Regional biosynthetic markers in the early amphibian embryo.
about
Characterization of toposomes from sea urchin blastula cells: a cell organelle mediating cell adhesion and expressing positional informationEarly stages of induction of anterior head ectodermal properties in Xenopus embryos are mediated by transcriptional cofactor ldb1Rab5-mediated endocytosis of activin is not required for gene activation or long-range signalling in XenopusXnrs and activin regulate distinct genes during Xenopus development: activin regulates cell division.A mechanism for the sharp transition of morphogen gradient interpretation in XenopusUSP15 targets ALK3/BMPR1A for deubiquitylation to enhance bone morphogenetic protein signalling.Muscle-specific expression of SRF-related genes in the early embryo of Xenopus laevis.The midblastula transition defines the onset of Y RNA-dependent DNA replication in Xenopus laevis.The Xenopus Brachyury promoter is activated by FGF and low concentrations of activin and suppressed by high concentrations of activin and by paired-type homeodomain proteinsOsteogenic protein-1 binds to activin type II receptors and induces certain activin-like effects.Expression of pluripotency factors in larval epithelia of the frog Xenopus: evidence for the presence of cornea epithelial stem cells.Developmental regulation and tissue distribution of the liver transcription factor LFB1 (HNF1) in Xenopus laevis.Novel HOX, POU and FKH genes expressed during bFGF-induced mesodermal differentiation in Xenopus.Lens regeneration from the cornea requires suppression of Wnt/β-catenin signaling.Developmentally regulated cytokeratin gene in Xenopus laevisSmicl is required for phosphorylation of RNA polymerase II and affects 3'-end processing of RNA at the midblastula transition in Xenopus.Effects of truncated activin and FGF receptors and of follistatin on the inducing activities of BVg1 and activin: does activin play a role in mesoderm induction?Psf2 plays important roles in normal eye development in Xenopus laevis.The lens regenerative competency of limbal vs. central regions of mature Xenopus cornea epithelium.Elements and factors involved in tissue-specific and embryonic expression of the liver transcription factor LFB1 in Xenopus laevis.Chk1 Inhibition of the Replication Factor Drf1 Guarantees Cell-Cycle Elongation at the Xenopus laevis Mid-blastula Transition.Xenopus Sox3 activates sox2 and geminin and indirectly represses Xvent2 expression to induce neural progenitor formation at the expense of non-neural ectodermal derivatives.Xiro, a Xenopus homolog of the Drosophila Iroquois complex genes, controls development at the neural plateFGF signaling is required for lens regeneration in Xenopus laevis.A NuRD Complex from Xenopus laevis Eggs Is Essential for DNA Replication during Early Embryogenesis.
P2860
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P2860
Regional biosynthetic markers in the early amphibian embryo.
description
1984 nî lūn-bûn
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1984年の論文
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1984年学术文章
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1984年学术文章
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1984年学术文章
@zh-hans
1984年学术文章
@zh-my
1984年学术文章
@zh-sg
1984年學術文章
@yue
1984年學術文章
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1984年學術文章
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name
Regional biosynthetic markers in the early amphibian embryo.
@en
Regional biosynthetic markers in the early amphibian embryo.
@nl
type
label
Regional biosynthetic markers in the early amphibian embryo.
@en
Regional biosynthetic markers in the early amphibian embryo.
@nl
prefLabel
Regional biosynthetic markers in the early amphibian embryo.
@en
Regional biosynthetic markers in the early amphibian embryo.
@nl
P1476
Regional biosynthetic markers in the early amphibian embryo
@en
P2093
P304
P577
1984-04-01T00:00:00Z