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Cyclin D1 (Phospho-Thr286) Colorimetric Cell-Based ELISA Kit

The Cyclin D1 (Phospho-Thr286) Cell-Based ELISA Kit is a convenient, lysate-free, high throughput and sensitive assay kit that can monitor Cyclin D1 (Phospho-Thr286) protein expression profile in cells. The kit can be used for measuring the relative amounts of Cyclin D1 (Phospho-Thr286) in cultured cells as well as screening for the effects that various treatments, inhibitors (ie. siRNA or chemicals), or activators have on Cyclin D1 (Phospho-Thr286) .

Product Specifications

Synonyms

BCL-1 oncogene; BCL1; cyclin D1; CYL-1; G1/S-specific cyclin D1; PRAD1; PRAD1 oncogene

Gene Name

CCND1

UniProt

P24385

Reactivity

Human, Mouse, Rat

Applications

ELISA

Sample Type

Cell lines

Detection Range

> 5000 cells/well

Function

Regulatory component of the cyclin D1-CDK4 (DC) complex that phosphorylates and inhibits members of the retinoblastoma (RB) protein family including RB1 and regulates the cell-cycle during G (1) /S transition. Phosphorylation of RB1 allows dissociation of the transcription factor E2F from the RB/E2F complex and the subsequent transcription of E2F target genes which are responsible for the progression through the G (1) phase. Hypophosphorylates RB1 in early G (1) phase. Cyclin D-CDK4 complexes are major integrators of various mitogenenic and antimitogenic signals. Also substrate for SMAD3, phosphorylating SMAD3 in a cell-cycle-dependent manner and repressing its transcriptional activity. Component of the ternary complex, cyclin D1/CDK4/CDKN1B, required for nuclear translocation and activity of the cyclin D-CDK4 complex. Exhibits transcriptional corepressor activity with INSM1 on the NEUROD1 and INS promoters in a cell cycle-independent manner.

Molecular Weight

33729 MW

Shipping Conditions

Available

Storage Conditions

Store at 4°C for up to 6 months.

Other Gene Names

G1/S-specific cyclin-D1

Subcellular Location

Nucleus. Cytoplasm. Membrane. Cyclin D-CDK4 complexes accumulate at the nuclear membrane and are then translocated to the nucleus through interaction with KIP/CIP family members.

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