In response to DNA damage and replication blocks, cell cycle progression is halted through the control of critical cell cycle regulators. The protein encoded by this gene is a cell cycle checkpoint regulator and putative tumor suppressor. It contains a forkhead-associated protein interaction domain essential for activation in response to DNA damage and is rapidly phosphorylated in response to replication blocks and DNA damage. When activated, the encoded protein is known to inhibit CDC25C phosphatase, preventing entry into mitosis, and has been shown to stabilize the tumor suppressor protein p53, leading to cell cycle arrest in G1. In addition, this protein interacts with and phosphorylates BRCA1, allowing BRCA1 to restore survival after DNA damage. Mutations in this gene have been linked with Li-Fraumeni syndrome, a highly penetrant familial cancer phenotype usually associated with inherited mutations in TP53. Also, mutations in this gene are thought to confer a predisposition to sarcomas, breast cancer, and brain tumors. This nuclear protein is a member of the CDS1 subfamily of serine/threonine protein kinases. Several transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Apr 2012].
custom-made
CHEK2
Origine: Souris
Hôte: HEK-293 Cells
Recombinant
> 90 % as determined by Bis-Tris PAGE, anti-tag ELISA, Western Blot and analytical SEC (HPLC)
custom-made
CHEK2
Origine: Humain
Hôte: HEK-293 Cells
Recombinant
> 90 % as determined by Bis-Tris PAGE, anti-tag ELISA, Western Blot and analytical SEC (HPLC)
custom-made
CHEK2
Origine: Souris
Hôte: Cell-free protein synthesis (CFPS)
Recombinant
approximately 70-80 % as determined by SDS PAGE, Western Blot and analytical SEC (HPLC).
WB, SDS, ELISA
custom-made
CHEK2
Origine: Humain
Hôte: Cell-free protein synthesis (CFPS)
Recombinant
approximately 70-80 % as determined by SDS PAGE, Western Blot and analytical SEC (HPLC).
WB, SDS, ELISA
Troncale, Barbet, Coulibaly, Henry, He, Barillot, Dubois, Hupé, de Koning: "NormaCurve: a SuperCurve-based method that simultaneously quantifies and normalizes reverse phase protein array data." dans: PLoS ONE, Vol. 7, Issue 6, pp. e38686, (2012) (PubMed).
Yang, Chevolot, Géhin, Solassol, Mange, Souteyrand, Laurenceau: "Improvement of protein immobilization for the elaboration of tumor-associated antigen microarrays: application to the sensitive and specific detection of tumor markers from breast cancer sera." dans: Biosensors & bioelectronics, Vol. 40, Issue 1, pp. 385-92, (2012) (PubMed).