T1alpha, a lung type I cell differentiation gene, is required for normal lung cell proliferation and alveolus formation at birth
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Immunohistochemical examination for the distribution of podoplanin-expressing cells in developing mouse molar tooth germsEndothelial cell O-glycan deficiency causes blood/lymphatic misconnections and consequent fatty liver disease in miceThe potential role of podoplanin in tumour invasionPodoplanin - a small glycoprotein with many facesPodoplanin mediates ECM degradation by squamous carcinoma cells through control of invadopodia stabilityPodoplanin: emerging functions in development, the immune system, and cancerCharacterization of human PA2.26 antigen (T1alpha-2, podoplanin), a small membrane mucin induced in oral squamous cell carcinomasDeletion of STK40 protein in mice causes respiratory failure and death at birth.Alterations in gene expression in T1 alpha null lung: a model of deficient alveolar sac developmentCoexpression of RTI40 with alveolar epithelial type II cell proteins in lungs following injury: identification of alveolar intermediate cell typesT1alpha/podoplanin deficiency disrupts normal lymphatic vasculature formation and causes lymphedemaAdditional sex combs-like family genes are required for normal cardiovascular developmentPulmonary hypoplasia in the connective tissue growth factor (Ctgf) null mouseInnate immune response to influenza A virus in differentiated human alveolar type II cellsCLEC-2 and Syk in the megakaryocytic/platelet lineage are essential for development.Folliculin controls lung alveolar enlargement and epithelial cell survival through E-cadherin, LKB1, and AMPK.Critical Role for an acidic amino acid region in platelet signaling by the HemITAM (hemi-immunoreceptor tyrosine-based activation motif) containing receptor CLEC-2 (C-type lectin receptor-2).Identification of genes differentially expressed in rat alveolar type I cells.The N-terminal SH2 domain of Syk is required for (hem)ITAM, but not integrin, signaling in mouse platelets.Isolation and characterization of alveolar epithelial type II cells derived from mouse embryonic stem cells.Transplantation of human embryonic stem cell-derived alveolar epithelial type II cells abrogates acute lung injury in mice.Effect of P2X7 receptor knockout on AQP-5 expression of type I alveolar epithelial cells.Foxp1/2/4-NuRD interactions regulate gene expression and epithelial injury response in the lung via regulation of interleukin-6Immunoelectron microscopic study of podoplanin localization in mouse salivary gland myoepitheliumCARM1 is required for proper control of proliferation and differentiation of pulmonary epithelial cellsThe lymphatic system in health and disease.Tumor lymphangiogenesis and metastasis to lymph nodes induced by cancer cell expression of podoplanin.Semaphorin 3A contributes to distal pulmonary epithelial cell differentiation and lung morphogenesis.Directed expression of Cre in alveolar epithelial type 1 cells.Lymphatics in lung disease.Podoplanin requires sialylated O-glycans for stable expression on lymphatic endothelial cells and for interaction with platelets.E11/gp38 selective expression in osteocytes: regulation by mechanical strain and role in dendrite elongation.Integrated transcriptomic and epigenomic analysis of primary human lung epithelial cell differentiation.Transcriptome analysis in prenatal IGF1-deficient mice identifies molecular pathways and target genes involved in distal lung differentiation.Infection of mice with influenza A/WSN/33 (H1N1) virus alters alveolar type II cell phenotype.Fibroblast Growth Factor 9 Regulation by MicroRNAs Controls Lung Development and Links DICER1 Loss to the Pathogenesis of Pleuropulmonary Blastoma.The new era of the lymphatic system: no longer secondary to the blood vascular systemLung organogenesisPKA and CDK5 can phosphorylate specific serines on the intracellular domain of podoplanin (PDPN) to inhibit cell motilityControl mechanisms of lung alveolar development and their disorders in bronchopulmonary dysplasia.
P2860
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P2860
T1alpha, a lung type I cell differentiation gene, is required for normal lung cell proliferation and alveolus formation at birth
description
2003 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2003 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
artículu científicu espublizáu en 2003
@ast
im April 2003 veröffentlichter wissenschaftlicher Artikel
@de
scientific journal article
@en
vedecký článok (publikovaný 2003/04/01)
@sk
vědecký článek publikovaný v roce 2003
@cs
wetenschappelijk artikel (gepubliceerd op 2003/04/01)
@nl
наукова стаття, опублікована у квітні 2003
@uk
مقالة علمية (نشرت في أبريل 2003)
@ar
name
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@ast
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@en
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@nl
type
label
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@ast
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@en
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@nl
prefLabel
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@ast
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@en
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@nl
P2093
P1476
T1alpha, a lung type I cell di ...... nd alveolus formation at birth
@en
P2093
Anne Hinds
David C. Seldin
Guetchyn Millien
Maria I. Ramirez
Mary C. Williams
P356
10.1016/S0012-1606(02)00098-2
P407
P577
2003-04-01T00:00:00Z