AbstractA polarizing signal induces endoderm production by a 4-cell stage blastomere in C. elegans called EMS. We identified 16 mutations in five genes mom-1 through mom-5, required for EMS to produce endoderm. mom-1, mom-2, and mom-3 are required in the signaling cell, P2, while mom-4 is required in EMS. P2 signaling downregulates an HMG domain protein, POP-1, in one EMS daughter. The sequence of mom-2 predicts that it encodes a member of the Wnt family of secreted glycoproteins, which in other systems activate HMG domain proteins. Defective mitotic spindle orientations in mom mutant embryos indicate that Wnt signaling influences cytoskeletal polarity in blastomeres throughout the early embryo
AbstractThe endoderm of C. elegans arises entirely from a single progenitor cell, the E blastomere, ...
Embryonic patterning mechanisms regulate the cytoskeletal machinery that drives morphogenesis, but t...
AbstractDuring C. elegans development, Wnt/WG signaling is required for differences in cell fate bet...
AbstractA polarizing signal induces endoderm production by a 4-cell stage blastomere in C. elegans c...
AbstractIn early C. elegans embryos, signaling between a posterior blastomere, P2, and a ventral bla...
In a 4-cell C. elegans embryo the ventral blastomere EMS requires polarity signaling from its poster...
AbstractIn C. elegans embryogenesis, the MS blastomere produces predominantly mesodermal cell types,...
AbstractHow cells integrate the input of multiple polarizing signals during division is poorly under...
C. elegans, with its invariant cell lineage, provides a powerful model system in which to study sign...
In a 4-cell stage C. elegans embryo, signaling by the P2 blastomere induces anterior-posterior polar...
AbstractIn a 4-cell stage C. elegans embryo, signaling by the P2 blastomere induces anterior–posteri...
AbstractPOP-1, a Tcf/Lef-1-like target of the convergent Wnt and MAP kinase (MAPK) signaling pathway...
SummaryBackgroundEmbryonic patterning mechanisms regulate the cytoskeletal machinery that drives mor...
AbstractIn C. elegans the 4-cell stage blastomere EMS is an endomesodermal precursor. Its anterior d...
In early C. elegans embryos, signaling between a posterior blastomere, P2, and a ventral blastomere,...
AbstractThe endoderm of C. elegans arises entirely from a single progenitor cell, the E blastomere, ...
Embryonic patterning mechanisms regulate the cytoskeletal machinery that drives morphogenesis, but t...
AbstractDuring C. elegans development, Wnt/WG signaling is required for differences in cell fate bet...
AbstractA polarizing signal induces endoderm production by a 4-cell stage blastomere in C. elegans c...
AbstractIn early C. elegans embryos, signaling between a posterior blastomere, P2, and a ventral bla...
In a 4-cell C. elegans embryo the ventral blastomere EMS requires polarity signaling from its poster...
AbstractIn C. elegans embryogenesis, the MS blastomere produces predominantly mesodermal cell types,...
AbstractHow cells integrate the input of multiple polarizing signals during division is poorly under...
C. elegans, with its invariant cell lineage, provides a powerful model system in which to study sign...
In a 4-cell stage C. elegans embryo, signaling by the P2 blastomere induces anterior-posterior polar...
AbstractIn a 4-cell stage C. elegans embryo, signaling by the P2 blastomere induces anterior–posteri...
AbstractPOP-1, a Tcf/Lef-1-like target of the convergent Wnt and MAP kinase (MAPK) signaling pathway...
SummaryBackgroundEmbryonic patterning mechanisms regulate the cytoskeletal machinery that drives mor...
AbstractIn C. elegans the 4-cell stage blastomere EMS is an endomesodermal precursor. Its anterior d...
In early C. elegans embryos, signaling between a posterior blastomere, P2, and a ventral blastomere,...
AbstractThe endoderm of C. elegans arises entirely from a single progenitor cell, the E blastomere, ...
Embryonic patterning mechanisms regulate the cytoskeletal machinery that drives morphogenesis, but t...
AbstractDuring C. elegans development, Wnt/WG signaling is required for differences in cell fate bet...