11gy: Difference between revisions

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'''Unreleased structure'''


The entry 11gy is ON HOLD
==Crystal structure of selective inhibitor 16 bound at the active site of CDK1==
<StructureSection load='11gy' size='340' side='right'caption='[[11gy]], [[Resolution|resolution]] 2.40&Aring;' scene=''>
== Structural highlights ==
<table><tr><td colspan='2'>[[11gy]] is a 3 chain structure with sequence from [https://en.wikipedia.org/wiki/Homo_sapiens Homo sapiens]. Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=11GY OCA]. For a <b>guided tour on the structure components</b> use [https://proteopedia.org/fgij/fg.htm?mol=11GY FirstGlance]. <br>
</td></tr><tr id='method'><td class="sblockLbl"><b>[[Empirical_models|Method:]]</b></td><td class="sblockDat" id="methodDat">X-ray diffraction, [[Resolution|Resolution]] 2.4&#8491;</td></tr>
<tr id='ligand'><td class="sblockLbl"><b>[[Ligand|Ligands:]]</b></td><td class="sblockDat" id="ligandDat"><scene name='pdbligand=A1DEQ:[(1~{R},3~{S})-3-[3-[(1-methyl-6-oxidanylidene-pyrimidin-2-yl)amino]-1~{H}-pyrazol-5-yl]cyclopentyl]+~{N}-(1-bicyclo[1.1.1]pentanyl)carbamate'>A1DEQ</scene>, <scene name='pdbligand=A1DJL:(2~{S})-1-[(2~{R})-2-[(2~{S})-2-(2-methoxyethoxy)propoxy]propoxy]propan-2-amine'>A1DJL</scene>, <scene name='pdbligand=DMS:DIMETHYL+SULFOXIDE'>DMS</scene>, <scene name='pdbligand=EPE:4-(2-HYDROXYETHYL)-1-PIPERAZINE+ETHANESULFONIC+ACID'>EPE</scene>, <scene name='pdbligand=GOL:GLYCEROL'>GOL</scene>, <scene name='pdbligand=SO4:SULFATE+ION'>SO4</scene>, <scene name='pdbligand=TPO:PHOSPHOTHREONINE'>TPO</scene></td></tr>
<tr id='resources'><td class="sblockLbl"><b>Resources:</b></td><td class="sblockDat"><span class='plainlinks'>[https://proteopedia.org/fgij/fg.htm?mol=11gy FirstGlance], [http://oca.weizmann.ac.il/oca-bin/ocaids?id=11gy OCA], [https://pdbe.org/11gy PDBe], [https://www.rcsb.org/pdb/explore.do?structureId=11gy RCSB], [https://www.ebi.ac.uk/pdbsum/11gy PDBsum], [https://prosat.h-its.org/prosat/prosatexe?pdbcode=11gy ProSAT]</span></td></tr>
</table>
== Function ==
[https://www.uniprot.org/uniprot/CDK1_HUMAN CDK1_HUMAN] Plays a key role in the control of the eukaryotic cell cycle by modulating the centrosome cycle as well as mitotic onset; promotes G2-M transition, and regulates G1 progress and G1-S transition via association with multiple interphase cyclins. Required in higher cells for entry into S-phase and mitosis. Phosphorylates PARVA/actopaxin, APC, AMPH, APC, BARD1, Bcl-xL/BCL2L1, BRCA2, CALD1, CASP8, CDC7, CDC20, CDC25A, CDC25C, CC2D1A, CSNK2 proteins/CKII, FZR1/CDH1, CDK7, CEBPB, CHAMP1, DMD/dystrophin, EEF1 proteins/EF-1, EZH2, KIF11/EG5, EGFR, FANCG, FOS, GFAP, GOLGA2/GM130, GRASP1, UBE2A/hHR6A, HIST1H1 proteins/histone H1, HMGA1, HIVEP3/KRC, LMNA, LMNB, LMNC, LBR, LATS1, MAP1B, MAP4, MARCKS, MCM2, MCM4, MKLP1, MYB, NEFH, NFIC, NPC/nuclear pore complex, PITPNM1/NIR2, NPM1, NCL, NUCKS1, NPM1/numatrin, ORC1, PRKAR2A, EEF1E1/p18, EIF3F/p47, p53/TP53, NONO/p54NRB, PAPOLA, PLEC/plectin, RB1, UL40/R2, RAB4A, RAP1GAP, RCC1, RPS6KB1/S6K1, KHDRBS1/SAM68, ESPL1, SKI, BIRC5/survivin, STIP1, TEX14, beta-tubulins, MAPT/TAU, NEDD1, VIM/vimentin, TK1, FOXO1, RUNX1/AML1, SIRT2 and RUNX2. CDK1/CDC2-cyclin-B controls pronuclear union in interphase fertilized eggs. Essential for early stages of embryonic development. During G2 and early mitosis, CDC25A/B/C-mediated dephosphorylation activates CDK1/cyclin complexes which phosphorylate several substrates that trigger at least centrosome separation, Golgi dynamics, nuclear envelope breakdown and chromosome condensation. Once chromosomes are condensed and aligned at the metaphase plate, CDK1 activity is switched off by WEE1- and PKMYT1-mediated phosphorylation to allow sister chromatid separation, chromosome decondensation, reformation of the nuclear envelope and cytokinesis. Inactivated by PKR/EIF2AK2- and WEE1-mediated phosphorylation upon DNA damage to stop cell cycle and genome replication at the G2 checkpoint thus facilitating DNA repair. Reactivated after successful DNA repair through WIP1-dependent signaling leading to CDC25A/B/C-mediated dephosphorylation and restoring cell cycle progression. In proliferating cells, CDK1-mediated FOXO1 phosphorylation at the G2-M phase represses FOXO1 interaction with 14-3-3 proteins and thereby promotes FOXO1 nuclear accumulation and transcription factor activity, leading to cell death of postmitotic neurons. The phosphorylation of beta-tubulins regulates microtubule dynamics during mitosis. NEDD1 phosphorylation promotes PLK1-mediated NEDD1 phosphorylation and subsequent targeting of the gamma-tubulin ring complex (gTuRC) to the centrosome, an important step for spindle formation. In addition, CC2D1A phosphorylation regulates CC2D1A spindle pole localization and association with SCC1/RAD21 and centriole cohesion during mitosis. The phosphorylation of Bcl-xL/BCL2L1 after prolongated G2 arrest upon DNA damage triggers apoptosis. In contrast, CASP8 phosphorylation during mitosis prevents its activation by proteolysis and subsequent apoptosis. This phosphorylation occurs in cancer cell lines, as well as in primary breast tissues and lymphocytes. EZH2 phosphorylation promotes H3K27me3 maintenance and epigenetic gene silencing. CALD1 phosphorylation promotes Schwann cell migration during peripheral nerve regeneration.<ref>PMID:16371510</ref> <ref>PMID:16407259</ref> <ref>PMID:16933150</ref> <ref>PMID:17459720</ref> <ref>PMID:18356527</ref> <ref>PMID:18480403</ref> <ref>PMID:19509060</ref> <ref>PMID:19917720</ref> <ref>PMID:20171170</ref> <ref>PMID:20360007</ref> <ref>PMID:20395957</ref> <ref>PMID:20935635</ref> <ref>PMID:20937773</ref> <ref>PMID:21063390</ref>
<div style="background-color:#fffaf0;">
== Publication Abstract from PubMed ==
Targeting HR-positive breast cancer via the inhibition of CDK4 and CDK6 has become the standard of care. However, progression inevitably occurs, and emerging data suggest the implication of CDK2 in this resistance mechanism. As part of our efforts to target this resistance, we embarked on a medicinal chemistry campaign to selectively inhibit CDK2 over the broadly essential CDK1. In order to obtain selectivity against CDK1, we utilized a molecular dynamics approach focused on interaction with a conserved lysine in the active site. Additionally, we uncovered a unique mechanism of clearance driven by both metabolism and efflux in rats and demonstrated that we could counter efflux-driven clearance with high permeability. Our efforts resulted in compound 19, which was potent against CDK2, exhibited good selectivity vs CDK4 and CDK1, and had pharmacokinetic properties that enabled evaluation in a CDK2 xenograft model of cancer, where it achieved nearly 80% tumor growth inhibition.


Authors: Murray, J.M., Oh, A., Kiefer, J.R., Verma, V.A., Grandner, J.M., Parr, B.T.
Utilizing Molecular Dynamics and Mechanistic Pharmacokinetic Studies in the Design of Selective CDK2 Inhibitors.,Verma VA, Grandner JM, Parr BT, Zeng M, Ashley M, Wang Y, Beroza P, Carione P, Johnson KM, Oh AJ, Murray JM, Kiefer JR, Moffat JG, Prangley M, Merrick K, Vartanian S, Hafner M, Orr CJ, Segal E, Levy ES, Wang J, Xu Z, Wang S, Liu G, Niu Y, Li X, Zhang Q, Ma Z, Sun M, Wu Z, Zhao W, Li Y, Zhang L, Magnuson SR, Samy KE J Med Chem. 2026 Jun 22. doi: 10.1021/acs.jmedchem.5c03803. PMID:42328801<ref>PMID:42328801</ref>


Description: Crystal structure of selective inhibitor 16 bound at the active site of CDK1
From MEDLINE&reg;/PubMed&reg;, a database of the U.S. National Library of Medicine.<br>
[[Category: Unreleased Structures]]
</div>
[[Category: Murray, J.M]]
<div class="pdbe-citations 11gy" style="background-color:#fffaf0;"></div>
[[Category: Verma, V.A]]
== References ==
[[Category: Oh, A]]
<references/>
[[Category: Grandner, J.M]]
__TOC__
[[Category: Kiefer, J.R]]
</StructureSection>
[[Category: Parr, B.T]]
[[Category: Homo sapiens]]
[[Category: Large Structures]]
[[Category: Grandner JM]]
[[Category: Kiefer JR]]
[[Category: Murray JM]]
[[Category: Oh A]]
[[Category: Parr BT]]
[[Category: Verma VA]]