Submucosal gland development in the airway is controlled by lymphoid enhancer binding factor 1 (LEF1)
about
Hyperactive Wnt signaling changes the developmental potential of embryonic lung endodermProgenitor cells in proximal airway epithelial development and regenerationTGFbeta3 signaling activates transcription of the LEF1 gene to induce epithelial mesenchymal transformation during mouse palate developmentSox17 modulates Wnt3A/beta-catenin-mediated transcriptional activation of the Lef-1 promoter.The role of LEF1 in endometrial gland formation and carcinogenesisGenotyping mdx, mdx3cv, and mdx4cv mice by primer competition polymerase chain reaction.SERCA2a gene transfer improves electrocardiographic performance in aged mdx miceGlandular gene expression of sinus mucosa in chronic rhinosinusitis with and without cystic fibrosis.Characterization of Lef-1 promoter segments that facilitate inductive developmental expression in skin.Wnt3a regulates Lef-1 expression during airway submucosal gland morphogenesis.β-Catenin-SOX2 signaling regulates the fate of developing airway epithelium.Myd88 deficiency influences murine tracheal epithelial metaplasia and submucosal gland abundance.β-Catenin determines upper airway progenitor cell fate and preinvasive squamous lung cancer progression by modulating epithelial-mesenchymal transition.PITX2 and beta-catenin interactions regulate Lef-1 isoform expression.Nuclear LEF1/TCF4 correlate with poor prognosis but not with nuclear β-catenin in cerebral metastasis of lung adenocarcinomasUnderstanding multicellular function and disease with human tissue-specific networks.100-fold but not 50-fold dystrophin overexpression aggravates electrocardiographic defects in the mdx model of Duchenne muscular dystrophy.Wnt signaling in lung organogenesisThe glandular stem/progenitor cell niche in airway development and repair.Cardiac expression of a mini-dystrophin that normalizes skeletal muscle force only partially restores heart function in aged Mdx mice.Sox2 modulates Lef-1 expression during airway submucosal gland development.LEF-1: Diagnostic utility in distinguishing basaloid neoplasms of the salivary gland.Wnt Signaling Regulates Airway Epithelial Stem Cells in Adult Murine Submucosal Glands.Multipotent Myoepithelial Progenitor Cells Are Born Early during Airway Submucosal Gland Development.
P2860
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P2860
Submucosal gland development in the airway is controlled by lymphoid enhancer binding factor 1 (LEF1)
description
1999 թուականի Հոկտեմբերին հրատարակուած գիտական յօդուած
@hyw
1999 թվականի հոտեմբերին հրատարակված գիտական հոդված
@hy
artículu científicu espublizáu en 1999
@ast
im Oktober 1999 veröffentlichter wissenschaftlicher Artikel
@de
scientific journal article
@en
vedecký článok (publikovaný 1999/10/01)
@sk
vědecký článek publikovaný v roce 1999
@cs
wetenschappelijk artikel (gepubliceerd op 1999/10/01)
@nl
наукова стаття, опублікована в жовтні 1999
@uk
مقالة علمية (نشرت في أكتوبر 1999)
@ar
name
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@ast
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@en
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@nl
type
label
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@ast
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@en
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@nl
prefLabel
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@ast
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@en
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@nl
P2093
P1433
P1476
Submucosal gland development i ...... hancer binding factor 1 (LEF1)
@en
P2093
J. F. Engelhardt
R. Grosschedl
T. C. Ritchie
P304
P407
P577
1999-10-01T00:00:00Z