scholarly article | Q13442814 |
P50 | author | Ali Hemmati-Brivanlou | Q67158924 |
P2093 | author name string | Brigitte L Arduini | |
P2860 | cites work | Microarray analysis of Foxa2 mutant mouse embryos reveals novel gene expression and inductive roles for the gastrula organizer and its derivatives | Q21263163 |
Core transcriptional regulatory circuitry in human embryonic stem cells | Q24322016 | ||
Direct transcriptional regulation of Gata4 during early endoderm specification is controlled by FoxA2 binding to an intronic enhancer | Q24601154 | ||
Transcriptional competence and the active marking of tissue-specific enhancers by defined transcription factors in embryonic and induced pluripotent stem cells | Q24652249 | ||
FoxD3 and Grg4 physically interact to repress transcription and induce mesoderm in Xenopus | Q24683824 | ||
Requirement for Foxd3 in maintaining pluripotent cells of the early mouse embryo | Q28506803 | ||
The transcriptional control of trunk neural crest induction, survival, and delamination | Q28511755 | ||
Genesis, a winged helix transcriptional repressor with expression restricted to embryonic stem cells | Q28591060 | ||
Identification and analysis of a conserved Tcfap2a intronic enhancer element required for expression in facial and limb bud mesenchyme | Q28592776 | ||
Maintenance of pluripotency in human and mouse embryonic stem cells through activation of Wnt signaling by a pharmacological GSK-3-specific inhibitor | Q29614622 | ||
fork head domain genes in zebrafish | Q32048619 | ||
Functional genomics of 5- to 8-cell stage human embryos by blastomere single-cell cDNA analysis | Q33737671 | ||
Structure and developmental expression of the chicken NGF receptor | Q33890288 | ||
FOXA2 functions as a suppressor of tumor metastasis by inhibition of epithelial-to-mesenchymal transition in human lung cancers | Q35348316 | ||
Hepatocyte nuclear factor 3beta is involved in pancreatic beta-cell-specific transcription of the pdx-1 gene | Q36573166 | ||
Amniote somite derivatives | Q36844224 | ||
Gene expression patterns in human embryonic stem cells and human pluripotent germ cell tumors | Q37089250 | ||
The FoxA factors in organogenesis and differentiation | Q37768983 | ||
Expression and shifting subcellular localization of the transcription factor, Foxd3, in embryonic and adult pancreas | Q38312635 | ||
Foxd3 mediates zebrafish myf5 expression during early somitogenesis | Q38317216 | ||
Characterization of flounder (Paralichthys olivaceus) FoxD3 and its function in regulating myogenic regulatory factors | Q39761173 | ||
Regulation of embryonic stem cell self-renewal and pluripotency by Foxd3 | Q39957518 | ||
Derivation of engraftable skeletal myoblasts from human embryonic stem cells | Q40225312 | ||
FoxD3 regulation of Nodal in the Spemann organizer is essential for Xenopus dorsal mesoderm development | Q40329211 | ||
Foxd3 is an essential Nodal-dependent regulator of zebrafish dorsal mesoderm development | Q40445010 | ||
Neural crest stem cell multipotency requires Foxd3 to maintain neural potential and repress mesenchymal fates | Q41975745 | ||
Genetic ablation of neural crest cell diversification | Q43123316 | ||
TGFbeta/activin/nodal signaling is necessary for the maintenance of pluripotency in human embryonic stem cells | Q45259297 | ||
Differences between human and mouse embryonic stem cells | Q45345133 | ||
Avian winged helix proteins CWH-1, CWH-2 and CWH-3 repress transcription from Qin binding sites | Q46979945 | ||
The winged-helix transcription factor CWH-3 is expressed in developing neural crest cells | Q47808672 | ||
The winged helix transcription factor Hfh2 is expressed in neural crest and spinal cord during mouse development | Q48017150 | ||
Directed differentiation of human embryonic stem cells toward chondrocytes. | Q51897402 | ||
Migration and function of a glial subtype in the vertebrate peripheral nervous system. | Q52118710 | ||
Genesis, a Winged Helix transcriptional repressor, has embryonic expression limited to the neural crest, and stimulates proliferation in vitro in a neural development model. | Q52174903 | ||
The spatial and temporal expression of HNK-1 by myogenic and skeletogenic cells in the embryonic rat. | Q52182657 | ||
A negative feedback loop of transcription factors that controls stem cell pluripotency and self-renewal | Q56067490 | ||
Contribution of human embryonic stem cells to mouse blastocysts | Q56770599 | ||
P433 | issue | 10 | |
P921 | main subject | pluripotency | Q1894941 |
human embryonic stem cell | Q59626782 | ||
P304 | page(s) | 2188-2198 | |
P577 | publication date | 2012-10-01 | |
P1433 | published in | Stem Cells | Q15724411 |
P1476 | title | Modulation of FOXD3 activity in human embryonic stem cells directs pluripotency and paraxial mesoderm fates | |
P478 | volume | 30 |
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Q53743696 | Decoding the Pluripotency Network: The Emergence of New Transcription Factors. |
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Q26860750 | Ex uno plures: molecular designs for embryonic pluripotency |
Q50287930 | Expression of FOXD3 |
Q34508290 | FOXD3 Regulates Pluripotent Stem Cell Potential by Simultaneously Initiating and Repressing Enhancer Activity |
Q42073267 | FOXD3 controls pluripotency through modulating enhancer activity |
Q38783408 | IL-1β inhibits osteogenesis of human bone marrow-derived mesenchymal stem cells by activating FoxD3/microRNA-496 to repress wnt signaling |
Q104473850 | Identification of potential transcription factors that enhance human iPSC generation |
Q38255419 | Immunomodulation in stem cell differentiation into neurons and brain repair |
Q46237130 | Mechanisms of gene regulation in human embryos and pluripotent stem cells |
Q34489707 | Profiling the transcription factor regulatory networks of human cell types |
Q38169872 | Setting appropriate boundaries: fate, patterning and competence at the neural plate border. |
Q36603129 | The aspirin-induced long non-coding RNA OLA1P2 blocks phosphorylated STAT3 homodimer formation |
Q37602534 | Transcriptional targets of Foxd3 in murine ES cells |
Q52949999 | Tumor suppression function of FoxD3 in lung cancer. |
Q33844889 | miR-373 is regulated by TGFβ signaling and promotes mesendoderm differentiation in human Embryonic Stem Cells. |
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