The EMBO Journal · 2007 · 83 citations · 53 references
We present a loss-of-function study using antisense morpholino (MO) reagents for the organizer-specific gene Goosecoid (Gsc) and the ventral genes Vent1 and Vent2. Unlike in the mouse Gsc is required in Xenopus for mesodermal patterning during gastrulation, causing phenotypes ranging from reduction of head structures-including cyclopia and holoprosencephaly-to expansion of ventral tissues in MO-injected embryos. The overexpression effects of Gsc mRNA require the expression of the BMP antagonist Chordin, a downstream target of Gsc. Combined Vent1 and Vent2 MOs strongly dorsalized the embryo. Unexpectedly, simultaneous depletion of all three genes led to a rescue of almost normal development in a variety of embryological assays. Thus, the phenotypic effects of depleting Gsc or Vent1/2 are caused by the transcriptional upregulation of their opposing counterparts. A principal function of Gsc and Vent1/2 homeobox genes might be to mediate a self-adjusting mechanism that restores the basic body plan when deviations from the norm occur, rather than generating individual cell types. The results may shed light on the molecular mechanisms of genetic redundancy.
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Molecular nature of Spemann's organizer: the role of the Xenopus homeobox gene goosecoid
Ken W.Y. Cho, Bruce Blumberg, Herbert Steinbeißer et al. · Cell · 1991 · 800 citations · Full text
Gastrulation in the mouse: The role of the homeobox gene goosecoid
Martin Blum, Stephen J. Gaunt, Ken W.Y. Cho et al. · Cell · 1992 · 378 citations
Knockout Mouse, Developmental Biology, Mammalian Physiology +8
Antagonizing the Spemann organizer: role of the homeobox gene Xvent-1.
Volker Gawantka, Hajo Delius, K. Hirschfeld et al. · The EMBO Journal · 1995 · 329 citations · Full text