Development of WEE2 kinase inhibitors as novel non-hormonal female contraceptives that target meiosis†.
Animals
Cattle
Cell Cycle Proteins
/ antagonists & inhibitors
Cell Proliferation
/ drug effects
Computer Simulation
Contraceptive Agents, Female
/ administration & dosage
Humans
Meiosis
/ drug effects
Oocytes
/ drug effects
Protein Kinase Inhibitors
/ administration & dosage
Protein-Tyrosine Kinases
/ antagonists & inhibitors
WEE2 kinase
fertilization
meiosis
non-hormonal contraceptive
oocyte maturation
Journal
Biology of reproduction
ISSN: 1529-7268
Titre abrégé: Biol Reprod
Pays: United States
ID NLM: 0207224
Informations de publication
Date de publication:
04 08 2020
04 08 2020
Historique:
received:
17
05
2020
revised:
26
05
2020
pubmed:
16
7
2020
medline:
25
9
2021
entrez:
16
7
2020
Statut:
ppublish
Résumé
WEE2 oocyte meiosis inhibiting kinase is a well-conserved oocyte specific kinase with a dual regulatory role during meiosis. Active WEE2 maintains immature, germinal vesicle stage oocytes in prophase I arrest prior to the luteinizing hormone surge and facilitates exit from metaphase II arrest at fertilization. Spontaneous mutations at the WEE2 gene locus in women have been linked to total fertilization failure indicating that selective inhibitors to this kinase could function as non-hormonal contraceptives. Employing co-crystallization with WEE1 G2 checkpoint kinase inhibitors, we revealed the structural basis of action across WEE kinases and determined type I inhibitors were not selective to WEE2 over WEE1. In response, we performed in silico screening by FTMap/FTSite and Schrodinger SiteMap analysis to identify potential allosteric sites, then used an allosterically biased activity assay to conduct high-throughput screening of a 26 000 compound library containing scaffolds of known allosteric inhibitors. Resulting hits were validated and a selective inhibitor that binds full-length WEE2 was identified, designated GPHR-00336382, along with a fragment-like inhibitor that binds the kinase domain, GPHR-00355672. Additionally, we present an in vitro testing workflow to evaluate biological activity of candidate WEE2 inhibitors including; (1) enzyme-linked immunosorbent assays measuring WEE2 phosphorylation activity of cyclin dependent kinase 1 (CDK1; also known as cell division cycle 2 kinase, CDC2), (2) in vitro fertilization of bovine ova to determine inhibition of metaphase II exit, and (3) cell-proliferation assays to look for off-target effects against WEE1 in somatic (mitotic) cells.
Identifiants
pubmed: 32667031
pii: 5856457
doi: 10.1093/biolre/ioaa097
pmc: PMC7401407
doi:
Substances chimiques
Cell Cycle Proteins
0
Contraceptive Agents, Female
0
Protein Kinase Inhibitors
0
Wee2 protein, human
EC 2.7.1.-
Protein-Tyrosine Kinases
EC 2.7.10.1
Types de publication
Journal Article
Research Support, N.I.H., Extramural
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
368-377Subventions
Organisme : NCI NIH HHS
ID : P30 CA076292
Pays : United States
Organisme : NIH HHS
ID : P51 OD011092
Pays : United States
Organisme : NICHD NIH HHS
ID : U01 HD076542
Pays : United States
Organisme : NICHD NIH HHS
ID : U54 HD055744
Pays : United States
Informations de copyright
© The Author(s) 2020. Published by Oxford University Press on behalf of Society for the Study of Reproduction.
Références
Nature. 2010 Jan 28;463(7280):501-6
pubmed: 20072125
J Chem Inf Model. 2009 Feb;49(2):377-89
pubmed: 19434839
Fertil Steril. 2019 Mar;111(3):519-526
pubmed: 30827524
Phytother Res. 2014 Jun;28(6):856-67
pubmed: 24105850
J Clin Invest. 1998 Aug 1;102(3):532-7
pubmed: 9691090
Nat Protoc. 2015 May;10(5):733-55
pubmed: 25855957
Gynecol Endocrinol. 2014 Oct;30(10):685-7
pubmed: 25117156
Genes Cells. 2000 Oct;5(10):839-47
pubmed: 11029659
Am J Hum Genet. 2018 Apr 5;102(4):649-657
pubmed: 29606300
Eur J Hum Genet. 2019 Feb;27(2):300-307
pubmed: 30297906
Nat Protoc. 2015 Jun;10(6):845-58
pubmed: 25950237
J Med Chem. 2018 Sep 27;61(18):8120-8135
pubmed: 30137981
Clin Genet. 2019 Apr;95(4):520-524
pubmed: 30628060
EMBO Mol Med. 2018 May;10(5):
pubmed: 29661911
Annu Rev Physiol. 1988;50:441-63
pubmed: 3288100
Nat Rev Clin Oncol. 2019 Oct;16(10):593
pubmed: 31455894
Biol Reprod. 2010 Jun;82(6):1190-7
pubmed: 20200212
ACS Chem Biol. 2011 Mar 18;6(3):234-44
pubmed: 21090814
J Med Chem. 2017 Sep 28;60(18):7863-7875
pubmed: 28792760
Contraception. 2010 Feb;81(2):165-71
pubmed: 20103457
Am J Hum Genet. 2017 Oct 5;101(4):609-615
pubmed: 28965849
Mol Hum Reprod. 2010 Sep;16(9):654-64
pubmed: 20453035
ACS Med Chem Lett. 2010 May 18;1(5):199-203
pubmed: 24900194
Trends Cell Biol. 2013 Jul;23(7):345-56
pubmed: 23566594
Contraception. 2005 Jan;71(1):68-73
pubmed: 15639077
Biochim Biophys Acta. 2005 May 25;1729(1):1-9
pubmed: 15804487
J Assist Reprod Genet. 2019 Sep;36(9):1957-1962
pubmed: 31428887
J Mol Biol. 2011 Nov 4;413(4):773-89
pubmed: 21945529
J Cell Biol. 2010 Jan 25;188(2):199-207
pubmed: 20083600
Sci Rep. 2019 Apr 16;9(1):6180
pubmed: 30992500
Trends Cell Biol. 2017 Jan;27(1):55-68
pubmed: 27773484
J Assist Reprod Genet. 2019 May;36(5):965-971
pubmed: 30826994
Bioinformatics. 2009 Mar 1;25(5):621-7
pubmed: 19176554
PLoS One. 2010 Sep 23;5(9):e12913
pubmed: 20886116
Development. 2003 Apr;130(7):1461-72
pubmed: 12588860
Bioinformatics. 2012 Jan 15;28(2):286-7
pubmed: 22113084
Fertil Steril. 2019 Mar;111(3):510-518
pubmed: 30827523
Nat Chem Biol. 2006 Feb;2(2):95-102
pubmed: 16415863
Assay Drug Dev Technol. 2008 Aug;6(4):505-18
pubmed: 18699726
ChemistrySelect. 2019 Dec 6;4(45):13363-13369
pubmed: 32190728
Science. 1992 Sep 25;257(5078):1955-7
pubmed: 1384126
Reproduction. 2005 Dec;130(6):791-9
pubmed: 16322539
Pharmacol Res. 2020 Feb;152:104609
pubmed: 31862477
Bioorg Med Chem Lett. 2009 Feb 15;19(4):1240-4
pubmed: 19155174
Reproduction. 2006 Jul;132(1):33-43
pubmed: 16816331
PLoS One. 2011 Jan 10;6(1):e15929
pubmed: 21264348
Assay Drug Dev Technol. 2009 Dec;7(6):560-72
pubmed: 20105026
Cytometry A. 2017 Jul;91(7):704-712
pubmed: 28375566
J Mol Biol. 2010 Apr 16;397(5):1329-38
pubmed: 20149797