Recombinant Human PLVAP/PV-1 protein (GST tag N-Terminus)
Recombinant Human PLVAP/PV-1 protein (GST tag N-Terminus)
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Recombinant Human PLVAP/PV-1 protein (GST tag N-Terminus) is a Human Fragment protein, in the 51 to 150 aa range, expressed in Wheat germ, suitable for ELISA, WB.
別名を表示する
FELS, PV1, PLVAP, Plasmalemma vesicle-associated protein, Fenestrated endothelial-linked structure protein, Plasmalemma vesicle protein 1, PV-1
- SDS-PAGE
Unknown
SDS-PAGE - Recombinant Human PLVAP/PV-1 protein (GST tag N-Terminus) (AB153539)
ab153539 on a 12.5% SDS-PAGE stained with Coomassie Blue.
Reactivity data
製品の詳細
配列情報
出荷温度及び保存条件
製品の状態
精製方法
出荷温度
短期保存温度
長期保存温度
分注に関する情報
保管に関する情報
補足情報
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
The functions of PLVAP are significant in maintaining an organized structure within endothelial cells. It forms part of the complex structure that comprises the diaphragms of endothelial fenestrae transendothelial channels and caveolae. These structures are necessary for regulating fluid exchange and molecular transport between blood and tissue. The presence of PLVAP at these sites signals its role in modulating vascular barrier functions essential for efficient blood-tissue communication.
Pathways
Researchers have identified PLVAP's involvement in important vascular and endothelial pathways. It plays a critical part in the VEGF signaling pathway which regulates vascular permeability and endothelial cell behavior. PLVAP is closely associated with other proteins like VE-cadherin and claudin-5 that ensure cohesion and permeability in endothelial cells. In pathways regulating vascular permeability PLVAP's presence helps mediate fluid exchange and maintain tissue homeostasis.
一般的な情報
機能
Endothelial cell-specific membrane protein involved in the formation of the diaphragms that bridge endothelial fenestrae. It is also required for the formation of stomata of caveolae and transendothelial channels. Functions in microvascular permeability, endothelial fenestrae contributing to the passage of water and solutes and regulating transcellular versus paracellular flow in different organs. Plays a specific role in embryonic development.
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