
Thermo Fisher Scientific p27 Kip1 Polyclonal Antibody
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Applications
Tested Dilution
Publications
Immunohistochemistry (IHC)
-
View 9 publications 9 publications
Immunohistochemistry (Paraffin) (IHC (P))
1:100
Flow Cytometry (Flow)
-
View 1 publication 1 publication
Product Specifications
Published species
Human, Mouse, Rat
Host/Isotype
Rabbit / IgG
Class
Polyclonal
Type
Antibody
Immunogen
Synthetic peptide derived from C-terminal of human p27Kip1 if (typeof window.$mangular === undefined
|| !window.$mangular) { window.$mangular = {}; } $mangular.antigenJson = \[{
targetFamily:
p27Kip1,
uniProtId:
P46527-1,
ncbiNodeId:
9606,
antigenRange:
198,
antigenLength:
198,
antigenImageFileName:
PA5-16717_p27Kip1_P46527-1_Rabbit.svg,
antigenImageFileNamePDP:
PA5-16717_p27Kip1_P46527-1_Rabbit_PDP.jpeg,
sortOrder:
1}\]
; $mangular.isB2BCMGT = false
; $mangular.isEpitopesModalImageMultiSizeEnabled = true
;
View immunogen .st0{fill:#FFFFFF;} .st1{fill:#1E8AE7;}
Conjugate
Unconjugated Unconjugated Unconjugated
Form
Liquid
Storage conditions
Store at 4°C short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles.
Shipping conditions
Wet ice
RRID
AB_10977242
Product Specific Information
PA5-16717 targets p27Kip1 in IHC (P) applications and shows reactivity with Human, Mouse and Rat samples.
The PA5-16717 immunogen is synthetic peptide derived from C-terminal of human p27Kip1.
Target Information
p27 Kip1 functions as a negative regulator of G1 mouse expression and has been proposed to function as a possible mediator of TGFb induced G1 arrest. p27 Kip1 is an important regulator of cell cycle progression, a potent inhibitor of cyclin E- and cyclin A-CDK2 complexes. p27 Kip1 forms a complex with cyclin type D-CDK4 complexes and is involved in the assembly, stability, and modulation of CCND1-CDK4 complex activation. p27 Kip1 acts either as an inhibitor or an activator of cyclin type D-CDK4 complexes depending on its phosphorylation state and/or stoichometry. p27 Kip1 has a molecular weight of approximately 27kDa and the degradation of this protein, which is triggered by its CDK dependent phosphorylation and subsequent ubiquitination by SCF complexes, is required for the cellular transition from quiescence to the proliferative state.
For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.
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