coarse initial D-V pattern is set up, an intermediate sbn- and bmp2b-dependent phase during which the putative morphogenetic Bmp2/4 gradient is established, and a later sbn-independent phase during gastrulation when the Bmp2/4 gradient is interpreted and cell fates are specified.Keywords
This publication has 54 references indexed in Scilit:
- Mads and Smads in TGFβ signallingCurrent Opinion in Cell Biology, 1998
- Antagonism within and around the organizer: BMP inhibitors in vertebrate body patterningTrends in Genetics, 1997
- Partnership between DPC4 and SMAD proteins in TGF-β signalling pathwaysNature, 1996
- Receptor-associated Mad homologues synergize as effectors of the TGF-β responseNature, 1996
- A human Mad protein acting as a BMP-regulated transcriptional activatorNature, 1996
- Xenopus Mad Proteins Transduce Distinct Subsets of Signals for the TGFβ SuperfamilyCell, 1996
- MADR1, a MAD-Related Protein That Functions in BMP2 Signaling PathwaysCell, 1996
- DPC4 , A Candidate Tumor Suppressor Gene at Human Chromosome 18q21.1Science, 1996
- Xenopus embryos regulate the nuclear localization of XMyoD.Genes & Development, 1994
- Site-directed mutagenesis by overlap extension using the polymerase chain reactionGene, 1989