The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G protein-coupled Receptor Signaling

Von einem Mystery-Man-Autor
Last updated 19 mai 2024
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
Protease-activated receptors (PARs) and the neurokinin 1 receptor (NK1R) belong to the G protein-coupled receptor (GPCR) family. In this review, we focus on the regulatory mechanism of ectodomain shedding by ADAM10/17 metalloprotease via GPCR signaling. PAR2 and NK1R induce membrane blebbing, resulting in phosphatidylserine externalization in the cellular membrane, which is required for ADAM10/17 metalloprotease activation.
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
Structure of the TSHR protein: The ectodomain (N-terminus) appears
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
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The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
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The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G protein-coupled Receptor Signaling
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
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The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
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The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
MET ectodomain shedding is associated with poor disease-free survival of patients diagnosed with oral squamous cell carcinoma
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G protein-coupled Receptor Signaling
The Role of Membrane-embedded DUOX2 on Ectodomain Shedding via G  protein-coupled Receptor Signaling
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