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Human Suppressor of fused homolog (aa 1-484)
SUFU Swiss Prot#
Q9UMX1
SUFU Protein names
Suppressor of fused homolog (SUFUH)
SUFU Gene names
SUFU (UNQ650/PRO1280)
Organism
Homo sapiens (Human)
SUFU Entry name
SUFU_HUMAN
SUFU Codon optimized cDNA(gene) Clone
SUFU Cat #
RPM0063
Tag
SUFU contains A 6x histidine tag
SUFU Formulation
Liquid
SUFU Storage
Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw cycles.
SUFU Applications
Applications: 1. Codon-optimized cDNA(gene) sequence designed for protein production in both E.coli and Mammalian cell. The cDNA(gene) has been cloned into E.coli expression vector with 6x Histidine tag.2. May be used as RNAi assistance to restore the loss-of-function.
Recombinant SUFU Protein
SUFU Cat #
PM0063
SUFU Source
recombinant
SUFU Applications
Western Blot, SDS-Page or may be used for other applications determined by user
SUFU Purity
>90%, as determined by SDS-PAGE under reducing conditions
SUFU Activity
N/A
Tag
SUFU Contains A 6x histidine tag
SUFU Formulation
Liquid
SUFU Storage
;. Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw cycles.
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SUFU family
SUFU family
SUFU Subcellular locations
Cytoplasm. Nucleus.
SUFU FUNCTION According to UniProtKB Swiss Prot
FUNCTION: Negative regulator in the hedgehog signaling pathway. Down-regulates GLI1-mediated transactivation of target genes. Part of a corepressor complex that acts on DNA-bound GLI1. May also act by linking GLI1 to BTRC and thereby targeting GLI1 to degradation by the proteasome. Sequesters GLI1, GLI2 and GLI3 in the cytoplasm, this effect is overcome by binding of STK36 to both SUFU and a GLI protein. Negative regulator of beta-catenin signaling. Regulates the formation of either the repressor form (GLI3R) or the activator form (GLI3A) of the full length form of GLI3 (GLI3FL). GLI3FL is complexed with SUFU in the cytoplasm and is maintained in a neutral state. Without the Hh signal, the SUFU-GLI3 complex is recruited to cilia, leading to the efficient processing of GLI3FL into GLI3R. When Hh signaling is initiated, SUFU dissociates from GLI3FL and the latter translocates to the nucleus, where it is phosphorylated, destabilized, and converted to a transcriptional activator (GLI3A).
SUFU Sequence
DDBJ EMBL GenBank
SUFU 3D structure
ModBase
SUFU interaction
STRING
SUFU Proteomic
PRIDE
SUFU Genome annotation
Ensembl GeneID KEGG UCSC
SUFU Organism specific
CTD MGI
SUFU Phylogenomics
eggNOG GeneTree HOGENOM HOVERGEN

InParanoid OrthoDB PhylomeDB OMA
SUFU Gene expression
Bgee ArrayExpress Genevestigator
SUFU Family and domain
InterPro PROSITE ProtoNet
FOR in vitro RESEARCH USE ONLY