adgrf5
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Human | ADGRF5-5175H | Recombinant Human ADGRF5 Protein | Wheat Germ | N/A | ||
Human | ADGRF5-5606HF | Recombinant Full Length Human ADGRF5 Protein | In Vitro Cell Free System | 160 amino acids |
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Q&As (10)
Ask a questionThe function of ADGRF5 can be modulated using pharmacological agents that target [specific receptors or downstream effectors], or through genetic manipulation using [specific genetic tools or techniques], resulting in [relevant consequences or functional changes].
Identified genetic variations or mutations in ADGRF5 have been associated with human diseases or phenotypic traits, such as [specific disease conditions or clinical characteristics], providing insights into its role in [relevant disease mechanisms or phenotypic variations].
ADGRF5 exhibits a specific subcellular localization pattern, primarily localized to [specific cellular compartments, such as plasma membrane or endosomes], which affects its signaling and functional properties.
Comparisons between ADGRF5 and other related members of the ADGR family can elucidate functional differences or similarities, providing a broader understanding of the roles of these receptors in [relevant physiological or pathological contexts].
Activation of ADGRF5 triggers downstream signaling pathways, such as [specific signaling cascades], which contribute to cellular functions and physiological processes including [relevant cellular processes or functional outcomes].
ADGRF5 binds to specific ligands or agonists, such as [specific molecules or peptides], leading to its activation and subsequent signaling events.
ADGRF5 is implicated in specific cellular processes, such as cell adhesion, migration, or differentiation, involving [specific molecular mechanisms or cellular machinery].
ADGRF5 exhibits a distinct tissue-specific expression pattern, with regulatory mechanisms that include [specific transcription factors or signaling pathways] under different physiological conditions and in different cell types.
ADGRF5 can interact with specific proteins or participate in protein complexes, potentially influencing [specific cellular processes or signaling pathways] and providing functional implications.
Knockout or overexpression of ADGRF5 in experimental models results in physiological and pathological consequences, including [specific phenotypic changes or disease manifestations], providing insights into its importance in [relevant biological contexts].
Customer Reviews (2)
Write a reviewHighly effective in detecting and measuring the activity of esterases in esterase assays.
Provides accurate and reproducible quantification of the target protein in mass spectrometry analysis.
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