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JAG2
Angiocrine Endothelium: from Physiology to Cancer Jennifer Pasquier1,2*, Pegah Ghiabi2, Lotf Chouchane3,4,5, Kais Razzouk1, Shahin Rafi3 and Arash Rafi1,2,3
Inverse Expression States of the BRN2 and MITF Transcription Factors in Melanoma Spheres and Tumour Xenografts Regulate the NOTCH Pathway
DLL1- and DLL4-Mediated Notch Signaling Is Essential for Adult Pancreatic Islet
And DLL4-Mediated Notch Signaling Is Essential for Adult Pancreatic Islet Homeostasis
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Prognostic Significance of Notch Ligands in Patients with Non‑Small Cell Lung Cancer
Induction of Ectopic Myc Target Gene JAG2 Augments Hypoxic Growth and Tumorigenesis in a Human B-Cell Model
Potential New Biomarkers for Endometrial Cancer Michelle H
NOTCH2 Participates in Jagged1-Induced Osteogenic Differentiation in Human Periodontal Ligament Cells
Class II Phosphatidylinositol 3-Kinase-C2α Is Essential for Notch
A Comprehensive Bioinformatics Analysis of Notch Pathways in Bladder Cancer
Defects in Limb, Craniofacial, and Thymic Development in Jagged2 Mutant Mice
Role of Jagged1-Mediated Notch Signaling Activation in the Differentiation and Stratification of the Human Limbal Epithelium
Probing the Gene Expression Database for Candidate Genes
The Notch Ligand DLL4 Specifically Marks Human Hematoendothelial
REVIEW Cell and Molecular Biology of Notch
Determinant Roles of Dendritic Cell-Expressed Notch Delta-Like and Jagged Ligands on Anti-Tumor T-Cell Immunity Elena E
Physiological Notch Signaling Promotes Gliogenesis in The
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Mutual Regulation of JAG2 and PRAF2 Promotes Migration and Invasion Of
The Role of Notch Signaling in the Mammalian Ovary
A Modifier in the 129S2/Svpascrl Genome Is Responsible for The
EGFL7 Antagonizes NOTCH Signaling and Represents a Novel
Human Induced Pluripotent Stem Cell-Derived Neuroectodermal Epithelial Cells 2 Mistaken for Blood-Brain Barrier-Forming Endothelial Cells 3 4 Tyler M
GFI1 Proteins Orchestrate the Emergence of Haematopoietic Stem Cells Through Recruitment of LSD1
Specific NOTCH1 Antibody Targets DLL4-Induced Proliferation, Migration, and Angiogenesis in NOTCH1-Mutated CLL Cells
JAG2 Induction in Hypoxic Tumor Cells Alters Notch Signaling and Enhances Endothelial Cell Tube Formation
Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and Cis-Eqtl Analysis Revealed PARK2 and JAG2 As New Candidate Genes for Adiposity Regulation
Endothelial Jagged-2 Sustains Hematopoietic Stem and Progenitor Reconstitution After Myelosuppression
The Multifaceted Roles of EGFL7 in Cancer and Drug Resistance
The Developmental Biology of Genetic Notch Disorders Jan Mašek and Emma R
Cancer Stem Cells, Quo Vadis? the Notch Signaling Pathway in Tumor Initiation and Progression
Jagged and Delta-Like Ligands Control Distinct Events During Airway
EGFL7 Antagonizes NOTCH Signaling and Represents a Novel Therapeutic Target
NOTCH Ligands JAG1 and JAG2 As Critical Pro- Survival Factors in Childhood Medulloblastoma
The Multifaceted Role of Notch Signal in Regulating T Cell Fate T ⁎ Shubhada V
NOTCH1, NOTCH3, NOTCH4, and JAG2 Protein Levels in Human Endometrial Cancer