Plk1 Antibody

Code CSB-PA018193XA01MO
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Product Details

Full Product Name
Rabbit anti-Mus musculus (Mouse) Plk1 Polyclonal antibody
Uniprot No.
Target Names
Plk1
Alternative Names
Plk1 antibody; Plk antibody; Serine/threonine-protein kinase PLK1 antibody; EC 2.7.11.21 antibody; Polo-like kinase 1 antibody; PLK-1 antibody; Serine/threonine-protein kinase 13 antibody; STPK13 antibody
Raised in
Rabbit
Species Reactivity
Mus musculus (Mouse)
Immunogen
Recombinant Mus musculus (Mouse) Plk1 protein
Immunogen Species
Mus musculus (Mouse)
Conjugate
Non-conjugated
Clonality
Polyclonal
Isotype
IgG
Purification Method
Antigen Affinity Purified
Concentration
It differs from different batches. Please contact us to confirm it.
Buffer
Preservative: 0.03% Proclin 300
Constituents: 50% Glycerol, 0.01M PBS, pH 7.4
Form
Liquid
Tested Applications
ELISA, WB (ensure identification of antigen)
Protocols
Troubleshooting and FAQs
Storage
Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
Value-added Deliverables
① 200ug * antigen (positive control);
② 1ml * Pre-immune serum (negative control);
Quality Guarantee
① Antibody purity can be guaranteed above 90% by SDS-PAGE detection;
② ELISA titer can be guaranteed 1: 64,000;
③ WB validation with antigen can be guaranteed positive;
Lead Time
Made-to-order (14-16 weeks)

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Target Background

Function
Serine/threonine-protein kinase that performs several important functions throughout M phase of the cell cycle, including the regulation of centrosome maturation and spindle assembly, the removal of cohesins from chromosome arms, the inactivation of anaphase-promoting complex/cyclosome (APC/C) inhibitors, and the regulation of mitotic exit and cytokinesis. Polo-like kinase proteins acts by binding and phosphorylating proteins are that already phosphorylated on a specific motif recognized by the POLO box domains. Phosphorylates BORA, BUB1B/BUBR1, CCNB1, CDC25C, CEP55, ECT2, ERCC6L, FBXO5/EMI1, FOXM1, KIF20A/MKLP2, CENPU, NEDD1, NINL, NPM1, NUDC, PKMYT1/MYT1, KIZ, PPP1R12A/MYPT1, PRC1, RACGAP1/CYK4, SGO1, STAG2/SA2, TEX14, TOPORS, p73/TP73, TPT1, WEE1 and HNRNPU. Plays a key role in centrosome functions and the assembly of bipolar spindles by phosphorylating KIZ, NEDD1 and NINL. NEDD1 phosphorylation promotes subsequent targeting of the gamma-tubulin ring complex (gTuRC) to the centrosome, an important step for spindle formation. Phosphorylation of NINL component of the centrosome leads to NINL dissociation from other centrosomal proteins. Involved in mitosis exit and cytokinesis by phosphorylating CEP55, ECT2, KIF20A/MKLP2, CENPU, PRC1 and RACGAP1. Recruited at the central spindle by phosphorylating and docking PRC1 and KIF20A/MKLP2; creates its own docking sites on PRC1 and KIF20A/MKLP2 by mediating phosphorylation of sites subsequently recognized by the POLO box domains. Phosphorylates RACGAP1, thereby creating a docking site for the Rho GTP exchange factor ECT2 that is essential for the cleavage furrow formation. Promotes the central spindle recruitment of ECT2. Plays a central role in G2/M transition of mitotic cell cycle by phosphorylating CCNB1, CDC25C, FOXM1, CENPU, PKMYT1/MYT1, PPP1R12A/MYPT1 and WEE1. Part of a regulatory circuit that promotes the activation of CDK1 by phosphorylating the positive regulator CDC25C and inhibiting the negative regulators WEE1 and PKMYT1/MYT1. Also acts by mediating phosphorylation of cyclin-B1 (CCNB1) on centrosomes in prophase. Phosphorylates FOXM1, a key mitotic transcription regulator, leading to enhance FOXM1 transcriptional activity. Involved in kinetochore functions and sister chromatid cohesion by phosphorylating BUB1B/BUBR1, FBXO5/EMI1 and STAG2/SA2. PLK1 is high on non-attached kinetochores suggesting a role of PLK1 in kinetochore attachment or in spindle assembly checkpoint (SAC) regulation. Required for kinetochore localization of BUB1B. Regulates the dissociation of cohesin from chromosomes by phosphorylating cohesin subunits such as STAG2/SA2. Phosphorylates SGO1: required for spindle pole localization of isoform 3 of SGO1 and plays a role in regulating its centriole cohesion function. Mediates phosphorylation of FBXO5/EMI1, a negative regulator of the APC/C complex during prophase, leading to FBXO5/EMI1 ubiquitination and degradation by the proteasome. Acts as a negative regulator of p53 family members: phosphorylates TOPORS, leading to inhibit the sumoylation of p53/TP53 and simultaneously enhance the ubiquitination and subsequent degradation of p53/TP53. Phosphorylates the transactivation domain of the transcription factor p73/TP73, leading to inhibit p73/TP73-mediated transcriptional activation and pro-apoptotic functions. Phosphorylates BORA, and thereby promotes the degradation of BORA. Contributes to the regulation of AURKA function. Also required for recovery after DNA damage checkpoint and entry into mitosis.Phosphorylates MISP, leading to stabilization of cortical and astral microtubule attachments required for proper spindle positioning. Together with MEIKIN, acts as a regulator of kinetochore function during meiosis I: required both for mono-orientation of kinetochores on sister chromosomes and protection of centromeric cohesin from separase-mediated cleavage. Phosphorylates CEP68 and is required for its degradation. Regulates nuclear envelope breakdown during prophase by phosphorylating DCTN1 resulting in its localization in the nuclear envelope. Phosphorylates the heat shock transcription factor HSF1, promoting HSF1 nuclear translocation upon heat shock. Phosphorylates HSF1 also in the early mitotic period; this phosphorylation regulates HSF1 localization to the spindle pole, the recruitment of the SCF(BTRC) ubiquitin ligase complex induicing HSF1 degradation, and hence mitotic progression. Regulates mitotic progression by phosphorylating RIOK2.
Gene References into Functions
  1. these data provide proof of concept that deregulation of KLF14/PLK1 cascade plays a key role in thrombin-induced endothelial dysfunction in type 2 diabetes mellitus PMID: 29710485
  2. These data identify an essential role for HMMR in the PLK1-dependent regulatory pathway that orients progenitor cell division and supports neural development. PMID: 28994651
  3. Plk1 inhibition (RNAi, pharmacological compounds) promotes the development of adenomatous polyps in two independent Apc (Min/+) mouse models. PMID: 29549256
  4. integrity is required for PLK1 localization with SUMO-1 but not with SUMO-2/3. Inhibition of SUMOylation disrupts proper meiotic bipolar spindle organization and spindle-kinetochore attachment. PMID: 29269218
  5. CIP2A acts as a scaffold for CEP192-mediated microtubule organizing center assembly by recruiting Plk1 and aurora A during meiotic maturation in mouse oocytes PMID: 28935709
  6. Plk1 overexpression may contribute to tumor formation by both inducing chromosomal instability and suppressing the DDR pathway. PMID: 28900036
  7. Plk1 is essential for the mammalian embryonic development, and its depletion leads to mitotic alterations and lethality at different stages during mammalian development. PMID: 27417127
  8. Plk1 regulated angiotensin II-dependent activation of RhoA and actomyosin dynamics in VSMCs in a mitosis-independent manner. This regulation depended on Plk1 kinase activity. Plk1 haploinsufficiency in mice did not induce obvious cell proliferation defects but did result in arterial structural alterations, which frequently led to aortic rupture and death. PMID: 28692064
  9. centrosome maturation occurs during interphase in an MLK-dependent manner, independent of the classic mitotic kinase, Plk1. PMID: 27219065
  10. centrosome protein Dzip1 mediates the assembly of the BBSome-Dzip1-PCM1 complex in the centriolar satellites (CS) at the G0 phase for ciliary translocation of the BBSome. Phosphorylation of Dzip1 at Ser-210 by Plk1 (polo-like kinase 1) during the G2 phase promotes disassembly of this complex, resulting in removal of Dzip1 and the BBSome from the CS. PMID: 27979967
  11. These findings suggest that Plk1 regulates smooth muscle contraction by modulating vimentin phosphorylation at Ser-56. PMID: 27662907
  12. Results indicate that polo-like kinase 1 (PLK1) controls the onset of spindle assembly and spindle formation, and is essential for anaphase-promoting complex/cyclosome (APC/C) activation before anaphase onset in zygotes. PMID: 26174739
  13. observations revealed that the alteration of PKB-GSK-3beta axis, Plk-1, and Aurora kinase-A expressions in HSPC compartment due to DNA damage response was associated with the proliferative impairment and apoptosis during aplastic anemia. PMID: 27632389
  14. Plk1 activity is required for meiotic spindle assembly and REC8 cleavage, with pPlk1Ser137 being the action executor, in mouse oocytes during meiotic division. PMID: 26654596
  15. Augmented expression of Aurora kinase-A and Polo-like kinase-1 at the lactogenic switch likely mediates the formation of binucleated cells. PMID: 27102712
  16. Combined Plk1-HDAC inhibition reduces survival in Hela cells but not in non-cancer cells. PMID: 26317649
  17. PLK1 is required for the full activation of the anaphase promoting complex/cyclosome, for proper chromosome segregation and the maintenance of chromosome condensation during the meiosis I-II transition. PMID: 25658810
  18. we show here that Polo-like kinase 1 (Plk1) is required for endomitosis, and ablation of the Plk1 gene in megakaryocytes results in defective polyploidization accompanied by mitotic arrest and cell death PMID: 26185128
  19. PLK1 protein levels are increased in hamartin and tuberin deficient cells and Lymphangioleiomyomatosis patient-derived specimens, and that this increase is rapamycin-sensitive. PMID: 25565629
  20. Plk1 as an important regulator of PTEN during the cell cycle PMID: 24706748
  21. Results show that Plk1 phosphorylation of PTEN promotes tumorigenesis. PMID: 25047839
  22. p53-Dependent and cell specific epigenetic regulation of the polo-like kinases under oxidative stress. PMID: 24498222
  23. This study showed that differential regulation and correlation of expression levels with behavioral performance of polo-like kinase 1. PMID: 23536525
  24. PLK1 activity is not essential for entry into first mitosis, but is required for the events leading up to metaphase-anaphase transition in the one-cell mouse embryo. PMID: 23649868
  25. fork collapse in Atr-deleted cells is mediated through the combined effects the sumo targeted E3-ubiquitin ligase RNF4 and activation of the AURKA-PLK1 pathway PMID: 24142876
  26. PLK1, but not PLK2-4, phosphorylates central element proteins SYCP1 and TEX12. PMID: 22854038
  27. Dynactin helps target Polo-like kinase 1 to kinetochores via its left-handed beta-helical p27 subunit. PMID: 23455152
  28. analysis of tumor imaging using polo-box domain of polo-like kinase 1 targeted peptide PMID: 22795848
  29. Identification of a novel Wnt5a-CK1varepsilon-Dvl2-Plk1-mediated primary cilia disassembly pathway. PMID: 22609948
  30. Treacle and Plk1 are critically required for proper cortical neurogenesis, which has important implications in the regulation of mammalian brain size and the pathogenesis of congenital neurodevelopmental disorders such as microcephaly PMID: 22479190
  31. these results showed that the localization of Plk1 to kinetochores required the involvement of Survivin. PMID: 22554510
  32. Plk1-mediated phosphorylation of UAP56 regulates the stability of UAP56. PMID: 21637952
  33. a role of Plk1 in facilitating loss of Pten-induced prostate cancer formation PMID: 21890624
  34. In contrast to the addiction of many cancer cell lines to the non-oncogene Plk1, primary cell proliferation, spindle assembly and apoptosis exhibit only a low dependency on Plk1. PMID: 21772266
  35. Polo-like kinase 1 contributes to the tumorigenicity of hepatoma cells via regulation of Survivin expression PMID: 21330050
  36. Plk 1 is a potential cAMP/PKA substrate/target and a component of a macromolecular complex that contains PDE3A and regulates cAMP/PKA-signaling pathways important in progression of meiosis and female infertility. PMID: 21099356
  37. We have observed that overexpression of the C-terminal domain of Plk is more effective than wild-type or kinase-defective Plk in causing mitotic delay or arrest. PMID: 11854496
  38. polo-like kinase is a pivotal regulator of microtubule organization during mouse oocyte meiosis, fertilization PMID: 12135894
  39. Plk phosphorylation regulates the microtubule-stabilizing protein TCTP. PMID: 12167714
  40. Plk1 phosphorylates BRCA2 in M phase PMID: 12815053
  41. Cep170 interacts with Polo-like kinase 1 in mature centrioles PMID: 15616186
  42. The Expression of Plk1-GFP enhanced the lethality of hypomorphic polo mutants and disrupted the organization of the actinomyosin cytoskeleton in a dominant-negative manner. PMID: 16412419
  43. p53-deficient cancer cells were much more sensitive to Plk1 depletion than cancer cells with functional p53.In striking contrast, normal cells were much less sensitive to Plk1 depletion PMID: 16507989
  44. Polyploid MK expressed lower levels of two proteins, p55CDC and PLK1, whose activity is necessary for cell cycle progression and completion of mitosis; Forced expression of PLK1 during MK differentiation was associated with decreased polyploidization PMID: 16805859
  45. Plk1 may regulate cell cycle progression of mouse fertilized eggs by means of inhibiting the phosphorylation of Tyr 15 of Cdc2. PMID: 17342725
  46. Plk1 colocalized with p-MEK1/2 at various meiotic stages after GVBD when microtubule began to organize. PMID: 18583944
  47. Results suggest that Plk1 is important for early embryonic development and may function as a haploinsufficient tumor suppressor. PMID: 18794363
  48. beta-catenin is a physiological substrate of Plk1 in cells, which may provide a novel insight into the role of beta-catenin in M phase PMID: 19001871
  49. Mitotic progression and control of mitotic reentry after DNA damage resides, at least in part, on the dynamic behavior of Plk1. PMID: 19307309
  50. Inhibition of Plk1 activity suppresses pX-mediated oncogenic transformation. PMID: 19472310

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Subcellular Location
Nucleus. Chromosome, centromere, kinetochore. Cytoplasm, cytoskeleton, microtubule organizing center, centrosome. Cytoplasm, cytoskeleton, spindle. Midbody.
Protein Families
Protein kinase superfamily, Ser/Thr protein kinase family, CDC5/Polo subfamily
Tissue Specificity
Newborn and adult spleen, fetal and newborn kidney, liver, brain, thymus and adult bone marrow, thymus, ovary and testes.
Database Links
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