CDC25 ELISA kit
- Known as:
- CDC25 Enzyme-linked immunosorbent assay test reagent
- Catalog number:
- DL-CDC25-Hu
- Product Quantity:
- 96T
- Category:
- Elisa Kits
- Supplier:
- WDSTD
- Gene target:
- CDC25 ELISA kit
Ask about this productRelated genes to: CDC25 ELISA kit
- Gene:
- CDC25C NIH gene
- Name:
- cell division cycle 25C
- Previous symbol:
- CDC25
- Synonyms:
- PPP1R60
- Chromosome:
- 5q31.2
- Locus Type:
- gene with protein product
- Date approved:
- 1992-02-06
- Date modifiied:
- 2017-12-06
- Gene:
- RASGRF1 NIH gene
- Name:
- Ras protein specific guanine nucleotide releasing factor 1
- Previous symbol:
- GRF1
- Synonyms:
- CDC25L, CDC25, GRF55, H-GRF55, GNRP, PP13187
- Chromosome:
- 15q25.1
- Locus Type:
- gene with protein product
- Date approved:
- 1994-02-11
- Date modifiied:
- 2016-10-05
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- In fission yeast, inactivation of the Cdc25 phosphatase by checkpoint kinases participates in the signaling cascade that temporarily stops cell cycle progression after DNA damage. In human, CDC25B and C are also known to be targeted by a similar checkpoint machinery. We have examined by homologous recombination, whether CDC25B and CDC25C were able to substitute for the function of fission yeast Cdc25. We demonstrate that (i) CDC25B and C efficiently replace Cdc25 for vegetative growth, (ii) CDC25C is able to restore a functional checkpoint in response to ionizing radiation in both a Chk1- and Cds1-dependent manner, (iii) CDC25B and C are equally efficient in the response to UV irradiation, CDC25B being only dependent on Chk1, while CDC25C depends on both Chk1 and Cds1, and (iv) CDC25C is able to restore a functional DNA replication checkpoint induced by hydroxyurea in a Cds1-dependent manner. The consequences of these findings on our current view of the checkpoint cascade are discussed. - Source: PubMed
Mondesert OdileDucommun BernardBugler Béatrix - 14-3-3 family of proteins plays a key regulatory role in signal transduction, checkpoint control, apoptotic, and nutrient-sensing pathways. 14-3-3 proteins act by binding to partner proteins, and this binding often leads to the altered subcellular localization of the partner. 14-3-3 proteins promote the cytoplasmic localization of many binding partners, including the pro-apoptotic protein BAD and the cell cycle regulatory phosphatase Cdc25C, but they can also promote the nuclear localization of other partners, such as the catalytic subunit of telomerase (TERT). In some cases, 14-3-3 binding has no effect on the subcellular localization of a partner. 14-3-3 may affect the localization of a protein by interfering with the function of a nearby targeting sequence, such as a nuclear localization sequence (NLS) or a nuclear export sequence (NES), on the binding partner. - Source: PubMed
Muslin A JXing H - The role of PKN, a fatty acid- and Rho small GTPase-activated protein kinase, in cell-cycle regulation was analyzed. Microinjection of the active form of PKN into a Xenopus embryo caused cleavage arrest, whereas normal cell division proceeded in the control embryo microinjected with buffer or the inactive form of PKN. Exogenous addition of the active form of PKN delayed mitotic timing in Xenopus egg cycling extracts judging by morphology of sperm nuclei and Cdc2/cyclin B histone H1 kinase activity. The kinase-negative form of PKN did not affect the timing, suggesting that delayed mitotic timing depends on the kinase activity of PKN. The dephosphorylation of Tyr-15 of Cdc2 was also delayed in correlation with Cdc2/cyclin B histone H1 kinase activation in extracts containing active PKN. The Cdc25C activity for the dephosphorylation of Tyr-15 in Cdc2 was suppressed by pretreatment with the active form of PKN. Furthermore, PKN efficiently phosphorylated Cdc25C in vitro, indicating that PKN directly inhibits Cdc25C activity by phosphorylation. These results suggest that PKN plays a significant role in the control of mitotic timing by inhibition of Cdc25C. - Source: PubMed
Misaki KMukai HYoshinaga COishi KIsagawa TTakahashi MOhsumi KKishimoto TOno Y - Human p53 protein was found to be functional in fission yeast in terms of growth repression and checkpoint control. Expression of wild-type p53 or the hot spot mutant p53His273 results in dramatic morphological changes and loss of viability of recipient yeast cells. Overexpression of cdc25C phosphatase, the mitotic activator of cdc2, results in suppression of a p53-induced growth arrest. In order to understand the interplay between p53 and cdc25C in mammalian cells we isolated and sequenced cdc25C cDNA from the epidermoid carcinoma cell line A431, which is known to carry the p53His273 mutation. Two different transcripts of the human cdc25C gene were detected by RT-PCR analysis - one full-length transcript and a shortened version (cdc25Cdm) that carries two deletions in the 5'-region of the gene. In normal human skin fibroblasts only one full-length cdc25C transcript was detected. The two different transcripts code for proteins with a molecular weight of 55 kDa and 46 kDa, respectively. Both cdc25C cDNAs from A431 cells were found to complement a conditional lethal cdc25.22 mutant strain as well as a cdc25 deletion strain of Schizosaccharomyces pombe indicating that functional proteins were translated. Expression of cdc25Cdm variant leads to a stronger uncoupling of DNA replication from mitosis than expression of cdc25C suggesting that the deletion within the amino-terminus of cdc25C leads to a protein which might contribute some potential for oncogenic transformation. As with cdc25C, uncoupling of the DNA synthesis checkpoint by cdc25Cdm was reversed by coexpression of wild-type p53. - Source: PubMed
Bureik MRief NDrescher RJungbluth AMontenarh MWagner P - Activation of cyclin-dependent kinases in higher eukaryotic cells can be achieved through dephosphorylation by members of the Cdc25 phosphatase family, Cdc25A, Cdc25B and Cdc25C. Cdc25A plays an important role at the G1/S-phase transition. Cdc25B undergoes activation during S-phase and plays a role in activating the mitotic kinase Cdk1/cyclin B in the cytoplasm. Active Cdk1/cyclin B then phosphorylates and activates Cdc25C leading to a positive feedback mechanism and to entry into mitosis. Cdc25A and B are potential human oncogenes. In addition, Cdc25 is a main player of the G2 arrest caused by DNA damage or in the presence of unreplicated DNA. - Source: PubMed
Nilsson IHoffmann I