The zebrafishspiel-ohne-grenzen(spg) gene encodes the POU domain protein Pou2 related to mammalianOct4and is essential for formation of the midbrain and hindbrain, and for pre-gastrula morphogenesis
Open Access
- 15 February 2002
- journal article
- Published by The Company of Biologists in Development
- Vol. 129 (4) , 905-916
- https://doi.org/10.1242/dev.129.4.905
Abstract
In early embryonic development, the brain is divided into three main regions along the anteroposterior axis: the forebrain, midbrain and hindbrain. Through retroviral insertional mutagenesis and chemical mutagenesis experiments in zebrafish, we have isolated mutations that cause abnormal hindbrain organization and a failure of the midbrain-hindbrain boundary (MHB) to form, a region that acts as an organizer for the adjacent brain regions. The mutations fail to complement the spiel-ohne-grenzen (spg) mutation, which causes a similar phenotype, but for which the affected gene is unknown. We show through genetic mapping, cloning of the proviral insertion site and allele sequencing that spg mutations disrupt pou2, a gene encoding the Pou2 transcription factor. Based on chromosomal synteny, phylogenetic sequence comparison, and expression and functional data, we suggest that pou2 is the zebrafish ortholog of mouse Oct3/Oct4 and human POU5F1. For the mammalian genes, a function in brain development has so far not been described. In the absence of functional pou2, expression of markers for the midbrain, MHB and the hindbrain primordium (pax2.1, wnt1, krox20) are severely reduced, correlating with the neuroectoderm-specific expression phase of pou2. Injection of pou2 mRNA restores these defects in spg mutant embryos, but does not activate these markers ectopically, demonstrating a permissive role for pou2. Injections of pou2-morpholinos phenocopy the spg phenotype at low concentration, further proving that spg encodes pou2. Two observations suggest that pou2 has an additional earlier function: higher pou2-morpholino concentrations specifically cause a pre-gastrula arrest of cell division and morphogenesis, and expression of pou2 mRNA itself is reduced in spg-homozygous embryos at this stage. These experiments suggest two roles for pou2. Initially, Pou2 functions during early proliferation and morphogenesis of the blastomeres, similar to Oct3/4 in mammals during formation of the inner cell mass. During zebrafish brain formation, Pou2 then functions a second time to activate gene expression in the midbrain and hindbrain primordium, which is reflected at later stages in the specific lack in spg embryos of the MHB and associated defects in the mid- and hindbrain.Keywords
This publication has 55 references indexed in Scilit:
- The midbrain–hindbrain boundary organizerCurrent Opinion in Neurobiology, 2001
- Neural plate patterning: Upstream and downstream of the isthmic organizerNature Reviews Neuroscience, 2001
- Effective targeted gene ‘knockdown’ in zebrafishNature Genetics, 2000
- Embryonic induction: Is the Nieuwkoop centre a useful concept?Current Biology, 1998
- A Segmental Map of Architectonic Subdivisions in the Diencephalon of the Frog Rana perezi: Acetylcholinesterase-Histochemical Observations; pp. 279–289Brain, Behavior and Evolution, 1996
- Stages of embryonic development of the zebrafishDevelopmental Dynamics, 1995
- Expression of two zebrafish orthodenticle-related genes in the embryonic brainMechanisms of Development, 1994
- Integration and Germ-Line Transmission of a Pseudotyped Retroviral Vector in ZebrafishScience, 1994
- Induction of a mesencephalic phenotype in the 2-day-old chick prosencephalon is preceded by the early expression of the homeobox gene enNeuron, 1991
- The axonal glycoprotein TAG-1 is an immunoglobulin superfamily member with neurite outgrowth-promoting activityCell, 1990