NR1H4
Spezies: Human
Wirt: Escherichia coli (E. coli)
Recombinant
The purified recombinant protein has an amino terminal polyhistidine tag and is greater than 90 % homogeneous and contains no detectable protease, DNase and RNase activity.
PI
NR1H4
(Nuclear Receptor Subfamily 1, Group H, Member 4 (NR1H4))
Protein-Typ
Recombinant
Spezies
Human
Quelle
Escherichia coli (E. coli)
Aufreinigungstag / Konjugat
Dieses NR1H4 Protein ist gelabelt mit His tag.
Applikation
Protein Interaction (PI)
Produktmerkmale
Recombinant FXR is isolated from an E. coli strain that carries the coding sequence of the human FXR under the control of a T7 promoter (accession number U68233). The purified recombinant protein has an amino terminal polyhistidine tag and is greater than 90 % homogeneous and contains no detectable protease, DNase and RNase activity.
Reinheit
The purified recombinant protein has an amino terminal polyhistidine tag and is greater than 90 % homogeneous and contains no detectable protease, DNase and RNase activity.
NR1H4
Spezies: Ratte
Wirt: Escherichia coli (E. coli)
Recombinant
WB, SDS, ELISA, IP
Applikationshinweise
Recombinant FXR is suitable for DNA and protein-protein interaction assays. 20 ng is sufficient for gelshift assays and 100 ng is sufficient for protein-protein interaction studies. The molecular weight of the protein is ~55 kDa. NOTE: The presence of Poly [d(I-C)] in buffers may affect protein functionality and should be avoided.
Beschränkungen
Nur für Forschungszwecke einsetzbar
Konzentration
0.1 μg/μL
Target
NR1H4
(Nuclear Receptor Subfamily 1, Group H, Member 4 (NR1H4))
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Hintergrund
The farnesoid X receptor (FXR) or nuclear receptor subfamily 1, group H, member 4 (NR1H4) is a nuclear receptor that, when activated, translocates to the nucleus where it interacts with certain proteins, including RXR and PPARGC1A, forming heterodimers that bind to hormone response elements on DNA and modulate gene expression. One of the primary functions of FXR is to suppress bile acid synthesis when levels are high by inhibiting the transcription of cholesterol 7 alpha-hydroxylase (CYP7A1) gene that expresses CYP7A1, the rate-limiting enzyme in bile acid synthesis from cholesterol.