CDK
Cyclin dependent kinase
CDKs (Cyclin-dependent kinases) are serine-threonine kinases first discovered for their role in regulating the cell cycle. They are also involved in regulating transcription, mRNA processing, and the differentiation of nerve cells. CDKs are relatively small proteins, with molecular weights ranging from 34 to 40 kDa, and contain little more than the kinase domain. In fact, yeast cells can proliferate normally when their CDK gene has been replaced with the homologous human gene. By definition, a CDK binds a regulatory protein called a cyclin. Without cyclin, CDK has little kinase activity; only the cyclin-CDK complex is an active kinase.
There are around 20 Cyclin-dependent kinases (CDK1-20) known till date. CDK1, 4 and 5 are involved in cell cycle, and CDK 7, 8, 9 and 11 are associated with transcription.
CDK levels remain relatively constant throughout the cell cycle and most regulation is post-translational. Most knowledge of CDK structure and function is based on CDKs of S. pombe (Cdc2), S. cerevisia (CDC28), and vertebrates (CDC2 and CDK2). The four major mechanisms of CDK regulation are cyclin binding, CAK phosphorylation, regulatory inhibitory phosphorylation, and binding of CDK inhibitory subunits (CKIs).
CDK Isoform Specific Products
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CDK
(486)
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CDK1
(198)
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CDK2
(316)
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CDK3
(28)
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CDK4
(236)
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CDK5
(98)
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CDK6
(179)
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CDK7
(119)
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CDK8
(57)
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CDK9
(206)
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CDK11
(9)
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CDK12
(54)
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CDK13
(28)
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CDK14
(6)
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CDK16
(8)
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CDK19
(25)
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CDC
(21)
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CLK
(31)
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Pho85
(1)
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CDK10
(1)
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CDK15
(1)
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CDK17
(2)
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CDK18
(1)
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CDK20
(1)
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PITSLRE
(1)
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All Product Categories
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CDK Inhibitors
(1088)
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CDK Agonists
(3)
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CDK Antagonists
(2)
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CDK Activators
(18)
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CDK Modulators
(15)
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CDK Degraders
(95)
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CDK Controls
(4)
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CDK Substrate
(1)
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CDK Ligands
(16)
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Cyclin-Dependent Kinases (CDKs) Proteins
(80)
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Cyclin Dependent Kinase 1 (CDK1) Proteins
(9)
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Cyclin-Dependent Kinase 2 (CDK2) Proteins
(12)
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Cyclin-Dependent Kinase 3 (CDK3) Proteins
(6)
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Cyclin-Dependent Kinase 4 (CDK4) Proteins
(4)
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Cyclin-Dependent Kinase 5 (CDK5) Proteins
(5)
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Cyclin-Dependent Kinase 6 (CDK6) Proteins
(6)
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Cyclin-Dependent Kinase 7 (CDK7) Proteins
(4)
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CDK 관련 제품 (1364)
관련 제품 (1364)
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Recombinant Proteins (82)
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Antibodies (42)
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CDK Isoform Comparison
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PPA-037
0 ImagesCat. No.: HY-171787CAS No.: 2883700-83-0PPA-037 is an orally active, highly potent and selective inhibitor of cyclin-dependent kinase 12 (CDK12). PPA-037 induces the degradation of cyclin K (Cyclin K), enhancing antiproliferative effects on tumor cells. PPA-037 is promising for research of cancers. -
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- [Ala92]-p16 (84-103)
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Amantadine-d6
0 ImagesSynonyms: 1-Adamantanamine-d6; 1-Aminoadamantane-d6Amantadine-d6 is the deuterium labeled Amantadine. Amantadine (1-Adamantanamine) is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine also has anti-orthopoxvirus and anticancer activity. Amantadine can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research. -
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CDK8 Human Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS02398 -
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Bohemine
0 ImagesBohemine is a purine analogue and is a synthetic and selective CDK inhibitor with IC50s of 4.6 μM, 83 μM, and 2.7 μM for Cdk2/cyclin E, Cdk2/cyclin A, and Cdk9/cyclin T1, respectively. Bohemine also inhibits ERK2 with an IC50 of 52 μM and has less inhibitory effect on CDK1, CDK4 and CDK6. Bohemine has a broad spectrum anti-cancer activities. -
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Albanol B
0 ImagesAlbanol B is an arylbenzofuran derivative which can be isolated from mulberries. Albanol B exhibits anti-Alzheimer's disease, anti-bacterial and antioxidant activities. Albanol B inhibits cancer cells proliferation, down-regulates CDK1 expression. Albanol B also induces cell cycle arrest at G2/M and apoptosis. And Albanol B induces mitochondrial ROS production and increases the phosphorylation levels of AKT and ERK1/2. -
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ML 315
0 ImagesCat. No.: HY-117608CAS No.: 1440251-53-5ML 315 is a selective dual inhibitor of CDK and DYRK with IC50s of 68 nM and 282 nM, respectively. ML 315 is used in cancer and neurological disease research. -
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Multi-target kinase inhibitor 2
0 ImagesCat. No.: HY-149636Purity: 99.82%Multi-target kinase inhibitor 2 is a multi-targeted kinase inhibitor, and exhibits activity against EGFR, Her2, VEGFR2, and CDK2 enzymes, with IC50 values of 79 nM, 40 nM,136 nM, and 204 nM, respectively. Multi-target kinase inhibitor 2 shows cytotoxic effects were observed against HepG2, HeLa , MDA-MB-231 and MCF-7, with IC50 of 41, 57, 51 and 59 μM. Multi-target kinase inhibitor 2 induces cell cycle arrest and apoptosis in HepG2 cells. -
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- LO-3-63
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12-Deoxyphorbol 13-palmitate
0 Images12-Deoxyphorbol 13-palmitate is a traditional Chinese medicine monomer with antitumor activity that can be isolated from the root of Euphorbia fischeriana. 12-Deoxyphorbol 13-palmitate induces gastric cancer cell cycle arrest and apoptosis by regulating key cell cycle regulators such as cyclin B、cyclin A and CDC2. In addition, 12-Deoxyphorbol 13-palmitate can significantly weaken APOL2–SERCA2–PERK–HES1 signaling and slow liver fibrosis by targeting APOL2. -
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ML 315 hydrochloride
0 ImagesML 315 is a selective dual inhibitor of CDK and DYRK with IC50s of 68 nM and 282 nM, respectively. ML 315 is used in cancer and neurological disease research. -
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Akt1&PKA-IN-1
0 ImagesCat. No.: HY-148868CAS No.: 1334107-58-2Akt1&PKA-IN-1 is a potent dual Akt/PKA inhibitor with IC50 values of 0.03 , 0.11 μM, and 9.8 μM for PKAa, Akt, and CDK2, respectively. Akt1&PKA-IN-1 is selective for cyclin-dependent kinase 2 (CDK2). -
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CDK8-IN-12
0 ImagesCDK8-IN-12 is an orally active, potent CDK8 inhibitor with a Ki of 14 nM. CDK8-IN-12 has off-target kinase inhibition on GSK-3α, GSK-3β, PCK-θ with Kis of 13 nM, 4 nM, 109 nM, respectively. CDK8-IN-12 shows potent anti-proliferative effects selectively on MV4-11 cell. CDK8-IN-12 is an anti-cancer agent. -
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- RGB-286147
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CDK19 Human Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS02371 -
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- PROTAC CDK2 Degrader-1
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Isocryptotanshinone
0 ImagesIsocryptotanshinone is a dual STAT3 and PTP1B (IC50 = 56.1 μM) inhibitor. Isocryptotanshinone inhibits STAT3 by binding to the STAT3 SH2 domain to block phosphorylation and nuclear translocation[1][2]. Isocryptotanshinone exerts its anti-proliferative effect via the induction of cell cycle arrest, apoptosis, and pro-death autophagy, through the regulation of STAT3, AKT/mTOR and MAPK signaling pathways. Isocryptotanshinone suppresses the xenograft gastric cancer (GC) tumor growth in BALB/c nude mice. Isocryptotanshinone can be used for cancer research, such as lung cancer, breast cancer and GC. -
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- DS17
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WWZ-11-098
0 ImagesCat. No.: HY-181490Purity: 98.27%WWZ-11-098 is a selective CDK6 PROTAC degrader with DC50 of 2.6 nM. WWZ-11-098 induces degradation of CDK6 in a CRBN-dependent manner, while sparing CDK1, CDK2, CDK4, and CDK9. WWZ-11-098 induces apoptosis, G1-S cell cycle arrest and shows anti-proliferative activity in cancer cells. WWZ-11-098 exhibits antitumor efficacy in a xenograft model without signs of toxicity. WWZ-11-098 can be used for the research of leukemia. -
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Sotetsuflavone
0 ImagesSotetsuflavone is a flavonoid that can be isolated from Cycas revolute. Sotetsuflavone inhibits phosphorylation of PI3K, Akt, mTOR, JNK, and p38 MAPK; modulates expression of Cyclin D1, CDK4, Bcl-2, Bax, cleaved caspases 3/9, MMP-9, TGF-β, STAT3, and β-catenin. Sotetsuflavone induces G0/G1 cell cycle arrest, apoptosis, autophagy, and intracellular ROS elevation, inhibits cancer cell proliferation. Sotetsuflavone inhibits tumor growth in mouse tumor xenograft models. Sotetsuflavone can be used for the research of non-small cell lung cancer and Crohn’s disease. -
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Sorry. There is currently no product that acts on isoform Bcl-2, Bcl-W and Bim together.Please
try each isoform separately.