| Literature DB >> 30909943 |
Sheng-An Su1, Yao Xie1, Yuhao Zhang1, Yutao Xi2, Jie Cheng3, Meixiang Xiang4.
Abstract
EphrinB2, a membrane-tethered ligand preferentially binding to its receptor EphB4, is ubiquitously expressed in all mammals. Through the particular bidirectional signaling, EphrinB2 plays a critical role during the development of cardiovascular system, postnatal angiogenesis physiologically and pathologically, and cardiac remodeling after injuries as an emerging role. This review highlights the pivotal involvement of EphrinB2 in heart, from developmental cardiogenesis to pathological cardiac remodeling process. Further potential translational therapies will be discussed in targeting EphrinB2 signaling, to better understand the prevention and treatment of cardiovascular diseases.Entities:
Keywords: Bidirectional signaling; Cardiac remodeling; Development; EphrinB2; Therapeutic molecules
Mesh:
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Year: 2019 PMID: 30909943 PMCID: PMC6434800 DOI: 10.1186/s12964-019-0337-3
Source DB: PubMed Journal: Cell Commun Signal ISSN: 1478-811X Impact factor: 5.712
Fig. 1Domain structure of EphrinB2 in human and murine. The conserved tyrosine phosphorylation sites identified were labeled in red, while Tyr304 in human linked phosphorylation signaling with PDZ-dependent signaling. The last three amino acids composed a PDZ-binding motif in both human and murine
Fig. 2Schematic diagram of EphrinB2-mediated bidirectional signaling and potential therapeutic molecules targeting EphrinB2
Fig. 3Labeling human induced pluripotent stem cells (hiPS)-differentiated cardiomyocytes undergoing maturation with EphrinB2 (red), Troponin I (green) and DAPI (blue) by immunofluorescence staining. Scale bar represents 10 μm