AffiAB® Anti-TEF1 Antibody

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CAT# AFG-HB-3805
Size: 100 μL

433.50 433.5 USD 433.50

433.50

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AffiAB® Anti-TEF1 Antibody

Transcription factor which plays a key role in the Hippo signaling pathway, a pathway involved in organ size control and tumor suppression by restricting proliferation and promoting apoptosis. The core of this pathway is composed of a kinase cascade wherein MST1/MST2, in complex with its regulatory protein SAV1, phosphorylates and activates LATS1/2 in complex with its regulatory protein MOB1, which in turn phosphorylates and inactivates YAP1 oncoprotein and WWTR1/TAZ. Acts by mediating gene expression of YAP1 and WWTR1/TAZ, thereby regulating cell proliferation, migration and epithelial mesenchymal transition (EMT) induction. Binds specifically and cooperatively to the SPH and GT-IIC 'enhansons' (5'-GTGGAATGT-3') and activates transcription in vivo in a cell-specific manner. The activation function appears to be mediated by a limiting cell-specific transcriptional intermediary factor (TIF) . Involved in cardiac development. Binds to the M-CAT motif.

Antibody type

Rabbit polyclonal Antibody

Uniprot ID

SwissProt: P28347 Human; SwissProt: P30051 Mouse

Recombinant

NO

Conjugation

Non-conjugated

Host

Rabbit

Isotype

IgG

Clone

N/A

KO/KD

N/A

Species reactivity

Human, Mouse, Rat

Tested applications

WB, IHC-P, FC

Predicted species reactivity

N/A

Immunogen

Recombinant protein within human TEF1 aa 1-150 / 426.

Storage

Store at +4°C after thawing. Aliquot store at -20°C. Avoid repeated freeze / thaw cycles.

Form

Liquid

Storage buffer

1*TBS (pH7.4) , 0.2% BSA, 50% Glycerol. Preservative: 0.05% Sodium Azide.

Concentration

1 mg/mL.

Purity

Immunogen affinity purified.

Signal pathway

N/A

Recommended dilutions

WB: 1:500 ; IHC-P: 1:400 ; FC: 1:500-1:1, 000

Molecular Weight

Predicted band size: 48 kDa

Subcellular location

Nucleus.

Positive control

Mouse liver tissue lysate, mouse skeletal muscle tissue lysate, rat skeletal muscle tissue, human fetal skeletal muscle tissue, Hela.